期刊论文

173. Lin, Y.;  Qi, B.;  Huangfu, C.;  Yang, X.;  Liu, Z.;  Zhang, S.;  Wei, T.; Fan, Z., High fractal-dimensional carbon conductive agent for improving the Li storage performance of Si-based electrode. Chemical Engineering Journal2024, 148502.

172. Wang, L.;  Liu, L.; Li, Y.;  Xu, Y.;  Nie, W.; Cheng, Z.;  Zhou, Q.;  Wang, L.; Fan, Z., Molecular‐Level Regulation Strategies TowardEfficient Charge Separation in Donor−Acceptor Type ConjugatedPolymers for Boosted Energy‐RelatedPhotocatalysis. Advanced Energy Materials 2023, 2303346.

171. Wang, L.; Wang, L.; Xu, Y.; Sun, G.; Nie, W.; Liu, L.; Kong, D.; Pan, Y.; Zhang, Y.; Wang, H.; Huang, Y.; Liu, Z.; Ren, H.; Wei, T.; Himeda, Y.; Fan, Z., Schottky junction and D–A1–A2 system dual regulation of covalent triazine frameworks for highly efficient CO2 photoreduction.Advanced Materials 2023, 2309376.

170. Chi, C.; Liu, Z.; Wang, G.; Qi, B.; Qiu, Z.; Yan, Y.; Huangfu, C.; Lu, X.; Yang, X.; Gong, M.; Cao, K.; Wei, T.; Fan, Z., Graphene Oxide Block Derived Edge-Nitrogen Doped Quasi-Graphite for High K+ Intercalation Capacity and Excellent Rate Performance.Advanced Energy Materials 2023, 2302055.

169.Zhang, J.; Tang, T.; Gan, X.; Yuan, R.; Li, Q.; Zhu, L.; Guo, N.; Li, Y.; Zhang, S.; Fan, Z.; Song, H., Schiff base reaction induced densification of chitosan-derived microporous carbon for compact capacitive energy storage. Chemical Engineering Journal 2023.

168.Qiu Z,  Liu Z, Lu X, Zhang S,  Yan Y, Chi C,  Huangfu C, Wang G,  Gao P,   Chi W, Xu Z,  We T, Fan Z, Dual Molecules Cooperatively Confined In-Between Edge-oxygen-rich Graphene Sheets as Ultrahigh Rate and Stable Electrodes for Supercapacitors , Small 2023, 2302316

167.Qiu Z ,  Liu Z, Wang G , Huangfu C , Li Z, Yan Y ,  Chi C ,  Gao P , Lu X , Zhang S , Wei T, Fan Z,  Highly redox-active oligomers between graphene sheets as ultrahigh capacitance/rate and stable electrodes for supercapacitors,  Energy Storage Materials 60 (2023) 102824 

166.Yan Y,  Liu Z, Wan T, Li W, Qiu Z, Chi C, Huangfu C, Wang G,  Qi B, Yan Y, Wei T, Fan Z. Bioinspired design of Na-ion conduction channels in covalent organic frameworks for quasi-solid-state sodium batteries. Nature Communications | (2023) 14:3066.

165. Zonish Zeb,  Huang Y, Chen L,  Zhou W,  Liao M,  Jiang Y, Li H, Wang L,Wang L,Wang H,Wei T,Zang D,Fan Z,Wei Y. Comprehensive overview of polyoxometalates for electrocatalytic hydrogen evolution reaction. Coordination Chemistry Reviews, 482 (2023) 215058.

164.   Geng D ,  Huang Y,Yuan S ,Jiang Y, Ren H , Zhang S,Liu Z,Feng J, Wei T,   Fan Z.Coordination Engineering of Defective Cobalt–Nitrogen–Carbon Electrocatalysts with Graphene Quantum Dots for Boosting Oxygen Reduction Reaction.Small, 2023, 2207227.

163.  Chi C,  Liu Z,   Lu X, Meng Y,  Huangfu C, Yan Y, Qiu Z,  Qi B, Wang G,Pang H, Wei T, Fan Z. Balance of sulfur doping content and conductivity of hard carbon anode for high-performance K-ion storage. Energy Storage Materials, 54 (2023) 668–679.

162. Huang Y , Zhou W,  Kong W , Chen  L,  Lu  X , Cai H, Yuan  Y ,  Zhao L,  Jiang Y ,  Li H , Wang L,  Wang L, Wang H, Zhang J,  Gu J , Fan Z. Atomically Interfacial Engineering on Molybdenum Nitride Quantum Dots Decorated N-doped Graphene for High-Rate and Stable Alkaline Hydrogen Production. Advanced Science, 2022,9, 2204949.

161.  Wang L, Wang L, Saifei Yuan S,  Song L,  Ren H,  Xu Y,  He M,  Zhang Y,  Wang H, Huang Y,  Wei T, Zhang J, Yuichiro Himeda, Fan Z. Covalently-bonded single-site Ru-N2 knitted into covalent triazine frameworks for boosting photocatalytic CO2 reduction. Applied Catalysis B: Environmental, 322 (2023) 122097.

160. Wang H,  Zhang X,  Yao, R,  Zhao S, Zhao P, Yang R,  Wang L,  Huang Y,  Wei T,  Li X,   Fan Z, Wang B. In situ rapid versatile method for the preparation of zirconium metal-organic framework filters. Science China Chemistry , 2022, 65: 2462–2467.

159. Liang S, Zhang S,  Liu Z, Feng J, Jiang Y,  Gao M,  Geng D, Wei T,  Fan Z. Confining MoS2 nanodots in compact layered graphene blocks for high volumetric capacity, fast, and stable sodium storage.Journal of Materials Chemistry A, 2022, 10,22638.

158.  Wang H, Zhao P, Zhang X, Zhang S,  Lu  X,  Qiu Z, Ren K, Xu Z, Yao R, Wei T, Fan Z. Holey graphene oxide-templated construction of nano nickel-based metal—organic framework for highly efficient asymmetric supercapacitor. Nano Research,2022, 15(10): 9047–9056.

157.  Cui Y,  Zhao L,  Li B,   Feng W, Cai T,   Li X,   Li X,  Kong D,  Fan Z,  Zhi L, Yan Z, Xue  Q, Xing W. Tailored MoS2 bilayer grafted onto N/S-doped carbon for ultra-stable potassium-ion capacitor. Chemical Engineering Journal, 450 (2022) 137815.

156. Shi M,   Bai L,  Wan D, Chang J,  Li Q,  Yu H,  Liu S, Wei T, Chen W, Fan Z.Transparent and flexible structurally colored biological nanofiber films for visual gas detection. Matter, 2022.05.043.

155. Jiang Z, Zhang S, Feng J,Jiang Y, Liang S, Li Q,  Shi M,  Cao M, Zhang M, Wei T,   Fan Z. Effect of ultramicropores and inner space of carbon materials on the capacitive sodium storage performance. Journal of Energy Chemistry, 73 (2022) 35–40

154. Liu M,  Xu Y,  Meng Y, Wang L,  Wang H, Huang Y, Naoya Onishi, Wang L, Fan Z, Yuichiro Himeda. Heterogeneous Catalysis for Carbon Dioxide Mediated Hydrogen Storage Technology Based on Formic Acid. Advanced Energy Materials ,2022, 12, 2200817.

153.Bai H, Liang S, Wei T, Zhou Q , Shi M, Jiang Z, Feng J, Zhang M, Fan Z.  Enhanced pseudo-capacitance and rate performance of amorphous MnO2 for supercapacitor by high Na doping and structural water contentJournal of Power Sources. Journal of Power Sources 523 (2022) 231032.

152. Dai M, Zhao F, Fan J, Li Q, Yang Y, Fan Z, Ling S, Yu H, Liu S, Li J. A Nanostructured Moisture Absorbing Gel for Fast and Large‐Scale Passive Dehumidification. Advanced Materials, 2022, 34, 2200865.

151. Qi B, Ren K, Lin Y, Zhang S, Wei T, Fan Z. Design of layered-stacking graphene assemblies as advanced electrodes for supercapacitors. Particuology, 2022, 60, 1-13.

150. Chang J, Zhang S, Shi M, Feng J, Liu Z, Wei T, Fan Z. Ni, Co Hydroxide Modified by Partial Substitution of OH–with Cl–for Boosting Ultra‐Fast Redox Kinetics up to 500 mV s− 1 in Supercapacitors. Advanced Functional Materials, 2022, 2109225.

149. Bai H, Liang S, Wei T, Zhou Q, Shi M, Jiang Z, Feng J, Zhang M, Fan Z. Enhanced pseudo-capacitance and rate performance of amorphous MnO2 for supercapacitor by high Na doping and structural water content. Journal of Power Sources, 2022, 523, 231032.

148. Zhang X, Wang H, Gao M, Zhao P, Xia W, Yang R, Huang Y, Wang L, Liu M, Wei T. Template-directed synthesis of pomegranate-shaped zinc oxide@ zeolitic imidazolate framework for visible light photocatalytic degradation of tetracycline. Chemosphere, 2022, 294, 133782.

147. Geng D, Zhang S, Jiang Y, Jiang Z, Shi M, Chang J, Liang S, Zhang M, Feng J, Wei T. 3D Interconnected Porous Carbon Derived from Spontaneous Merging of the Nano-sized ZIF-8 Polyhedrons for High-Mass-Loading Supercapacitor Electrodes. Journal of Materials Chemistry A, 2022, 10, 2027-2034.

146. Li Q, Jiang Y, Jiang Z, Zhu J, Gan X, Qin F, Tang T, Luo W, Guo N, Liu Z. Ultrafast pore-tailoring of dense microporous carbon for high volumetric performance supercapacitors in organic electrolyte. Carbon, 2022, 119, 19-27.

145. Shi M, Liu Z, Zhang S, Liang S, Jiang Y, Bai H, Jiang Z, Chang J, Feng J, Chen W. A Mott–Schottky Heterogeneous Layer for Li–S Batteries: Enabling Both High Stability and Commercial‐Sulfur Utilization. Advanced Energy Materials, 2022, 2103657.

144. Jiang M, Sheng L, Wang C, Jiang L, Fan Z. Graphene Film for Supercapacitors: Preparation, Foundational Unit Structure and Surface Regulation. Acta Physico-Chimica Sinica, 2022, 38 (2), 2012085-0.

143. Wu X, Liu R, Zhao J, Fan Z. Advanced carbon materials with different spatial dimensions for supercapacitors. Nano Materials Science, 2021, 3(3), 241-267.

142. Ren K, Liu Z, Wei T, Fan Z. Recent developments of transition metal compounds-carbon hybrid electrodes for high energy/power supercapacitors. Nano-Micro Letters, 2021, 13(1), 1-32.

141. Wang M, Sun T, Wan D, Dai M, Ling S, Wang J, Liu Y, Fang Y, Xu S, Yeo J. Solar-powered nanostructured biopolymer hygroscopic aerogels for atmospheric water harvesting. Nano Energy, 2021, 80, 105569.

140. Leng C, Zhao Z, Song Y, Sun L, Fan Z, Yang Y, Liu X, Wang X, Qiu J. 3D carbon frameworks for ultrafast charge/discharge rate supercapacitors with high energy-power density. Nano-micro letters, 2021, 13(1), 1-11.

139. Jiang Y, Li J, Jiang Z, Shi M, Sheng R, Liu Z, Zhang S, Cao Y, Wei T, Fan Z. Large-surface-area activated carbon with high density by electrostatic densification for supercapacitor electrodes. Carbon, 2021, 175, 281-288.

138. Huangfu C, Liu Z, Lu X, Liu Q, Wei T, Fan Z. Strong oxidation induced quinone-rich dopamine polymerization onto porous carbons as ultrahigh-capacity organic cathode for sodium-ion batteries. Energy Storage Materials, 2021, 43, 120-129.

137. Xiao Z, Sheng L, Jiang L, Zhao Y, Jiang M, Zhang X, Zhang M, Shi J, Lin Y, Fan Z. Nitrogen-doped graphene ribbons/MoS2 with ultrafast electron and ion transport for high-rate Li-ion batteries. Chemical Engineering Journal, 2021, 408, 127269.

136. Jiang Y, Jiang Z, Shi M, Liu Z, Liang S, Feng J, Sheng R, Zhang S, Wei T, Fan Z. Enabling high surface and space utilization of activated carbon for supercapacitors by homogeneous activation. Carbon, 2021, 182, 559-563.

135. Shi M, Jiang Y, Yan Y, Feng J, Wei T, Zhang M, Liu Z, Fan Z. Polarity-induced precipitation of S/Li2S confined into N and S co-doped porous graphene layered matrix for lithium sulfur batteries. Carbon, 2021, 184, 544-553.

134. Jiang Z, Sheng L, Lin Y, Zhang S, Zhang L, Wei T, Zhou J, Liu C, Jiang H, Zhou Q. Weldable and flexible graphene ribbon@ Ni fibers with ultrahigh length capacitance for all-solid-state supercapacitors. Chemical Engineering Journal, 2021, 426, 131361.

133. Sheng L, Zhao Y, Hou B, Xiao Z, Jiang L, Fan Z. N-doped layered porous carbon electrodes with high mass loadings for high-performance supercapacitors. New Carbon Materials, 2021, 36(1), 179-188.

132. Zhang Y, Zhao L, Wang X, Wang X, Li H, Hu H, Fan Z, Xing W, Yan Z. Boosted energy storage via carbon surface passivation. Carbon, 2021, 185, 105-112.

131. Zhang Y, Ren K, Wang L, Wang L, Fan Z. Porphyrin-based heterogeneous photocatalysts for solar energy conversion. Chinese Chemical Letters, 2021, 33(1),  33-60.

130. Liang S, *Zhang S, Liu Z, *Wei T, *Fan Z. Approaching the Theoretical Sodium Storage Capacity and Ultrahigh Rate of Layer-Expanded MoS2 by Interfacial Engineering on N-doped Graphene. Advance Eneygy Meterials, 2021, 11, 2002600.

129. Jiang Y, Li J, Jiang Z, Shi M, Sheng R, Liu Z, Zhang S, Cao Y, Wei T, Fan Z, Large-Surface-Area Activated Carbon with High Density by Electrostatic Densification for Supercapacitor Electrodes, Carbon, 2021, 1, 8.

128. Leng C, *Zhao Z, Song Y, Sun L, Fan Z, Yang, Y, Liu X, Wang X, *Qiu J. 3D Carbon Frameworks for Ultrafast Charge/Discharge Rate Supercapacitors with High Energy-Power Density. Nano-Micro Letters, 2020,13,1.

127. Sun S, Han F, *Wu X, Fan Z. One-step synthesis of biomass derived O, N-codoped hierarchical porous carbon with high surface area for supercapacitors. Chinese Chemical Letters, 2020, 31(9):2235-2238.

126. *Liu Z, Zhang S, Qiu Z, Chao H, *Wang L, *Wei T, *Fan Z. Tin Nanodots Derived From Sn2+/Graphene Quantum Dot Complex as Pillars into Graphene Blocks for Ultrafast and Ultrastable Sodium-Ion Storage. Small, 2020,16(38):2003557.

125. Lin Y, Zhang L, Xiong Y, Wei T, *Fan Z. Toward the Design of High-performance Supercapacitors by Prussian Blue, its Analogues and their Derivatives. Energy & Environmental Materials, 2020,3(3):323-345.

124. Shi M, Zhang S, Jiang Y, Jiang Z, Zhang L, Chang J, *Wei T, *Fan Z. Sandwiching Sulfur into the Dents Between N, O Co-Doped Graphene Layered Blocks with Strong Physicochemical Confinements for Stable and High-Rate Li-S Batteries. Nano-Micro Letters, 2020,12(1):146.

123. Fan J. Interview with Professor Zhuangjun Fan on the Supercapacitor Research. Acta Physico-Chemica Sinica, 2020,36(2):1907018.

122. Fan J. Overview of Supercapacitors. Acta Physico-Chemica Sinica, 2020, 36(2):1907017.

121. Chen L, Bai L, Yeo, J, *Wei T, *Chen W, *Fan Z. Wood-Derived Carbon with Selectively Introduced C=O Groups toward Stable and High Capacity Anodes for Sodium Storage. ACS Applied Materials & Interfaces, 2020,12(24):27499-27507.

120. Zhu J, Dong Y, *Zhang S, *Fan Z. Application of Carbon-/Graphene Quantum Dots for Supercapacitors. Acta Physico-Chemica Sinica, 2020, 36(2):1903052.

119. Zhao J, Zhu J, Li Y, Wang L, Dong Y, Jiang Z, Fan C, Cao Y, Sheng R, L A, *Zhang S, Song H, *Jia D, * Fan Z. Graphene Quantum Dot Reinforced Electrospun Carbon Nanofiber Fabrics with High Surface Area for Ultrahigh Rate Supercapacitors. ACS Applied Materials & Interfaces, 2020,12(10):11669-11678.

118. Zeng W, Yin Z, Gao M, Wang X, Feng J, Ren Y, Wei T, Fan Z. In-situ growth of magnesium peroxide on the edge of magnesium oxide nanosheets: Ultrahigh photocatalytic efficiency based on synergistic catalysis. Journal of Colloid and Interface Science, 2020, 561:257-264.

117. Wang X, *Feng J, Zhang Z, Zeng W, Gao M, Lv Y, Wei T, Ren Y, *Fan Z. Pt enhanced the photo-fenton activity of ZnFe2O4/α-Fe2O3 heterostructure synthesized via one-step hydrothermal method. Journal of Colloid and Interface Science, 561, 793-800.

116. Lin Y, Fan Z. Compositing strategies to enhance the performance of chemiresistive CO2 gas sensors. Materials Science in Semiconductor Processing, 2020,107: 104820.

115. Chao H, Liu Z, Zhou Q, Wang L, *Wei T, *Qiu Z, Zhang S, *Fan Z. Covalent grafting of p-phenylenediamine molecules onto a bubble-like carbon surface for high performance asymmetric supercapacitors. Journal of Materials Chemistry, 2020,8(4): 1767-1778.

114. Fan Z. Overview of Supercapacitors. Acta Physica-Chimica Sinica, 2020,36 (2): 1000-6818.

113. Zhu J, Dong Y, Zhang S, Fan Z. Application of Carbon-/Graphene Quantum Dots for Supercapacitors. Acta Physica-Chimica Sinica, 2020,36 (2):1000-6818.

112. Jiang Z, Liu C, Zhang L, Wei T, Jiang H, Zhou J, Shi M, Liang S, Su Z, *Fan Z.  Ultra-small NiO nanoparticles anchored on nitrogen-doped carbon flowers through strong chemical bonding for high-performance lithium-ion batteries. Journal of Power Sources, 2019,441:227182.

111. Wu X, Ding B, Zhang C, Li B, *Fan Z. Self-activation of potassium gluconate derived nitrogen and sulfur dual-doping hierarchical porous carbons for asymmetric supercapacitors with high energy densities. Carbon, 2019, 153.

110. Xu T, *Yang D, Fan Z, Li X, Liu Y, Guo C, Zhang M, *Yu Z. Reduced graphene oxide/carbon nanotube hybrid fibers with narrowly distributed mesopores for flexible supercapacitors with high volumetric capacitances and satisfactory durability. Carbon, 2019,152:134-143.

109. Zhao J, *Wang G, Hu R, Zhu K, Cheng K, Ye K, Cao D, *Fan Z. Ultrasmall-sized SnS nanosheets vertically aligned on carbon microtubes for sodium-ion capacitors with high energy density. Journal of Materials Chemistry A, 2019,7:4047-4054.

108. Qi J, Xie Y, Liang H W, Wang Y, Ge T, Song Y, Wang M, *Li Q, Yu H, Fan Z, Liu S, Wang Q, Liu Y, Li J, *Lu P, *Chen W. Lightweight, Flexible, Thermally-Stable and Thermally-Insulating Aerogels Derived from Cotton Nanofibrillated Cellulose. Acs Sustainable Chemistry & Engineering, 2019,7(10):9202-9210.

107. Zhou Q, *Wei T, Liu Z, Zhang L, Yuan B, *Fan Z. Nickel hexacyanoferrate ongraphene sheets for high-performance asymmetric supercapacitorsin neutral aqueous electrolyte. Electrochimica Acta, 2019,303:40-48.

106. Qing Y, Jiang Y, Lin H, Wang L, Liu A, Cao Y, Sheng R, Guo Y, Fan C, *Zhang S, *Jia D, *Fan Z. Boosting the Supercapacitor Performance of Activated Carbon by Constructing Overall Conductive Networks Using Graphene Quantum Dots. Journal of Materials Chemistry A, 2019, 7:6021-6027.

105. Zhao J, *Wang G, Hu R, Zhu K, Cheng K, Ye K, Cao D, *Fan Z. Ultrasmall-sized SnS nanosheets vertically aligned on carbon microtubes for sodium-ion capacitors with high energy density. Journal of Materials Chemistry A, 2019,7:4047-4054.

104. Zhang L, Yue J, Wei T, Liu Z, Zhou J, Liu C, Jiang H, Jiang Z, *Fan Z. Densely pillared holey-graphene block with high-level nitrogen doping enabling ultra-high volumetric capacity for lithium ion storage. Carbon, 2019, 142: 327-336.

103. Dai Q, *Zhao H, Cao H, Yang J, Zhao W, *Wang T, Liu L, Fan Z, Wang G. Photo-triggered conversion of hydrophilic fluorescent biomimetic nanostructures for cell imaging. Chemical Communications, 2019,55(5):596-599.

102. Xu C, Liu Z, *Wei T, Sheng L, Zhang L, Chen L, Zhou Q, Jiang Z, *Wang L, *Fan Z. Mesoporous single-crystalline MnOx nanofibers@graphene for ultra-high rate and long-life lithium-ion battery anodes. Journal of Materials Chemistry A, 2018,6: 24756-24766.

101. Zhang S, Zhu J Y, Qing Y, Wang L X, Zhao J, Li J, Tian W, *Jia D, *Fan Z. Ultramicroporous Carbons Puzzled by Graphene Quantum Dots: Integrated High Gravimetric, Volumetric, and Areal Capacitances for Supercapacitors. Advanced Functional Materials, 2018, 28:1805898.

100. Zhou Q, Liu Z, Wei T, Sheng L, Jiang Y, Jiang Z, *Fan J. Fe(CN) 6 3- ions confined into porous pillared-carbon nanosheets for high energy density supercapacitors. Journal of Materials Chemistry A, 2018,6:23885-23893.

99. Gao M, *Feng J, Zhang Z, Gu M, Wang J, Zeng W, Lv Y, Ren Y, Wei T, *Fan Z. Wrinkled Ultrathin Graphitic C3N4 Nanosheets for Photocatalytic Degradation of Organic Waste Water. ACS Applied Nano Materials, 2018, 1, 12:6733-674.

98. Zhou Q, *Wei T, Yue J, Sheng L, *Fan Z. Polyaniline nanofibers confined into graphene oxide architecture for high-performance supercapacitors. Electrochimica Acta, 2018, 291:234-241.

97. Liu Z, Zhang L, Sheng L, Zhou Q, *Wei T, *Feng J, *Fan Z. Edge-Nitrogen-Rich Carbon Dots Pillared Graphene Blocks with Ultrahigh Volumetric/Gravimetric Capacities and Ultralong Life for Sodium-Ion Storage. Advanced Energy Materials, 2018, 8:1802042.

96. Ren Y, Zhang H, An H, Zhao Y, Feng J, Xue L, *Luan T, *Fan Z. Catalytic Ozonation of Di-n-butyl Phthalate Degradation Using Manganese Ferrite/Reduced Graphene Oxide Nanofiber as Catalyst in the Water. Journal of Colloid and Interface Science, 2018, 526:347-355.

95. Ding B, Guo D, Wang Y, Wu X, *Fan J. Functionalized graphene nanosheets decorated on carbon nanotubes networks for high performance supercapacitors. Journal of Power Sources, 2018, 398:113-119.

94. Sheng L, Jiang H, Liu S, *Chen M, *Wei T, *Fan Z. Nitrogen-doped carbon-coated MnO nanoparticles anchored on interconnected graphene ribbons for high-performance lithium-ion batteries. Journal of Power Sources, 2018, 397: 325-333.

93. Dai Q, *Zhao H, Fan Z, Zhao W, *Wang G, Zhang J, Hou R, Du P, *Cao H. In Situ Nanoreactors: Controllable Photoluminescent Carbon-Rich Polymer Nanodots Derived from Fatty Acid under Photoirradiation. Macromolecular Rapid Communications, 2018, 39: 1800152.

92. Zhang L, Wei T, Jiang Z, Liu C, Jiang H, Chang J, Sheng L, Zhou Q, Yuan L, *Fan Z. Electrostatic interaction in electrospun nanofibers: Double-layer carbon protection of CoFe2O4 nanosheets enabling ultralong-life and ultrahigh-rate lithium ion storage. Nano Energy, 2018,48:238-247.

91. Sheng L, Chang J, Jiang L, Jiang Z, Liu Z, Wei T, *Fan Z. Multilayer-Folded Graphene Ribbon Film with Ultrahigh Areal Capacitance and High Rate Performance for Compressible Supercapacitors. Advanced Functional Materials, 2018, 28:1800597.

90. Chang J, Sheng L, Wei T, *Fan Z. Molecular Diffusion-Driven Motion in 2D Graphene Film. Advanced Functional Materials, 2018, 28: 1707053.

89. Sheng L, Jiang L, Wei T, Zhou Q, Jiang Y, Jiang Z, Liu Z, *Fan Z. Fe(CN)(6)(3-) ion-modified MnO2/graphene nanoribbons enabling high energy density asymmetric supercapacitors. Journal of Materials Chemistry A, 2018, 6:7649-7658.

88. Fan J, Ifuku S, Wang M, Uetani K, Liang H, Yu H, Song Y, Li X, Qi J, Zheng Y, Wang H, Sheng L, Zhang X, Li Q, Liu S, Liu Y, Wang Q, Li J, *Lu P, *Fan Z, *Chen W. Robust Nanofibrillated Cellulose Hydro/Aerogels from Benign Solution/Solvent Exchange Treatment. ACS Sustainable Chemistry & Engineering, 2018, 6(5):6624-6634.

87. Sheng L, Liang S, Wei T, Chang J, Jiang Z, Zhang L, Zhou Q, Zhou J, Jiang L, *Fan Z. Space-Confinement of MnO Nanosheets in Densely Stacked Graphene: Ultra-High Volumetric Capacity and Rate Performance for Lithium-Ion Batteries. Energy Storage Materials, 2018, 12:94-102.

86. Chen W, Yu H, Lee S, Wei T, Li J, *Fan Z. Nanocellulose: a promising nanomaterial for advanced electrochemical energy storage. Chemical Society Reviews, 2018,47: 2837-2872.

85. Wu Y, Liu Z, Zhong X, Chen X, *Fan Z, *Yu Y. Amorphous Red Phosphorus Embedded in Sandwiched Porous Carbon Enabling Superior Sodium Storage Performances. Small, 2018, 14:1703472.

84. Jiang L, Sheng L, *Fan Z. Biomass-derived carbon materials with structural diversities and their applications in energy storage. Science China Materials, 2018, 61(2):133-158.

83. Liu Z, Jiang L, Sheng L, Zhou Q, Wei T, Zhang B, *Fan Z. Oxygen Clusters Distributed in Graphene with Paddy Land Structure: Ultrahigh Capacitance and Rate Performance for Supercapacitors. Advanced Functional Materials, 2018, 28: 1705258.

82. *Feng J, Gao M, Zhang Z, Liu S, Zhao X, Ren Y, Lv Y, *Fan Z. Fabrication of mesoporous magnesium oxide nanosheets using magnesium powder and their excellent adsorption of Ni(II). Journal of Colloid & Interface Science, 2018, 510:69-76.

81. Zhao J, Li Y, *Wang G, Wei T, Liu Z, Cheng K, Ye K, Zhu K ,Cao D, *Fan Z, Enabling high-volumetric-energy-density supercapacitors: designing open, low-tortuosity heteroatom-doped porous carbon-tube bundle electrodes. Journal of Materials Chemistry A, 2017, 5(44):23085-23093.

80. Sheng L, Jiang L, Wei T, Liu Z , *Fan ZSpatial charge storage within honeycomb-carbon frameworks for ultrafast supercapacitors with high energy and power densities. Advanced Energy Materials, 2017, (19):1700668.

79. Zhang L, *Wei T, Yue J, Sheng L, Jiang Z, Yang D, Yuan L, *Fan Z, Ultra-small and highly crystallized ZnFe2O4 nanoparticles within double graphene networks for super-long life lithium-ion batteries. Journal of Materials Chemistry A. 2017, 5(22):11188-11196.

78. Sheng L, Wei T, Liang Y, Jiang L, Qu L, Fan Z *, Vertically oriented graphene nanoribbon fibers for high-volumetric energy densityall-solid-state asymmetric supercapacitors. Small, 2017, 13(22):1700371.

77. Zhou Q, Chang J, Jiang Y, *Wei T, Sheng L, *Fan Z, Fast charge rate supercapacitors based on nitrogen-doped aligned carbon nanosheet networks. Electrochimica Acta, 2017, 251:91-98.

76. Sheng L, We T, Liang Y, Qu L, Fan ZJ *, Ultra-high toughness all graphene fibers derived from synergetic effect of interconnected graphene ribbons and graphene sheets. Carbon, 2017, 120:17-22.

75. Zhao H, Wang J, Zhang D ,Bai Q, Han Q, Cao H, Fan Z. Chloro-benquinone Modified on Graphene Oxide as Metal-free Catalyst: Strong Promotion of Hydroxyl Radical and Generation of Ultra-Small Graphene Oxide. Scientific Reports, 2017, 7:42643.

74. Wang Y, Uetani K, Liu S, Wei T, Fan Z, *Yu H, *Chen W. Multifunctional Bionanocomposite Foams with a Chitosan Matrix Reinforced by Nanofibrillated Cellulose. Chemnanomat, 2016, 3(2).

73. Wang LWei T Sheng L, Jiang L, Wu X, Zhou Q, Yuan B, Yue J, Liu Z, *Fan Z. Brick-and-mortar sandwiched porous carbon building constructed by metal-organic framework and graphene: Ultrafast charge/discharge rate up to 2 Vs(-1) for supercapacitors. Nano Energy, 2016, 19(30): 80-92.

72. Sheng L, Jiang L, *Wei T, *Fan Z, High Volumetric Energy Density Asymmetric Supercapacitors Based on Well-Balanced Graphene and Graphene-MnO2 Electrodes with Densely Stacked Architectures. Small, 2016, 12(37): 5217-5227.

71. Jiang Y, *Yan J, Wu xShan D, Zhou Q, Jiang L, Yang D, *Fan Z. Facile synthesis of carbon nanofibers-bridged porous carbon nanosheets for high-performance supercapacitors. Journal of Power Sources. 2016, 307:190-198.

70. Shan D, Yang J, Liu W, *Yan J, *Fan Z. Biomass-derived three-dimensional honeycomb-like hierarchical structured carbon for ultrahigh energy density asymmetric supercapacitors. Journal of Materials Chemistry A. 2016, 4(35): 13589-13602.

69. Jiang L, Sheng L, Chen X, *Wei T, *Fan Z, Construction of nitrogen-doped porous carbon buildings using interconnected ultra-small carbon nanosheets for ultra-high rate supercapacitors. Journal of Materials Chemistry A. 2016, 4(29): 11388-11396.

68.Wang Q, *Yan J, *Fan Z. Carbon materials for high volumetric performance supercapacitors: design, progress, challenges and opportunities. Energy& Environmental Science, 2016, 9(3):729-762.

67. Li Y, *Wang G, Wei T, *Fan Z, Yan P. Nitrogen and sulfur co-doped porous carbon nanosheets derived from willow catkin for supercapacitors. Nano Energy, 2016, 19: 165-175.

66. Feng J, Chen T, Liu S, Zhou Q, Ren Y, lv Y, Fan Z. Improvement of g-C3N4 photocatalytic properties using the Hummers method. Journal of Colloid & Interface Science, 2016, 479:1-6.

65. Feng J, Chen T, Liu S, Zhou Q, Ren Y, lv Y, Fan Z. Fabrication of MgO nanosheets for removal of Ni (Ⅱ) via hydrothermal and calcination method without surfactant. Materials Chemistry & Physics, 2016:499-505.

64. Li Y, Yu N, Yan P, Li Y, Zhou X, Chen S, *Wang G, Wei T, *Fan Z. Fabrication of manganese dioxide nanoplates anchoring on biomass-derived cross-linked carbon nanosheets for high-performance asymmetric supercapacitors. Journal of Power source, 2015, 300: 309-317.

63. Yang D, Feng J, Wei T, and *Fan Z. Photocatalyst Interface Engineering: Spatially Confined Growth of ZnFe2O4 within Graphene Networks as Excellent Visible-Light-Driven Photocatalysts. Advanced Functional Material, 2015, 25:45, 7080-7087.

62. Sheng L, Liang Y, Jiang L, Wang Q, Wei T, *Qu L, *Fan Z. Bubbles Decorated Honeycomb-Like Graphene Film as Ultra-High Sensitivity Pressure Sensors. Advanced Functional Materials, 2015, 25:41, 6545-6551.

61. Long C, Jiang L, Wu X, Jiang Y, Yang D, Wang C, Wei T and *Fan Z. Facile Synthesis of Functionalized Porous Carbon with Three-Dimensional Interconnected Pore Structure for High Volumetric Performance Supercapacitors. Carbon, 2015, 93:412-420.

60. Wang Q, Yan J, Dong Z, QU L, Fan Z. Densely stacked bubble-pillared graphene blocks for high volumetric performance supercapacitors. Energy Storage Materials, 2015.

59. *Feng J, Hou X, Chen T, Liu S, Fan Z, Ren Y, Lu Y, Synthesis of NiFe2O4 Nanowires with NiO Nanosheet as Precursor via a Topochemical Solid State Method. Chemical Research in Chinese Universities, 2015, 31: 885-889.

58. Wu X, Yang D, Wang C, Jiang Y, Wei T, *Fan Z. Functionalized three-dimensional graphene networks for high performance supercapacitors. Carbon, 2015, 92:26-30.

57. Jiang L, Sheng L, Long C, Wei T, and *Fan Z. Functional Pillared Graphene Frameworks for Ultra -high Volumetric Performance Supercapacitors. Advanced Energy Materials,   2015, 5(15):1500771.

56. Wu X, Jiang L, Long C, and *Fan Z. From Flour to Honeycomb-Like Carbon Foam: Carbon Makes Room for High Energy Density Supercapacitors. Nano Energy, 2015, 13:527-536. 

55. Jiang L, Sheng L, Long C, *Fan Z. Densely packed graphene nanomesh-carbon nanotube hybrid film for ultra-high volumetric performance supercapacitors. Nano Energy, 2015,11: 471-480.

54. Long C, Chen X, Jiang L, Zhi L, *Fan Z. Porous layer-stacking carbon derived from in-built template in biomass for high volumetric performance supercapacitors. Nano Energy, 2015, 12: 141-151.

53. Wu X, Jiang L, Long C, Wei T, *Fan Z. Dual Support System Ensuring Porous Co-Al Hydroxide Nanosheets with Ultrahigh Rate Performance and High Energy Density for Supercapacitors. Advanced Functional Materials, 2015, 25(11):1648-1655.

52. Li M, *Liu C, Zhao H, An H, *Cao H, Zhang Y, *Fan Z. Tuning sulfur doping in graphene for highly sensitive dopamine biosensors. Carbon, 2015, 86:197-206.

51. *Feng J, Zou L, Wang Y, Li B, He X, *Fan Z, Ren Y, Lv Y, Zhang M, Chen D. Synthesis of high surface area, mesoporous Mgonanosheets with excellent adsorption capability for Ni(ii) via a distillation treating. Journal of Colloid and Interface Science, 2015, 438:259-267.

50. *Feng J, Wang Y, Zou L, Li B, He X, Ren Y, Lv Y, *Fan Z. Synthesis of magnetic ZnO/ZnFe2O4 by a microwave combustion method, and its high rate of adsorption of methylene blue. Journal of Colloid and Interface Science, 2015, 438: 318-322.

49. *Feng J, Wang Y, Zou L, Li B, He X, Liu S, Chen T, Fan Z, Ren Y, Lu Y. Improved Visible-light Photocatalytic Properties of ZnFe2O4 Synthesized via Sol-gel Method Combined with a Microwave Treatment. Chemical Research in Chinese Universities, 2015, 31: 439-442.

48. Yang X, Qu F, Niu H, *Wang Q, Fan Z. High-performance aqueous asymmetric supercapacitor based on spinel LiMn2O4 and nitrogen-doped graphene/porous carbon composite. Electrochimica Acta, 2015,180:287-294.

47. Wang B , *Li X , Luo B ,Fan Z. Approaching the Downsizing Limit of Silicon for Surface-Controlled Lithium Storage. Advanced Materials, 2015, 27(9):1526-1532.

46. *Ren Y, Lin L, Ma J, Yang J, Feng J, Fan Z. Sulfate radicals induced from peroxymonosulfate by magnetic ferrospinel MFe2O4 (M=Co, Cu, Mn, and Zn) as heterogeneous catalysts in the water. Applied Catalysis B: Environmental, 2015, 165:572-578.

45. Zhang D, *Zhao H, Fan Z, Li M. A Highly Sensitive and Selective Hydrogen Peroxide Biosensor Based on Gold Nanoparticles and Three-Dimensional Porous Carbonized Chicken Eggshell Membrane. Plos one, 2015, 10(6).

44. Wang Q, Yan J, *Fan Z. Nitrogen-doped sandwich-like porous carbon nanosheets for high volumetric performance supercapacitors. Electrochimica Acta, 2014, 146:548-555.

43. Chen H, Li J, Long C, Fan Z. Nickel sulfide/graphene/carbon nanotube composites as electrode material for the supercapacitor application in the sea flashing signal system. Journal of Marine Science and Application, 2014, 000(004):462-466.

42. Long C, Jiang L, Wei T, Yan J, *Fan Z. High-performance asymmetric supercapacitors with lithium intercalation reaction using metal oxide-based composites as electrode materials. Journal of Materials Chemistry A, 2014, 216678-16686.

41. Ren Y, Liu P, Liu X, Feng J, *Fan Z, *Luan T. Preparation of zirconium oxy ion-imprinted particle for the selective separation of trace zirconium ion from water. Journal of Colloid and Interface Science, 2014, 431: 209-215.

40. Li M, *Liu C, *Cao H, Zhao H, Zhang Y, *Fan Z. KOH self-templating synthesis of three-dimensional hierarchical porous carbon materials for high performance supercapacitors. Journal of Materials Chemistry A, 2014, 2: 14844-14851.

39. *Ning G, Ma X, Zhu X, Cao Y, Sun Y, Fan Z. Enhancing the Li Storage Capacity and Initial Coulombic Efficiency for Porous Carbons by Sulfur Doping. ACS Applied Materials & Interfaces, 2014, 6:18.

38. Yan J, Wang Q, Lin C, Wei T, *Fan Z. Interconnected frameworks with a sandwiched porous carbon layer/graphene hybrids for supercapacitors with high gravimetric and volumetric performances. Advanced Energy Materials, 2014, 4: 1400500.

37. Chen X, Long C, Lin C, Wei T, Yan J, Jiang L, *Fan Z. Al and Co co-doped α-Ni(OH)2/graphene hybrid materials with high electrochemical performances for supercapacitors. Electrochimica Acta, 2014, 137: 352-358.

36. *Long C, Qi D, Wei T, Fan Z. Nitrogen-Doped Carbon Networks for High Energy Density Supercapacitors Derived from Polyaniline Coated Bacterial Cellulose. Advanced Functional Materials, 2014, 24(25):3953-3961.

35. Long C, Qi D, Wei T, Yan J, Jiang L, *Fan Z. Nitrogen-doped carbon networks for high energy density supercapacitors derived from polyaniline coated bacterial cellulose. Advanced Functional Materials, 2014, 24: 3953-3961.

34. *Gong M, Li Y, Zhang H, Zhang B, Fan Z. Ultrafast high-capacity NiZn battery with NiAlCo-layered double hydroxide. Energy & Environmental Science, 2014, 7(6):2025-2032.

33. Yan J, Wang Q, Wei T, Jiang L, Zhang M, Jing X, *Fan Z. Template-assisted low temperature synthesis of functionalized graphene for ultrahigh volumetric performance supercapacitors. ACS Nano, 2014, 8:4720-4729.

32. Yan J, Wang Q, Wei T, *Fan Z. Recent advances in design and fabrication of electrochemical supercapacitors with high energy densities. Advanced Energy Materials, 2014, 4: 1300816.

31. Wang Q, Yan J, Wang Y, Wei T, Zhang Mi, Jing X, *Fan Z. Three-dimensional flower-like and hierarchical porous carbon materials as high-rate performance electrodes for supercapacitors. Carbon, 2014, 67:119-127.

30. Wang Q, Yan J, *Fan Z, Wei T, Zhang M, Jing X. Mesoporous polyaniline film on ultra-thin graphene sheets for high performance supercapacitors. Journal of Power Sources, 2014, 247:197-203.

29. Jiang L, *Fan Z. Design of advanced porous graphene materials: From graphene nanomesh to 3d architectures. Nanoscale, 2014, 6:1922-1945.

28. Ying Y, Sun L, Wang Q, *Peng X. In-plane mesoporous graphene oxide nanosheet assembled membranes for molecular separation. Rsc Advances, 2014, 4(41):21425-21428.

27. Feng J, Liu T, Chen Y, Wang YT, Fan Z. Morphology and Magnetic Properties of NiCuZn Ferrite Synthesized by Solid-Molten Salt Method. Advanced Materials Research, 2013, 873:24-29.

26. Long C, Wei T, Yan J, Jiang L, *Fan Z. Supercapacitors based on graphene-supported iron nanosheets as negative electrode materials. ACS Nano. 2013, 7(12) :11325-11332.

25. Wang Q, Yan J, Wei T, Feng J, Ren Y, *Fan Z, Zhang M, Jing X. Two-dimensional mesoporous carbon sheet-like framework material for high-rate supercapacitors. Carbon. 2013, 60: 481-487.

24. *Fan Z, Yan J, Ning G, Wei T, Zhi L, Wei F. Porous graphene networks as high performance anode materials for lithium ion batteries. Carbon. 2013, 60: 558-561.

23. Wang Q, Yan J, Wang Y, Ning G, *Fan Z, Wei T, Cheng J, Zhang M, Jing X. Template synthesis of hollow carbon spheres anchored on carbon nanotubes for high rate performance supercapacitors. Carbon. 2013, 52: 209-218.

22. Wang Q, Yan J, Xiao Y, Wei T, *Fan Z, Zhang M, Jing X. Interconnected porous and nitrogen-doped carbon network for supercapacitors with high rate capability and energy density. Electrochimica Acta. 2013, 114: 165-172.

21. Yan J, *Fan Z, Sun W, Ning G, Wei T, Zhang Q, Zhang R, *Zhi L, *Wei F. Advanced asymmetric supercapacitors based on Ni(OH)2/graphene and porous graphene electrodes with high energy density. Advanced Functional Materials, 2012, 22(12): 2632-2641.    

20. *Fan Z, Liu Y, Yan J, Ning G, Wang Q, Wei T, *Zhi L, *Wei F. Template-directed synthesis of pillared-porous carbon nanosheet architectures: high-performance electrode materials for supercapacitors. Advanced Energy Materials. 2012, 2(4):419-424.     

19. Yan J, Liu J, *Fan, Z. Wei T, Zhang L. High-performance supercapacitor electrodes based on highly corrugated graphene sheets. Carbon. 2012, 50(6): 2179-2188.

18. Yan J, Wei T, Feng J, *Fan Z, Zhang L, Wei F. One step synthesis of nanoparticles of cobalt in a graphitic shell anchored on graphene sheets. Carbon. 2012, 50(6): 2356-2358.

17. *Fan Z, Zhao Q, Li T, Yan J, Ren Y, Feng J, WeiT. Easy synthesis of porous graphene nanosheets and their use in supercapacitors. Carbon. 2012, 50(4): 1699-1703.

16. Yan J, Sun W, Wei T, Zhang Q, *Fan Z, Wei F. Fabrication and electrochemical performances of hierarchical porous Ni(OH)2 nanoflakes anchored on graphene sheets. Journal of Materials Chemistry. 2012, 22(23):11494-11502.

15. Wen Q, Wang S, Yan J, Cong L, Pan Z, Ren Y, *Fan Z. MnO2-graphene hybrid as an alternative cathodic catalyst to platinum in microbial fuel cells. Journal of Power Sources. 2012, 216:187-191.

14. *Fan Z, Yan J, Wei T, *Zhi L, Ning G, Li T, *Wei F. Asymmetric supercapacitors based on graphene/MnO2 and activated carbon nanofiber electrodes with high power and energy density. Advanced Functional Materials. 2011, 21(12): 2366-2375.       

13. *Fan Z, Wang K, Yan J, Wei T, *Zhi L, Feng J, Ren, Y, Song Li, *Wei, F. Facile synthesis of graphene nanosheets via Fe reduction of exfoliated graphite oxide. ACS Nano, 2011,5(1): 191-198.  

12. *Fan Z, Yan J, Wei T, Ning G, *Zhi L, Liu J, Cao D, Wang G, *Wei F. Nanographene-constructed carbon nanofibers grown on graphene sheets by chemical vapor deposition: high-performance anode materials for lithium ion batteries.  ACS Nano, 2011, 5(4): 2787-2794.  

11. *Ning G, *Fan Z, Wang G, Gao J, Qian W, Wei F. Gram-scale synthesis of nanomesh graphene with high surface area and its application in supercapacitor electrodes. Chemical Communications. 2011, 47(21): 5976-5978.

10. Ren Y. Yan N, Wen Q, *Fan Z, Wei T, Zhang M, Ma J. Graphene/delta-MnO2 composite as adsorbent for the removal of nickel ions from wastewater. Chemical Engineering Journal. 2011,175:1-7.  

9. *Fan Z, Yan J, *Zhi L, Zhang Q, Wei T, Feng J, Zhang M, Qian W, *Wei F. A three-dimensional carbon nanotube/graphene sandwich and its application as electrode in supercapacitors. Advanced Materials, 2010, 22(33): 3723-3728.

8. *Fan Z, Yan J, Ning G, Wei T, Qian W, Zhang S, Zheng C, Zhang Q, Wei F. Oil sorption and recovery by using vertically aligned carbon nanotubes. Carbon. 2010, 48(14): 4197-4200.

7. Yan J,*Fan Z, Wei T, Qian W, Zhang M, Wei F. Fast and reversible surface redox reaction of graphene-MnO2 composites as supercapacitor electrodes. Carbon. 2010,48(13): 3825-3833.

6. Yan J, Wei T, Shao B, Ma F, *Fan Z, Zhang M, Zheng C, Shang Y, Qian, W, Wei F. Electrochemical properties of graphene nanosheet/carbon black composites as electrodes for supercapacitors. Carbon. 2010,48(6): 1731-1737.

5. Yan J, Wei T, Shao B, *Fan Z, Qian W, Zhang M, Wei F. Preparation of a graphene nanosheet/polyaniline composite with high specific capacitance. Carbon. 2010,48(2): 487-493.

4. Wei T, Wang K, *Fan Z, Yan J, Qian W, Wei F. Super resilience of a compacted mixture of natural graphite and agglomerated carbon nanotubes under cyclic compression. Carbon. 2010,48(1):309-312.

3. *Fan Z. Wang K, Wei T, Yan J, Song L, Shao B. An environmentally friendly and efficient route for the reduction of graphene oxide by aluminum powder. Carbon. 2010, 48(5): 1686-1689.

2. Yan J, Wei T, *Fan Z, Qian W, Zhang M, Shen X, Wei F. Preparation of graphene nanosheet/carbon nanotube/polyaniline composite as electrode material for supercapacitors. Journal of Power Sources. 2010,195(9): 3041-3045.

1. Yan J, Wei T, Qiao W, Shao B, Zhao Q, Zhang L, *Fan Z. Rapid microwave-assisted synthesis of graphene nanosheet/Co3O4 composite for supercapacitors. Electrochimica Acta, 2010, 55(23): 6973-6978.