教授
钟文斌,博士,教授,博士生导师,教育部“新世纪优秀人才计划”获得者,任中国仪表材料学会理事、第七届中国材料研究学会青年委员会理事和全国材料与器件科学家智库功能材料与器件委员会委员。
2005年获高分子化学与物理专业博士学位,师从北京化工大学杨万泰院士,现主要从事柔性穿戴器件、高分子材料、超分子组装和先进能源材料等领域的基础和应用研究。主持国家自然科学基金(五项)、教育部新世纪优秀人才计划和湖南省自然科学基金重点项目等课题十余项。发表学术论文近百篇;为多种国际高水平期刊的邀请审稿人。另获教育部和湖南省自然科学二等奖各一项。
2002年09月---2005年06月,北京化工大学,高分子化学与物理专业,博士;导师:杨万泰院士。
2005年06月至今,湖南大学材料科学与工程学院
代表性论文
[1]Y. Zhou, H. Shu, Y. Yao, X. Yang, C. Yu, W. Zhong*, An ultralow hysteresis zwitterionic hydrogel crosslinked by functionalized graphene oxide quantum dots for dual-responsive flexible wearable sensors, Chem. Eng. J. 2024, 483, 149282.
[2]X. Liu, Y. Zhang, C. Yu*, W. Zhong*, N-doped porous carbon with directional oriented channel structure derived from biomass peach gum/poly(o-phenylenediamine) composite for high-performance supercapacitors, J. Energy Stor. 2024, 84, 110860.
[3]Z. Peng, Y. Zhou, H. Shu, C. Yu, W. Zhong*, Ultrahigh ionic conductivity,antifreezing poly(amidoxime)-grafted polyzwitterion hydrogel for facile integrated into high performance stretchable flexible supercapacitor, ACS Omega 2024, 9, 2234-2249.
[4]X. Guo, Y. Lu, D. Fu, C. Yu, X. Yang, W. Zhong*, Ultrahigh ionic conductivity and alkaline tolerance of poly (amidoxime)-based hydrogel for high performance piezoresistive sensor, Chem. Eng. J. 2023, 452, 139208.
[5]D. Fu, Y. Lu, Z. Peng, W. Zhong*, A zwitterionic hydrogel with a surprising function of increasing the ionic conductivity of alkali metal chloride or sulfuric acid water-soluble electrolyte, J. Mater. Chem. A 2023, 11, 13543-13551.
[6]G. Zhang, X. Yang*, H. Shu, W. Zhong*, Ultrahigh conductivity and antifreezing zwitterionic sulfobetaine hydrogel electrolyte for low-temperature resistance flexible supercapacitors, J. Mater. Chem. A 2023, 11, 9097-9111.、
[7]W. Liao, C. Yu*, Z. Peng, F. Xu, Y. Zhang, W. Zhong*, Ultrasensitive Mg2+-modulated carbon nanotube/tannic acid aerogels for high-performance wearable pressure sensors, ACS Sustainable Chem. Eng. 2023, 11, 2186-2197.
[8]F. Xu, C. Yu*, H. Yao, Y. Zhang, W. Liao, W. Zhong*, Solvent triggering assembly of self-supported MXene hydrogel for high performance asymmetric supercapacitors, Electrochimica Acta 2023, 47, 143367.
[9]Z. Peng, C. Yu, W. Zhong*, Facile preparation of a 3D porous aligned graphene-based wall network architecture by confined self-assembly with shape memory for artificial muscle, pressure sensor and flexible supercapacitor, ACS Appl. Mater. Interfaces 2022, 15, 17739-17753.
[10]Y. Zou, Z. Chen, X. Guo, Z. Peng, C. Yu, W. Zhong*, Mechanically robust and elastic graphene/aramid nanofiber/polyaniline nanotube aerogels for pressure sensors, ACS Appl. Mater. Interfaces 2022,14, 17858-17868.
[11]S. Tang, C. Yu*, X. Liu, D. Fu, W. Liao, F. Xu, W. Zhong*, 2-Methylimidazole assisted synthesis of nanocrystalline shell reinforced PPy hydrogel with high mechanical and electrochemical performance, Chem. Eng. J. 2022, 430, 133033.
[12]D. Wu, C. Yu, W. Zhong*, Bioinspired strengthening and toughening of carbon nanotube@polyaniline/ graphene fifilm using electroactive biomass as glue for flflexible supercapacitors with high rate performance and volumetric capacitance, and low-temperature tolerance, J. Mater. Chem. A 2021, 9, 18356 -18368.
[13]Y. Zou, Z. Chen, Z. Peng, C. Yu, W. Zhong*, Mechanically strong multifunctional three-dimensional crosslinked aramid nanofifiber/ reduced holey graphene oxide and aramid nanofifiber/reduced holey graphene oxide/polyaniline hydrogels and derived fifilms, Nanoscale 2021, 13, 16734 -16747.
[14]X. Liu, C. Yu*, Z. Chen, F. Xu, W. Liao, W. Zhong*, Biomass peach gum- derived heteroatom-doped porous carbon via in situ molten salt activation for high-performance supercapacitors, Energy Fuels 2021, 35, 19801-19810.
[15]L. Chang, Z. Peng, T. Zhang*, C. Yu, W. Zhong*, Nacre-inspired composite films with high mechanical strength constructed from MXenes and wood-inspired hydrothermal cellulose-based nanofibers for high performance flexible supercapacitors, Nanoscale 2021, 13, 3079-3091.
[16]Z. Chen, S. Zhao, H. Zhao, Y. Zou, C. Yu, W. Zhong*, Nitrogen-doped interpenetrating porous carbon/graphene networks for supercapacitor applications, Chem. Eng. J. 2021, 409, 127891.
[17]L. Gao, Z. Chen, H. Zhao*, Y. Zou, C. Yu, W. Zhong*, Controllable preparation of nitrogen-doped hierarchical and honeycomb-like porous carbon/graphene based on composites of graphene oxide and polyaniline nanorod arrays for high performance supercapacitors, J. Energy Stor. 2021, 36, 102314.
[18]Z. Zhang, C. Yu, Z. Peng, W. Zhong*, Mechanically stiff and high-areal-performance integrated all-in-wood supercapacitors with electroactive biomass-based hydrogel, Cellulose 2021, 28, 389-404.
[19]Y. Zhou, Y. Zou, Z. Peng, C. Yu, W. Zhong*, Arbitrary deformable and high-strength electroactive polymer/MXene anti-exfoliative composite films assembled into high performance, flexible all-solid-state supercapacitors, Nanoscale 2020, 12, 20797-20810.
[20]Z. Peng, W. Zhong*, Facile preparation of an excellent mechanical property electroactive biopolymer-based conductive composite film and self-enhancing cellulose hydrogel to construct a high-performance wearable supercapacitor, ACS Sustain. Chem. Eng. 2020, 8, 7879-7891.
[21]Y. Lin, Z. Chen, C. Yu, W. Zhong*, Facile synthesis of high nitrogen-doped content, mesopore-dominated biomass-derived hierarchical porous graphitic carbon for high performance supercapacitors, Electrochim. Acta 2020, 334, 135615.
[22]Z. Chen, X. Tan, C. Yu, W. Zhong*, Strategy for constructing nitrogen-doped graphene structure by patching reduced graphene oxide under low temperature and its application in supercapacitors, Ind. Eng. Chem. Res. 2020, 59, 7475-7484.
[23]D. Fu, Z. Chen, C. Yu, X. Song*, W. Zhong*, Bimetallic-organic coordination polymers to prepare N-doped hierarchical porous carbon for high performance supercapacitors, Prog. Nat. Sci-Mater. 2019, 29, 495-503.
[24]H. Li, C. Yu*, Y. Zhou, H. Tuo, W. Zhong*, Biligand metal-organic coordination polymer to prepare high N-doped content and structure controllable porous carbon with high-electrochemical performance, Electrochim. Acta 2019, 308, 263-276.
[25]Y. Lin, Z. Chen, C. Yu, W. Zhong*, Heteroatom-doped sheet-like and hierarchical porous carbon based on natural biomass small molecule peach gum for high-performance supercapacitors, ACS Sustain. Chem. Eng. 2019, 7, 3389-3403.
[26]Z. Peng, C. Wang, Z. Zhang, W. Zhong*, Synthesis and enhancement of electroactive biomass/polypyrrole hydrogels for high performance flexible all-solid-state supercapacitors, Adv. Mater. Interfaces 2019, 6, 1901393.
[27]D. Wu, W. Zhong*, A new strategy for anchoring a functionalized graphene hydrogel in a carbon cloth network to support a lignosulfonate/polyaniline hydrogel as an integrated electrode for flexible high areal-capacitance supercapacitors, J. Mater. Chem. A 2019, 7, 5819-5830.
[28]C. Xiong, Y. Zou, Z. Peng, W. Zhong*, Synthesis of morphology-tunable electroactive biomass/graphene composites using metal ions for supercapacitors, Nanoscale 2019, 11, 7304-7316.
[29]W. Zhang, Y. Zou, C. Yu, W. Zhong*, Nitrogen-enriched compact biochar-based electrode materials for supercapacitors with ultrahigh volumetric performance, J. Power Sources 2019, 439, 227067.
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