边绍伟 副教授 博士 上海市 研究领域: 储能 研究方向: 1.多孔材料的合成及催化、吸附和电化学储能应用 2.纤维基柔性储能材料(超级电容器和锂离子电池)的合成与应用 3.纳米材料的合成与应用 所在单位: 东华大学

基本信息

所在单位:
东华大学
机构细分:
化学与化工学院
单位类型:
高等院校
职务:
副教授
职称:
副教授
最高学历:
博士
专家荣誉:
1.2017-2018年度东华大学化学化工与生物工程学院“优秀党员”
2.2014年入选东华大学“励志计划”
3.2014年度东华大学“师德建设青年标兵”
4.2013-2014年度东华大学青年教师讲课竞赛“优秀奖”

科研能力

研究领域:
储能
研究方向:
1.多孔材料的合成及催化、吸附和电化学储能应用
2.纤维基柔性储能材料(超级电容器和锂离子电池)的合成与应用
3.纳米材料的合成与应用
英文标签:
Supercapacitor;Graphene;Textile;Fiber;Flexible Electrode;Cotton;Electrode;Supercapacitors;Metal-organic Frameworks;Carbon
论文著作:
1.Ya-Nan Liu, Hai-Tao Wang, Xiao-Hui Kang, Yi-Fan Wang, Shi-Yi Yang and Shao-Wei Bian*. Cotton fabric and zeolitic imidazolate framework (ZIF-8) derived hierarchical nitrogen-doped porous carbon nanotubes/carbon fabric electrodes for all-solid-state supercapacitors. J. Power Sources, 2018, in press.
2.Ya-Nan Liu, Jia-Nan Zhang, Hai-Tao Wang, Xiao-Hui Kang, and Shao-Wei Bian*. Boosting the electrochemical performance of carbon cloth negative electrodes by constructing hierarchically porous nitrogen-doped carbon nanofiber layers for all-solid-state asymmetric supercapacitors. Mater. Chem. Front., 2018, 10.1039/C8QM00293B.
3.Hai-Tao Wang, Chun Jin, Ping Liu, Jia-Nan Zhang, Li-Na Jin, Shao-Wei Bian* and Quan Zhu. Cotton yarns modified with three-dimensional metallic Ni conductive network and pseudocapactive Co-Ni layered double hydroxide nanosheet array as electrode materials for flexible yarn supercapacitors. Electrochim. Acta, 2018, 283, 1789-1797.
4.Chun Jin, Ping Liu, Jia-Nan Zhang, Li-Na Jin, Shao-Wei Bian* and Quan Zhu. High-performance yarn electrode materials enhanced by surface modifications of cotton fibers with graphene sheets and polyaniline nanowire arrays for flexible all-solid-state supercapacitors. Electrochim. Acta, 2018, 270, 205-214.
5.Ya-Nan Liu, Li-Na Jin, Hai-Tao Wang, Xiao-Hui Kang and Shao-Wei Bian*. Fabrication of three-dimensional composite textile electrodes by metal-organic framework, zinc oxide, graphene and polyaniline for all-solid-state supercapacitors. J. Colloid Interface Sci., 2018, 530, 29-36.
6.Hai-Tao Wang, Ya-Nan Liu, Xiao-Hui Kang, Yi-Fan Wang, Shi-Yi Yang, Shao-Wei Bian* and Quan Zhu. Flexible yarn-shaped supercapacitors based on porous nickel cobalt sulfide nanosheet arrays on metalized cotton yarns. J. Colloid Interface Sci., 2018, 532, 527-535.
7.Li-Na Jin, Ping Liu, Chun Jin, Jia-Nan Zhang and Shao-Wei Bian*. Porous WO3/graphene/polyester textile electrode materials with enhanced electrochemical performance for flexible solid-state supercapacitors. J. Colloid Interface Sci., 2018, 510, 1-11.
8.Xiao-Hui Kang, Ya-Nan Liu, Hai-Tao Wang and Shao-Wei Bian*. Graphene oxide-assisted synthesis of core-shell structured ZSM-5 zeolites and their catalyst texture effect on the catalytic performance in the acid-catalyzed o-methylation of cyclohexanone with methanol. CrystEngComm, 2018, 20, 3898-3904.
9.Ping Liu, Li-Na Jin, Chun Jin, Jia-Nan Zhang and Shao-Wei Bian*. Synthesis of hierarchically porous silicate-1 and ZSM-5 by hydrothermal transformation of SiO2 colloid crystal/carbon composites. Microporous Mesoprous Mater., 2018, 262, 217-226.
10.Li-Na Jin, Fu Shao, Chun Jin, Jia-Nan Zhang, Ping Liu, Mei-Xia Guo and Shao-Wei Bian*. High-performance textile supercapacitor electrode materials enhanced with three-dimensional carbon nanotubes/graphene conductive network and in situ polymerized polyaniline. Electrochim. Acta, 2017, 249, 387-394.
11.Jia-Nan Zhang, Ping Liu, Li-Na Jin, Chun Jin, Shao-Wei Bian*, Quan Zhu and Bao Wang*. Flexible three-dimensional carbon cloth/carbon fibers/NiCo2O4 composite electrode materials for high-performance all-solid-state electrochemical capacitors. Electrochim. Acta, 2017, 256, 90-99.
12.Chun Jin, Li-Na Jin, Ping Liu, Jia-Nan Zhang and Shao-Wei Bian*. MnO2 nanotubes assembled on conductive graphene/polyester composite fabric as a three-dimensional porous textile electrode for flexible electrochemical capacitors. J. Colloid Interface Sci., 2017, 508, 426-434.
13.Mei-Xia Guo, Shao-Wei Bian*, Si Liu, Fu Shao and Yi-Hang Peng. Hydrothermal synthesis and electrochemical performance of MnO2/graphene/polyester composite electrode materials for flexible supercapacitors. Electrochim. Acta, 2016, 206, 486-497.
14.Fu Shao, Shao-Wei Bian*, Quan Zhu, Mei-Xia Guo, Si Liu and Yi-Hang Peng. Fabrication of polyaniline/graphene/polyester textile electrode materials for flexible supercapacitors with high capacitance and cycling stability. Chem.-Asian J., 2016, 11, 1906-1912. (Hot Topics论文)
15.Shao-Wei Bian, Imali A. Mudunkotuwa, Thilini Rupasinghe and Vicki H. Grassian*. Aggregation and Dissolution of 4 nm ZnO Nanoparticles in Aqueous Environments: Influence of pH, Ionic Strength, Size, and Adsorption of Humic Acid. Langmuir, 2011, 27, 6059-6068.(ESI高被引论文)
16.Shao-Wei Bian, Jonas Baltrusaitis, Pragati Galhotra and Vicki H. Grassian*. A Template-Free, Thermal Decomposition Method to Synthesize Mesoporous MgO with Nanocrystalline Framework and Its Application for CO2 Adsorption. J. Mater. Chem., 2010, 20, 8705-8710.
17.Shao-Wei Bian, Yu-Liang Zhang, Hui-Ling Li, Yu Yu, Yan-Lin Song and Wei-Guo Song*. g-Alumina with Hierarchically Ordered Mesopore/Macropore from Dual Templates. Microporous Mesoporous Mater., 2010, 131, 289-293.
18.Shao-Wei Bian, Zhuo Ma, Le-Sheng Zhang, Fang Niu and Wei-Guo Song*. Silica Nanotubes with Mesoporous walls and Various Internal Morphologies. Chem. Commun., 2009, 1261-1263.
19.Shao-Wei Bian, Zhuo Ma and Wei-Guo Song*. Preparation and Characterization of Carbon Nitride Nanotubes and Their Applications as Catalyst Supporter. J. Phys. Chem. C, 2009, 113, 8668-8672.
20.Shao-Wei Bian, Zhuo Ma, Cui Zhi-Min, Le-Sheng Zhang, Fang Niu and Wei-Guo Song*. Synthesis of Micrometer-Sized Nanostructured Magnesium Oxide and Its High Catalytic Activity in the Claisen-Schmidt Condensation Reaction. J. Phys. Chem. C, 2008, 112, 11340-11344.
发明专利:
1. 一种石墨烯/棉布柔性导电织物及其制备方法
东华大学
边绍伟; 许玲利
公开日期: 2019-03-08 申请日期: 2015-08-28 公开号: CN105088749B
科研项目:
1.国家自然科学基金青年基金项目:纤维基柔性多孔储能材料的可控构筑及其电化学电容性能研究
2.东华大学“励志计划”项目:纤维基柔性储能材料的构筑与性能研究
3.教育部留学回国人员科研启动基金项目:基于金属及金属氧化物的多孔核-壳结构纳米反应器的构筑及催化性能研究
4.中央高校基本科研业务费项目:多孔核-壳结构纳米催化反应器的构筑与性能研究
5.东华大学青年教师启动资助项目:多孔金属氧化物材料的可控构筑及其应用研究

项目合作

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