周锦华

发布时间:2023-09-24阅读次数:

研究方向 电化学储能材料与器件(超级电容器、水系离子电池、混合离子电容器)、柔性固态电化学储能器件 学位职称 博士/讲师

Ø 个人基本信息

周锦华,女,博士研究生,现为常熟理工学院电子信息工程学院讲师,2020年毕业于南京大学。目前已在国际期刊上发表SCI论文十多篇。

Ø 研究方向:

电化学储能材料与器件(超级电容器、水系离子电池、混合离子电容器),柔性固态电化学储能器件

Ø 教科研项目:

国家自然科学基金面上项目,21773116,基于插层的层状过渡金属氧化物二维超薄纳米片的杂化及其作为超级电容器电极材料的性能测试,参与。

Ø 教科研论文:

[1] Jinhua Zhou, Xinru Liu, Zhenguang Shao, Tong Shen, Hailin Yu, Xifeng Yang, Haifan You, Dunjun Chen, Changjiang Liu, and Yushen LiuEnhanced Thermoelectric Properties of Coated Vanadium Oxynitride Nanoparticles/PEDOT:PSS Hybrid Films(ACS Appl. Mater. Interfaces 2023, 15, 9953-9961)

[2] Jinhua Zhou, Kaishuai Yang, Qi Kang, Cong Liu, Xiaoge Li, Ningna Chen, Chunliang Lu, Xizhang Wang, Luming Peng, Xuefeng Guo, Weiping Ding, Wenhua HouFast electrochemical redox kinetics of two-dimensional TiO2/Ti3C2Tx

(MXene) heterostructure for high-performance lithium-ion capacitor (Electroanal. Chem. 2023, 928, 117034)

[3]Jinhua Zhou, Qi Kang, Shuchi Xu, Xiaoge Li, Cong Liu, Lu Ni, Ningna Chen, Chunliang Lu, Xizhang Wang, Luming Peng, Xuefeng Guo, Weiping Ding,Wenhua Hou. Ultrahigh rate capability of 1D/2D polyaniline/titanium carbide (MXene) nanohybrid for advanced asymmetric supercapacitors (Nano Res. 2022, 15, 285–295)

[4]Jinhua Zhou, Shuchi Xu, Qi Kang, Lu Ni, Ningna Chen, Xiaoge Li, Chunliang Lu, Xizhang Wang, Luming Peng, Xuefeng Guo, Weiping Ding, Wenhua Hou, Iron oxide encapsulated in nitrogen-rich carbon as anode material for high energy density nonaqueous hybrid lithium-ion capacitorSci.China Mater.2020, 63, 2289–2302)

[5]Jinhua Zhou, Shuchi Xu, Lu Ni, Ningna Chen, Xiaoge Li, Chunliang Lu, Xizhang Wang, Luming Peng, Xuefeng Guo, Weiping Ding, Wenhua HouIron oxide encapsulated in nitrogen-doped carbon as high energy anode material for asymmetric supercapacitors (J. Power Sources.2019, 438, 227047.)

[6]Jinhua Zhou, Ningna Chen, You Ge, Hongli Zhu, Xiaomiao Feng, Ruiqing Liu, Yanwen Ma, Lianhui Wang and Wenhua Hou, Flexible all-solid-state micro-supercapacitor based on Ni fiber electrode coated with MnO2and reduced graphene oxide via electrochemical deposition (Sci.China Mater.2018, 61, 243-253)

Ø 联系邮箱:

jhzhou@cslg.edu.cn