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王娟

来源:化学与材料工程学院时间:2021-08-01


           

 


姓名:王娟

电子邮箱:juanwang@wzu.edu.cn

办公室电话:18711605768


个人简介

王娟,副教授,现就职于温州大学化学与材料工程学院。主要从事纳米材料的设计合成及其在能源储存与转化中的应用。近五年以第一作者身份Nat. Commun.Sci. Adv.ChemAdv. Mater.SCI期刊发表多篇论文,影响因子总和IF>100


受教育经历

2018.09 - 2021.06 苏州大学     无机化学 博士学位(导师:黄小青/路建美教授)

2015.09 - 2018.03 浙江理工大学 材料工程 硕士学位(导师:杜明亮教授/张明副教授

2011.09 - 2015.06 湖南文理学院 材料科学与工程    学士学位

 

研究工作经历

2021.07 - 至今   温州大学            化学与材料工程学院     教授

研究方向

(1)新能源材料的设计与制备

2纳米材料在能源储存与转化中的应用

 

代表性论文

1. J. Wang, H. Yang, F. Li, L. Li, J. Wu, S. L., T. Cheng, Y. Xu*, Q. Shao, and X. Huang*, Single-site Pt-doped RuO2 hollow nanospheres with interstitial C for high-performance acidic overall water splitting. Sci. Adv. 2022, 8, eabl9271.

2. J. Wang, C. Cheng, Q. Yuan, H. Yang, f. Meng, Q. Zhang, L. Gu, J. Cao, L. Li, S. C. Haw, Q. Shao*, L, Zhang, T. Cheng, F. Jiao, and X. Huang*, Exceptionally active and stable RuO2 with interstitial carbon for water oxidation in acid. Chem 2022, 8, 1-15.

3. X. He, Y. Zhang, J. Wang*, J. Li, L. Yu, F. Zhou, J. Li, X. Shen, X. Wang, S. Wang, and H. Jin*, Biomass-derived Fe2N@NCNTs from bioaccumulation as an efficient electrocatalyst for oxygen reduction and Zn-air battery. ACS Sustainable Chem. Eng. 2022, 28, 9105-9112.

4. J. Shen, L. Wang, X. He, S. Wang, J. Chen*, J. Wang*, and H. Jin*, Amorphization-activated copper indium core-shell nanoparticles to achieve stable syngas production from electrochemical CO2 reduction. ChemSuschem 2022, Accepted.

5. J. Wang, C. Cheng, B. Huang, J. Cao, L. Li, Q. Shao, L. Zhang, and X. Huang*, Grain boundary-engineered La2CuO4 perovskite nanobamboos for efficient CO2 reduction reaction. Nano Lett. 2021, 21, 980-987.

6. J. Wang, B. Huang, Y. Ji, M. Sun, T. Wu, R. Yin, X. Zhu, Y. Li, Q. Shao, and X. Huang*, A general strategy to glassy M-Te (M = Ru, Rh, Ir) porous nanorods for efficient electrochemical N2 fixation. Adv. Mater. 2020, 32, 1907112.

7. J. Wang, L. Han, B. Huang*, Q. Shao, H. L. Xin, and X. Huang*, Amorphization activated ruthenium-tellurium nanorods for efficient water splitting. Nat. Commun. 2019, 10, 5692.

8. J. Wang, Y. Ji, Q. Shao, R. Yin, J. Guo, Y. Li*, and X. Huang*. Phase and structure modulating of bimetallic CuSn nanowires boosts electrocatalytic conversion of CO2. Nano Energy 2019, 59, 138-145.

9. J. Wang, Y. Ji, R. Yin, Y. Li*, Q. Shao, and X. Huang, Transition metal-doped ultrathin RuO2 networked nanowires for efficient overall water splitting across a broad pH range. J. Mater. Chem. A 2019, 7, 6411-6416.

10. J. Wang, H. Zhu*, D. Yu, J. Chen, J. Chen, M. Zhang, L. Wang, and M. Du*, Engineering the composition and structure of bimetallic Au-Cu alloy nanoparticles in carbon nanofibers: self-supported electrode materials for electrocatalytic water splitting. ACS Appl. Mater. Interfaces 2017, 9, 19756-19765.


专利

1. 杜明亮, 王娟, 朱罕, 张明, 姚菊明. 一种用于电催化析氢的铜纳米粒子/碳纳米纤维杂化材料的制备方法, 中国发明专利, CN201610551335

2. 杜明亮, 王娟, 朱罕, 张明, 吴炜巍, 姚菊明. 一种纳米尺寸铂铜合金电解水催化材料, 中国发明专利, CN201610644328

3. 杜明亮, 王娟, 朱罕, 张明. 一种金铜双生结构的电解水催化材料, 中国发明专利, CN201710340598


项目

间隙非金属原子调控二氧化钌纳米材料用于酸性电解水性能研究, 2022.01-2024.12(主持)。