张泽霞

发布时间:2024-11-02浏览次数:

导师姓名:张泽霞

副教授、硕士生导师

研究领域:碳基纳米材料、学科教学论(物理)

电子邮件:xj_zzx@126.com

教育背景

1.2011/09 2018/07清华大学材料学院材料科学与工程博士

2.2005/09 2008/07新疆大学凝聚态物理硕士

3.2000/09 2004/07新疆大学光电子技术学士

工作简历

1.2023/12 – 至今,新疆师范大学,物理与电子工程学院,副教授

2.2008/9 – 2023/12,新疆师范大学,物理与电子工程学院,讲师

研究方向

低维碳基纳米材料的第一性原理计算

碳基复合纳米材料的设计及其在清洁能源转换中的应用

获奖情况

1.2022/06,指导学生获得中国大学生物理学术竞赛西北赛区团体一等奖

2.2021/06,指导学生获得新疆大学生物理学术竞赛团队一等奖

3.2019/06,指导学生获得中国大学生物理学术竞赛西北赛区团体二等

主持科研项目

1.新疆维吾尔自治区自然科学基金面上项目,2022D01A220碳基过渡金属硫化物的构筑及其光伏电解水性能研究,2022/10-2025/09,10万元,主持。【省部级】

2.教育部高等学校大学物理课程教学指导委员会西北地2023年高等学校教学研究项目,XBJY202304,金课“两性一度'视域下科研前沿融入大学物理教学研究,2023/09-2025/090.1万元,主持。【省部级】

3.新疆师范大学博士科研启动基金项目,XJNUBS1903,高性能碳基电极混合太阳电池,2019/05-2022/05,5万元,主持。【校级】

主要学术成果

期刊论文:

1.Zexia Zhang, Yi Jia, Qian Lv, Ruitao Lv, Feiyu Kang, Carbon nanotube networks as efficient transparent electrode for polymer/silicon hybrid solar cells, Journal of Materiomics, 2026, 12(2): 101152.

2.Zexia Zhang, Lina Shen, Chen Qin, Ruitao Lv and Feiyu Kang, Highly efficient and free-standing WS2/C electrocatalyst for solar-cell-driven hydrogen evolution reaction, Journal of Materials Chemistry A (J. Mater. Chem. A), 2026, 14: 6627.

3.张泽霞, 沈丽娜, 秦 晨, 魏 蔚, 等离子体处理对WS2/C复合结构的形貌调控研究, 中国新技术新产品, 2026, 1: 1-4.    

4.张泽霞,沈丽娜,秦晨,魏蔚,光伏电解水制氢系统的研究进展与挑战,科技创新与应用,2026,12: 87-90.

5.张泽霞,沈丽娜,秦晨. 基于课堂小论文的理论力学考核方法初探[J],大学,2023,17:114.

6.沈丽娜,秦晨,张泽霞*. 科研前沿融入《大学物理》课程教学改革初探[J],科教导刊(电子版),2023,10:211.

7.秦 晨,张泽霞,沈丽娜, 基于科学素养提升的《大学物理》课程教学创新研究,科教导刊(电子版),2023,6: 238.

8.Zhang Z X, Wang Y X, Leng X X, Crespi V H, Kang F Y. Lv R T. Controllable edge exposure of MoS2 for efficient hydrogen evolution with high current density. ACS Applied Energy Materials, 2018, 1:1268.

9.Zhang Z X, Lv R T, Jia Y, Gan X, Zhu H W, Kang F Y. All-Carbon Electrodes for Flexible Solar Cells. Applied Sciences, 2018, 8:152.

10.Zhang Z X, Lv R T, Huang Z H, Kang F Y. Carbon materials for use in the electrocatalytic hydrogen evolution reaction. New Carbon Materials,2019,34:2

11.Zhang Z X, Cui T X, Lv R T, Zhu H W, Wang K L, Wu D H, Kang F Y. Improved Efficiency of Graphene/Si Heterojunction Solar Cells by Optimizing Hydrocarbon Feed Rate. Journal of Nanomaterials, 2014:359305.

12.Jia Y, Zhang Z X, Xiao L, Lv R T. Carbon Nanotube-Silicon Nanowire Heterojunction Solar Cells with Gas-Dependent Photovoltaic Performances and Their Application in Self-Powered NO2 Detecting, Nanoscale Research Letters, 2016, 11:299.

13.Z.X. Zhang, B.B. Cao, H.M. Duan. Density-functional calculations of MnC (M = Fe, Co, Ni, Cu, n = 1–6) clusters. Journal of Molecular Structure: THEOCHEM, 2008, 863: 22–27.

14.Chen Q, Zhong Y J, Zhang Z X, Huang M R, Zhen Z, He Y J, Zhu H W. Long-term stability of the electrical conductivity of graphene under uncontrolled ambient conditions. Carbon, 2018, 133:410-415.

15.Zhu M, Li X, Zhang Z X, Sun P Z, Zang X B, Wang K L, Zhong M L, Wu D, Zhu H W. Amorphous Nitrogen Doped Carbon Films: A Novel Corrosion Resistant Coating Material, Advanced Engineering Materials, 2014, 16:5.

16.Gan X, Lv R T, Bai J F, Zhang Z X, Wei J Q, Huang Z H, Zhu H W, Kang F Y, Terrones M. Efficient photovoltaic conversion of graphene–carbon nanotube hybrid films grown from solid precursors, 2D Materials, 2015, 2:034003.

17.Gan X, Lv R T, Wang X Y, Zhang Z X, Fujisawa K, Lei Y, Huang Z, Terrones M, Kang F Y. Pyrolytic carbon supported alloying metal dichalcogenides as free-standing electrodes for efficient hydrogen evolution, Carbon, 2018, 132:512.

18.Cui T X, Lv R T, Huang Z H, Chen S X, Zhang Z X, Gan X, Jia Y, Li X, Wang K L, Wu D H, Kang F Y. Enhanced efficiency of graphene/silicon heterojunction solar cells by molecular doping, Journal of Materials Chemistry A, 2013, 1:5736.

19.Gan X, Lv R T, Zhu H W, Ma L P, Wang X Y, Zhang Z X, Huang Z H, Zhu H, Ren W C, Terrones M, Kang F. Polymer-Coated Graphene Films as Anti-Reflective Transparent Electrodes for Schottky Junction Solar Cells, Journal of Materials Chemistry A, 2016, 4:13795.

20.王先明; 沈丽娜; 张泽霞增强数字全息再现像的数字方法及实验研究[J],新疆师范大学学报(自然科学版),2013,2:7-10

21.沈丽娜; 王先明; 张泽霞相移数字全息图像加密技术研究进展[J],新疆师范大学学报(自然科学版),2013,4: 51-53