张露

associate professor   Supervisor of Master's Candidates

Gender : Female

Alma Mater : 广岛大学

Education Level : Graduate student graduate

Degree : Doctorate

Status : 在岗

School/Department : 化学与材料科学学院

Date of Employment : 2017-12-04

Business Address : 15-108

Contact Information : 18858961634/681634

Email :


Current position: Home >> Teaching research

Personal Profile

个人概况

     名:张                             贯:江苏扬州                 

 出生年月:1989.9                  电子邮箱:zhanglu@zjnu.edu.cn

 研究领域:生物质电转化;燃料电池;电解水;催化剂的设计与制备等

 

工作背景

·    12/2020~                  浙江师范大学 化学与材料科学学院  分析学科   副教授,硕导,专业主任

·       01/2020~ 12/2020   浙江师范大学 化学与生命科学学院  分析学科   青年副教授

·       12/2017~12/2019    浙江师范大学 化学与生命科学学院  分析学科   讲师

 

教育背景

·        9/2014~9/2017  博士 应用化学 日本广岛大学    导师:Prof. Harima Yutaka

·        9/2011~6/2014  硕士  物理化学   南京师范大学   导师:唐亚文教授,陈煜教授

·        9/2007~6/2011  学士  应用化学   南京师范大学   导师:唐亚文教授,陈煜教授

 

主持科研项目:

1.    浙江省自然科学基金探索一般项目 —— p轨道桥接下内电场的构建及其对HMF选择性电氧化的促进机制 (LMS25B060005)               

2.    国家自然科学基金青年基金 —— 氰胶还原法制备三维多级微纳结构非贵金属催化剂及其在全水电解中的应用 (21805245)

 

指导学生竞赛(第一指导):

1.    中国国际大学生创新大赛(2024)(原“互联网+”)        国家金奖         2024.10

2.    第十八届“挑战杯”全国大学生课外学术科技作品竞赛      国家一等奖     2023.11  

3.    浙江省第十四届“挑战杯”大学生创业计划竞赛                  省金奖             2024.5

4.    浙江省大学生化学竞赛                                                              省一等奖         2023, 2022, 2021, 2018

 

5年来代表作(一作或通讯):

1.       H. Y. Guo, J. W. Kang, L. Zhang*, G. X. Yang*, J. J. Feng, A. J. Wang*. Pyrazine-AuCu interfaces with engineered charge delocalization overcome activity-stability trade-off at industrial-grade glycolic acid electrosynthesis. Appl. Catal. B: Environ. Energy, 2026, 388, 126551.

2.       H. Y. Guo, J. W. Kang, Y. Y. Du, L. Zhang*, J. J. Feng, A. J. Wang. N-Coordinated Pd–Rh synergy for highly selective ethylene glycol oxidation and efficient hydrogen evolution. Green Chem., 2025, 27, 7242–7253.

3.       H. J. Shen, J. W. Kang, Z. F. Wang, Z. Q. Wang, L. Zhang*, J. J. Feng, A. J. Wang*. Integrating internal electric field in PdRh-Cu2O/Cu nanorods: Revolutionizing low-energy hydrogen production and biomass upgrading. Chem. Eng. J., 2025, 504, 158847.

4.       L. Zhang, D. H. Wu, M. Ul Haq, J. J. Feng, F. Yang*, A. J. Wang*. Coordination engineering and electronic structure modulation of FeNi dual-single-atoms encapsulated in N, P-codoped 3D hierarchically porous carbon electrocatalyst for synergistically boosting oxygen reduction reaction. Appl. Catal. B: Environ. Energy, 2024, 351, 123991.

5.       L. Zhang*, L. Y. Kong, X. Zhang, X. C. Zhou, J. J. Feng, A. J. Wang*. Pt-O bond accelerated Cu0/Cu+ activity for boosting low-energy bipolar hydrogen production. Small, 2024, 20, 2402981.

6.       X. Zhang, J. Yu, H. J. Shen, L. Zhang*, G. X. Yang, X. C. Zhou*, J. J. Feng, A. J. Wang*. Reconstituting Cu0/Cu+ synergy with heterostructured CeO2 enabling energy-efficient bipolar hydrogen generation. Chem. Eng. J., 2023, 475, 146506.

7.       X. Zhang, T. Y. Liu, Y. Zhou, L. Zhang*, X. C. Zhou*, J. J. Feng, A. J. Wang*. A transformative strategy to realize hydrogen production with electricity output through ultra-low potential furfural oxidation on hollow PdCu alloy networks. Appl. Catal. B: Environ., 2023, 328, 122530.

8.       S. Y. Lin, Y. P. Chen, Y. Cao, L. Zhang*, J. J. Feng, A. J. Wang*. Aminouracil-assisted synthesis of CoFe decorated bougainvillea-like N-doped carbon nanoflowers for boosting Zn–air battery and water electrolysis. J. Power Sources, 2022, 521, 230926. 高被引论文

9.       S. Y. Lin, L. X. Xia, L. Zhang*, J. J. Feng, Y. Zhao*, A. J. Wang*. Highly active Fe centered FeM-N-doped carbon (M = Co/Ni/Mn): A general strategy for efficient oxygen conversion in Zn–air battery. Chem. Eng. J., 2021, 424, 130559.

10.    Z. J. Wang, M. X. Jin, L. Zhang*, A. J. Wang, J. J. Feng*. Amorphous 3D pomegranate-like NiCoFe nanoassemblies derived by bi-component cyanogel reduction for outstanding oxygen evolution reaction. J. Energy Chem., 2021, 53, 260-267. 高被引论文