
基本信息:
姓名:张主军
职称:教授
工作地点:弘毅楼中庭403-6
Email:zj-zhang@njtech.edu.cn
学习工作经历:
2024.09 - 至今, 南京工业大学,材料化学工程全国重点实验室,教授
2023.04 - 2024.06, 日本东京工业大学,特任助理教授
2021.04 - 2023.03, 日本东京工业大学, JSPS 外国人特别研究员
2020.04 - 2021.03, 日本神户大学,博士后
2017.04 - 2020.03, 日本神户大学,博士
2013.09 - 2016.06, 江西师范大学,硕士
2009.09 - 2013.06, 湖南工程学院,学士
研究方向:
课题组主要从事新型富电子催化材料的设计、合成、表征与应用的研究,发展在原子水平精确调控富电子材料缺陷和电子结构的合成方法,开发适用于催化反应工况下的原位表征分析技术,开展富电子催化材料与催化反应性能之间构效关系的研究。现阶段的主要研究方向包括:
1. 新型富电子型催化材料的设计制备和表征;
2. 面向清洁能源领域(绿氨、绿氢、CO2资源化等)催化应用;
3. 新型催化反应器及其工艺研究。
代表性成果:
发表学术论文20余篇,其中以第一/通讯作者在Nature Chem., Nat. Commun. (2篇),J. Am. Chem. Soc., Angew. Chem. Int. Ed.等国际主流期刊发表论文12 篇。已授权国家发明专利2 项。主持江苏特聘教授、日本学术振兴会(JSPS)外国人特别研究员及日本丸文财团交流研究助成基等项目。曾获江西省自然科学奖一等奖(3/4)、江西省优秀硕士论文、研究生国家奖学金等荣誉。
欢迎对催化、材料和化工过程感兴趣的研究生和本科生加入课题组。
代表性论文:
1. Z. Zhang, K. Miyashita, T. Wu, J. Kujirai, K. Ogasawara, J. Li, M. Miyazaki, S. Satoru, M. Sasase, T. Tada*, H. Hosono*, M. Kitano*, Anion vacancies activate N2 to ammonia on Ba–Si orthosilicate oxynitride-hydride. Nature Chem., 2025, DOI: 10.1038/s41557-025-01737-8. (*通讯作者)
2. Z. Zhang*,Y. jiang, J. Li, M. Miyazaki, M. Kitano, H. Hosono, A 2D Ba2N Electride for Transition Metal-Free N2 Dissociation under Mild Conditions. J. Am. Chem. Soc., 2023, 145, 24482–24485 (Selected as Inside Cover).
3. Z. Zhang, T. Tsuchimochi, T. Ina, Y. Kumabe, S. Muto, K. Ohara, H. Yamada, S. L. Ten-no, T. Tachikawa*, Binary dopant segregation enables hematite-based heterostructures for highly efficient solar H2O2 synthesis. Nature Communications, 2022, 13, 1499 (Selected as Editors' Highlights).
4. Z. Zhang, H. Nagashima, T. Tachikawa*, Ultra-narrow depletion layers in hematite mesocrystal-based photoanode for boosting multihole water oxidation. Angew. Chem. Int. Ed., 2020, 59(23), 9047-9054 (Selected as hot paper and inside cover picture).
5. Z. Zhang, I. Karimata, H. Nagashima, S. Muto, K. Ohara, K. Sugimoto and T. Tachikawa*, Interfacial oxygen vacancies yielding long-lived holes in mesocrystalline hematite photoanodes. Nature Communications, 2019, 10, 4832.
6. Z. Zhang,# Y. Luo,# S. Liu, Q. Yao, S. Qing, Z-H. Lu*, PdAg-CeO2 nanocomposite anchored on mesoporous carbon: Highly efficient catalyst for hydrogen production from formic acid at room temperature, J. Mater. Chem. A, 2019, 7, 21438-21446.
7. Z. Zhang, X. Wei, Y. Yao, Z. Chen, A. Zhang, W. Li, W. D. Wu, Z. Wu,* X. Chen, D. Zhao. Conformal coating of Co/N‐doped carbon layers into mesoporous silica for highly efficient catalytic dehydrogenation–hydrogenation tandem reactions, Small, 2017, 13 (42), 1702243.
8. Z. Zhang, Z-H. Lu,* H. Tan, X. Chen, and Q. Yao. CeOx-modified RhNi nanoparticles grown on rGO as highly efficient catalysts for complete hydrogen generation from hydrazine borane and hydrazine, J. Mater. Chem. A, 2015, 3, 23520-23529.
9. Z. Zhang, Y. Wang, X. Chen, Z-H. Lu,* Facile synthesis of NiPt–CeO2 nanocomposite as an efficient catalyst for hydrogen generation from hydrazine borane, J. Power Sources, 2015, 291, 14-19.
10. Z. Zhang, Z-H. Lu,* and X Chen, Ultrafine Ni–Pt Alloy Nanoparticles Grown on Graphene as Highly Efficient Catalyst for Complete Hydrogen Generation from Hydrazine Borane, ACS Sustainable Chem. Eng., 2015, 3 (6), 1255-1261.