张龙舟
博士,副研究员
longzhouzhang@ynu.edu.cn
张龙舟,现任云南大学材料与能源学院副研究员,云南省高层次引进人才。长期从事电化学研究,发表SCI论文60余篇,被引用8000余次。兼职担任中国材料研究学会青年工作委员会理事,智利共和国科技部自然科学基金(FONDECYT)外籍评审专家。主持国家自然科学基金项目2项;云南省重点、面上以及人才项目3项;云南大学人才项目1项;其他各级项目/课题5项,主持项目经费超过486万元。课题组具备全套电化学以及热催化实验条件,装备有模拟计算服务器集群,长期招收电化学、热催化以及模拟计算方向的研究生。
教育和工作经历
(1) 2020-04 至 今, 云南大学, 材料与能源学院, 副研究员
(2) 2018-11 至 2020-04, 云南大学, 材料科学与工程学院, 副研究员
(3) 2014-09 至 2018-03, 格里菲斯大学, 无机化学, 博士
(4) 2008-08 至 2012-07, 西安交通大学, 能源动力工程与自动化, 学士
研究领域
1.电催化剂
2.凝胶聚合物电解质
3.铜基热催化反应
4.有限元、分子动力学、密度泛函计算模拟
科研与教学情况
1. 科研项目
(1)国家自然科学基金项目,基于石墨烯层间距精准调控的层间电子耦合效应在氧还原反应中的作用机制
(2)国家自然科学基金项目,基于生物超富集宏量制备金属单原子催化
(3)云南省“兴滇英才”科研项目,在改性金属氢氧化物介导的凝胶电解质中构筑二维能金属空气电池阴离子通道用于高性能金属空气电池
(4)云南省科技厅联合专项重点项目,构筑碳基金属单原子催化剂用于电芬顿反应降解抗生素及催化机理研究
(5)云南基础研究面上项目,真菌孢子负载金属作为催化剂用于可充电全固态锌空气电池
(6)云南大学人才引进项目,碳缺陷催化剂在电催化反应中的应用
(7)云南大学服务地方发展科技专项,有机硅产业废催化剂再生利用与高效二氧化碳催化转化技术
(8)企业横向项目,高性能无机纳米催化剂制备改进工艺研发
2. 教学成果
(1)在科学出版社出版《电子能量损失谱学》教材。
(2)执教的《材料分析方法》博士生课程获批云南省优质研究生课程。
(3)指导本科生立项国家级大创项目。
主要学术成果
(一)代表性论文
1. 论文
[1] Xuliang Yang, Xiaohong Sun, Daohao Li, Qingju Liu, Longzhou Zhang*, Bionics inspired overall design of DMF-stabilized zwitterionic gel for robust flexible zinc–air batteries, EES Batteries 2026.
[2] Q. Y. Xu, Y. R. Wang, X. Feng, T. M. Fang, X. Y. Li, L. Z. Zhang*, L. J. Zhang*, D. H. Li*, D. J. Yang, Monoclinic Li2ZrO3 with cationic vacancy-based ion transport channels enhanced composite polymer electrolytes for high-rate solid-state lithium metal batteries, Nano Energy 2026, 147, 10.
[3] Jianan Su, Zirui Liu, Xueyan Li, Bin Zhang, Yueqi Han, Qingju Liu, Feng Qiu*, Longzhou Zhang*, Challenging the FeN4 paradigm: Atomic-scale identification of low-spin FeN2C2 as a highly active site for the oxygen reduction reaction, Chem. Eng. J. 2026, 546, 180034.
[4] Qinglu Peng, Xiaohong Sun, Bin Zhang, Haofeng Gao, Li Qiu, Qingju Liu, Longzhou Zhang*, Biomimetic Ionic COF Channels Enable Grotthuss Hydroxide Conduction in PAA Gels for Dendrite-Free Quasi-Solid Zinc-Air Batteries, Adv. Funct. Mater. 2026, 36, e75760.
[5] W. F. Lang, H. Li, L. Z. Zhang*, J. Feng, Y. H. Jia, M. T. Zhang, S. F. Zhao, Y. D. Kim, Z. Y. Liu, Z. K. Peng*, Dual-Acid-Site Engineering in Ti-β Zeolites for Enhanced Benzene Alkylation with Cyclohexene, ACS Sustain. Chem. Eng. 2026, 14, 229-237.
[6] Dong He, Ranxiao Hui, Xvliang Yang, Yuechen Chen, Jun Yang, Qingju Liu, Longzhou Zhang*, From phytoremediation to renewable energy: sustainable upcycling of Fe-enriched peanut sprouts into single-atom catalysts for rechargeable zinc-air battery, Bioresource Technology 2026, 457, 135014.
[7] L. Wu, C. Y. Ji, X. Y. Li, Z. R. Liu, H. Yang, F. Qiu, Z. L. Peng, Q. J. Liu, L. Z. Zhang*, The high electron occupation on anti-bond orbital induced by the asymmetric covalent structure of C-S-N enhancing the oxygen reduction reaction, J. Power Sources 2025, 632, 236330.
[8] X. H. Sun, J. H. Zhang, X. Y. Li, Q. L. Peng, X. L. Yang, Q. J. Liu, L. Z. Zhang*, Breaking the trade-off: Janus gel empowers flexible Zn-air batteries with simultaneous ultrahigh strength and ionic flux, Chem. Eng. J. 2025, 514, 163395.
[9] H. Yang, X. H. Sun, X. Y. Li, Q. J. Liu, W. B. Hu*, L. Z. Zhang*, Janus Grotthuss-Vehicle Mechanism Enhances Fast OH- Transport for Ultralong Lifetime Flexible Zinc-Air Battery, Adv. Funct. Mater. 2024, 34, 2409695.
[10] Sirui Tang, Qingju Liu, Longzhou Zhang*, Bio-Assisted Atomically Dispersed Fe-N-C Electrocatalyst with Ultra-Low Fe Loading toward pH-Universal Oxygen Reduction Reaction and Neutral Zn-Air Battery, ACS Sustain. Chem. Eng. 2023, 11, 8131-8139.
[11] Sirui Tang, Zirui Liu, Feng Qiu*, Qingju Liu, Yong Mao*, Longzhou Zhang*, The active ruthenium (101) crystal plane selectively exposed by in situ metal hyperaccumulation on a living plant for overall water splitting, Green Chemistry 2022, 24, 9668-9676.
[12] Qianqian Fan, Jianan Su, Tao Sun, Zenghui Bi, Huaisheng Wang, Shusheng Zhang, Qingju Liu, Longzhou Zhang*, Guangzhi Hu*, Advances of the functionalized carbon nitrides for electrocatalysis, Carbon Energy 2022, 4, 211-236.
[13] Qianqian Fan, Zirui Liu, Feng Qiu*, Yong Mao, Qingju Liu, Longzhou Zhang*, Electro-assisted Molecular Assembly Giving Atomic-Scale Catalytic Active-Site Detection, Chemistry-a European Journal 2022, 28.
[14] Jianan Su, Linzhou Zhuang, Shusheng Zhang, Qingju Liu, Longzhou Zhang*, Guangzhi Hu*, Single atom catalyst for electrocatalysis, Chinese Chemical Letters 2021, 32, 2947-2962.
[15] Jianan Su, Shusheng Zhang, Qingju Liu, Guangzhi Hu*, Longzhou Zhang*, The janus in monodispersed catalysts: synergetic interactions, J. Mater. Chem. A 2021, 9, 5276-5295.