应用化学系

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董玉涛

发布日期:2021-11-20点击数:

董玉涛

办公室:13号楼517

实验室:18号楼214、416

Email:ytdong@henau.edu.cn


主讲课程

本科生课程:物理化学、分析化学、基础化学实验I-II

研究生课程:功能配位化学、能源材料与器件、动力电池的开发与设计


研究领域与兴趣

储能是能源革命的关键支撑技术,发展储能是促进风能和太阳能等高比例可再生能源并网消纳的重要手段,是提升关键装备与系统自主可控能力,实现我国能源结构转型和能源供给安全的关键,也是实现碳达峰、碳中和亟需关键共性支撑技术。我们以永续发展为目标,在能源化学及能源材料领域,主要致力于动力电池相关储能材料的研究,重点开展了新型锂/钠离子电池电极材料、锂硫电池关键材料与器件功能导向设计、可控构筑和构效关系等方面的工作。

具体研究工作包括:

1)功能纳米材料、生物质功能材料

2)能源电化学(锂硫电池、固态电池、锂/钠离子电池)


教育背景

2015.09-2019.06  郑州大学化学与分子工程学院      物理化学  理学博士

2007.09-2010.06  河南师范大学化学与环境科学学院  无机化学  理学硕士

2002.09-2006.06  周口师范学院化学系              化学      理学学士


工作经历

2024.02-至今     河南农业大学  副教授、博士/硕士生导师

2021.01-2024.01  河南农业大学 理学院 讲师

2019.08-2020.12  郑州大学 河南先进技术研究院  讲师

2010.08-2015.08  河南化工职业学院 化学化工学院  讲师

2006.08-2007.08  滑县第一高级中学  教师

学术兼职和社会兼职

中国化学会会员、中国材料研究学会会员、河南省化学会会员,Adv. Funct. Mater., J. Colloid Interface Sci., ACS Appl. Mater. Interfaces, J. Energy Storage等杂志审稿人


学术成果

奖励

[1] 获2025年河南农业大学大学生创新大赛优秀指导教师奖(2025.12)

[2] 2024河南省派博士服务团团员(服务企业:河南克莱威纳米碳材料有限公司2024.09-2025.08)

[3] 获2023年度河南省事业单位工作人员定期奖励个人嘉奖(2024.11)

[4] 获2024年河南农业大学本科课堂教学质量奖二等奖(2024.9)

[5] 2023、2025国家级大学生创新训练项目指导教师

[6] 河南农业大学2022届本科毕业论文(设计)优秀指导教师

[7] 河南农业大学拔尖人才(2021)

项目

[1] 河南省自然科学基金面上项目,252300420244,超薄3d金属MOFs/碳基复合材料的可控缺陷构筑与电催化固硫机制研究,2025.01-2026.12, 在研, 主持

[2] 河南省科技厅2025科技副总,30804804,2025.12-2027.12,主持

[3] 河南省科技厅2025河南省科技特派员,30804186,2025.07至2026.07,主持

[4] 河南省科技攻关项目,242102240001,基于二维过渡金属MOFs/rGO复合材料的可控缺陷构筑及其锂硫电池应用研究,2024.01-2025.06,结题,主持

[5] 河南农业大学拔尖人才项目,30501035,高性能锂硫电池电极材料设计合成与器件,2021.03至2026.03,结题,主持

[6] 河南省科技攻关项目,212102210586,二维过渡金属硫化物-石墨烯复合材料的缺陷构筑及其在锂硫电池中的应用研究,2021.01-2022.07,结题,主持

[7] 国家自然科学基金面上项目,22579047,热充电柔性超级电容器的构筑及其热-电耦合场下的离子输运调控,2026.01-2029.12,在研,参与(第二)

[8] 国家重点研发计划“可再生能源技术”专项 子课题,2023YFB4203705,同步热解调控微纳结构创制木质素碳基化学催化产氢材料,2023.12-2025.1, 参与(第三)

[9] 河南省自然科学基金面上项目, 252300423115,河南省科技厅,二维介孔材料多功能设计及其微型超级电容器-传感器集成系统研究,2025.10-2027.09,参与(第二)

[10] 国家自然科学基金青年科学基金项目,21701144,具有特殊结构的碳包覆锡基硫化物钠离子电池负极材料及储钠性能研究,2018.01 至 2020.12,结题,参与(第二)

[11] 河南省自然科学基金面上项目,182300410278,多级结构TixSn1-xO2/C复合材料的设计与可控制备及其作为动力锂离子电池负极材料性能的研究,2018.01 至 2019.12, 结题, 参与(第二)

[12] 龙子湖新能源实验室课题(可再生能源),LZHLH2023011,生物质硬碳钠电池负极材料的研究,2023.07至2025.12,参与(第二)

论文

[1] Yutao Dong*,#, Ziqian Jin#, Jiyu Wang, Meili Wang, Shiyu Ma*, Lifeng Han, Liangxin Fan, Yunlai Ren, Xin Li*, Lixia Xie and Jianmin Zhang, Layered Ni-MOFs with Dual-Ligand Modulation: A High-Rate-Performance Sulfur Host for Enhanced Catalytic Activity in Lithium-Sulfur Batteries, Nano Res., 2026, 19, 94908198.

[2] Mengmeng Zhu, Jiyu Wang, Yiming Song, Shixian Xu, Ziqian Jin, Shiyu Ma, Jieqiong Qin, Yunlai Ren, Yutao Dong*, Jianmin Zhang*, Strategic component regulation of Mo(S1-xSex)2@rGO ultrathin sheets to enhance the electrochemical performance of Lithium-sulfur batteries, J. Colloid Interface Sci. 2026, 702, 138881.

[3] Yiming Song, Mengmeng Zhu, Jiyu Wang, Chunjing Wang, Lifeng Han, Ying Zhang, Jianmin Zhang*, Yutao Dong*, Suppressing polysulfide shuttling with a MoS2/MoSe2@rGO heterostructure-based separator for high-cycling-stability lithium–sulfur batteries, J. Energy Storage 2026, 154, 121257.

[4] Yutao Dong,* Ziqian Jin, Huaiqi Peng, Meili Wang, Shiyu Ma,* Xin Li, Yunlai Ren, Lixia Xie, and Jianmin Zhang*, Size Effect and Interfacial Synergy Enhancement of 2D Ultrathin CoxZn1-x-MOF/rGO for Boosting Lithium-Sulfur Battery Performance, Small 2025, 21, 2412186.

[5] Shiyu Ma#, Huaiqi Peng#, Anqi Lou, Ziqian Jin, Jianmin Zhang, Yutao Dong*, Amorphous CoF2@Dual-N-Carbon Core-Shell Nanoreactors Suppress Polysulfide Shuttling for Durable Li-S Batteries, J. Energy Storage 2026, 160, 121972.

[6] Aml E. Shrshr, Mohammed A. Al-Tahan, Meili Wang,Yutao Dong*, Jiyu Wang, Chunjing Wang, Jianmin Zhang*, Enhancing the redox kinetics of Li-S cells with Fe-doped MoS2 and WO3 intercalated multilayer reduced graphene oxide as a multifunctional mediator, Colloid Surface A 2026, 737, 139704.

[7] Shixian Xu, Mengmeng Zhu, Ziqian Jin, Ying Zhang, Xueli Yan, Huaiqi Peng, Yiming Song, Yutao Dong*, Jianmin Zhang* Regulation of covalent organic framework pore structure for boosting electrochemical performances of lithium-sulfur battery, J. Colloid Interface Sci. 2025, 699, 138154.

[8] Xueli Yan, Ying Zhang, Yutao Dong*, Mengmeng Zhu, Shixian Xu, Yiming Song, Yumiao Han, Zihao Cheng, Jianmin Zhang*, Boosting electrochemical performances of lithium sulfur battery via rational design and fabrication engineering of cobalt boride-based core-shell structure composite as a multifunctional sulfur host, J. Power Sources 2025, 645, 237223.

[9] Yutao Dong*, Huaiqi Peng, Ziqian Jin, Shiyu Ma*, Lifeng Han, Xia Sheng, Yunlai Ren, Lixia Xie, Xianfu Zheng, Xin Li*, Jianmin Zhang,Synergistic improvement of the sulfur redox reaction by MOF-driven dual-defect polyhedral Mn-doped Co1-xS embedded in an N-doped carbon composite host for practical lithium-sulfur batteries, Electrochim. Acta 2024, 506, 145070.

[10] Meili Wang, Yumiao Han, Huaiqi Peng, Ziqian Jin, Hui Guan, Shiyu Ma,* Xin Li, Yunlai Ren, Lixia Xie, Xianfu Zheng, Jianmin Zhang,* and Yutao Dong*, Boosting electrocatalysis activities of 2D ultrathin BiOX/rGO (X=F, Cl, Br, I) nanosheets as sulfur hosts: insight into the electronegativity effect of halogenated elements on the electrochemical performances of lithium-sulfur batteries, Inorg. Chem. Front. 2024, 11, 4277-4287.

[11] Mengmeng Zhu, Ying Zhang, Shixian Xu, Xueli Yan, Yiming Song, Meili Wang, Yutao Dong,* Jianmin Zhang*, Enhanced lithium-sulfur battery electrochemistry via Se-doped MoS2/rGO ultrathin sheets as sulfur hosts, Applied Surface Science  2025, 682, 16171.

[12] Xueli Yan, Ying Zhang, Zihao Cheng, Yumiao Han, Mengmeng Zhu, Shixian Xu, Yutao Dong*, Jianmin Zhang*, A Sulfur-Host Design for Adsorption/Catalysis Strong Synergy on Polysulfide Conversions via CoB/NCPS Composites Inheriting the Polyhedron Morphology of Metal-Organic Framework, Chem. Eng. J. 2024, 488, 151129.

[13] Ying Zhang, Yutao Dong *, Xueli Yan, Huaiqi Peng, Shixian Xu, Mengmeng Zhu, Ziqian Jin, Lifeng Han, Jianmin Zhang*, Heteroatom surface engineering with distinct doping ways and valence state regulation: Boosting electrocatalysis performance of Ni-doped MoS2/rGO host for excellent lithium sulfur batteries, J. Energy Storage 2024, 84, 111023.

[14] Jianmin Zhang*, Xueli Yan, Zihao Cheng, Yumiao Han, Ying Zhang, Yutao Dong*, Applications, Prospects and Challenges of Metal Borides in Lithium Sulfur Batteries, J. Colloid Interface Sci. 2024, 657, 511-528.

[15] Zihao Cheng, Meili Wang, Yutao Dong*, Yumiao Han, Xueli Yan, Lixia Xie, Xin Zheng, Lifeng Han, Jianmin Zhang*, Two-birds with one stone: Improving both cathode and anode electrochemical performances via two-dimensional Te-CoTe2/rGO ultrathin nanosheets as sulfur hosts in lithium-sulfur batteries, J. Colloid Interface Sci. 2023, 649, 86-96.

[16] Yumiao Han, Meili Wang, Yutao Dong*, Zihao Cheng, Xin Li*, Xueli Yan, Ying Zhang, Jianmin Zhang*, Improving performances of Lithium-Sulfur cells via regulating of VSe2 functional mediator with Doping-Defect engineering and Electrode-Separator integration strategy, J. Colloid Interface Sci. 2023, 644, 42-52.

[17] Xiyang Kang, Ziqian Jin, Huaiqi Peng, Zihao Cheng, Lijie Liu, Xin Li, Lixia Xie, Jianmin Zhang*, Yutao Dong*, The role of selenium vacancies functionalized mediator of bimetal (Co, Fe) selenide for high-energy-density lithium-sulfur batteries, J. Colloid Interface Sci. 2023, 637, 161-172. 2023ESI高被引论文(Chemistry学术领域最优秀的1%之列)

[18] Aml E. Shrshr, Yutao Dong*, Mohammed A. Al-Tahan, Lifeng Han, Xiyang Kang, Hui Guan, Jianmin Zhang*, Novel hydrothermal synthesis of Mn-TaS3@rGO nanocomposite as a superior multifunctional mediator for advanced Li-S batteries, J. Colloid Interface Sci. 2023, 633, 1042-1053.

[19] Mohammed A. Al-Tahan, Yutao Dong*, Aml E. Shrshr, Xiyang Kang, Hui Guan, Yumiao Han, Zihao Cheng, Weihua Chen, Jianmin Zhang*, Modulating of MoSe2 functional plane via doping-defect engineering strategy for the development of conductive and electrocatalytic mediators in Li-S batteries, J. Energy Chem. 2022, 75, 512-523.

[20] Yutao Dong*, Ran Zhang, Huaiqi Peng, Dandan Han, Xianfu Zheng*, Yumiao Han, Jianmin Zhang*, Active sulfur-host material VS4 with surface defect engineering: Intercalation-conversion hybrid cathode boosting electrochemical performance of Li-S batteries, ACS Appl. Mater. Interfaces 2022, 14, 32474-32485.

[21] Hui Guan, Yutao Dong*, Xiyang Kang, Yumiao Han, Zihao Cheng, Lifeng Han, Lixia Xie*, Weihua Chen, Jianmin Zhang*, Extraordinary electrochemical performance of lithium–sulfur battery with 2D ultrathin BiOBr/rGO sheet as an efficient sulfur host, J. Colloid Interface Sci. 2022, 626, 374-383.

[22] Xiyang Kang, Yutao Dong*, Hui Guan, Mohammed A. Al-Tahan, Jianmin Zhang*, Manipulating the Electrocatalytic Activity of Sulfur Cathode via Distinct Cobalt Sulfides as Sulfur Host Materials in Lithium-Sulfur Batteries, J. Colloid Interface Sci. 2022, 622, 515-525.

[23] Ruipeng Wei, Yutao Dong*, Yingying Zhang, Xiyang Kang, Xia Sheng, Jianmin Zhang*, Hollow cubic MnS-CoS2-NC@NC designed by two kinds of nitrogen-doped carbon strategy for sodium ion batteries with ultraordinary rate and cycling performance, Nano Res. 2022, 15, 3273-3282.

[24] Aml E. Shrshr, Yutao Dong*, Mohammed A. Al-Tahan, Xiyang Kang, Hui Guan, Xianfu Zheng*, Jianmin Zhang*, Modified separator engineering with 2D ultrathin Ni3B@rGO: Extraordinary electrochemical performance of the lithium-sulfur battery with enormous-sulfur-content cathode in low electrolyte/sulfur ratio, J. Alloys Compd. 2022, 910, 164917.

[25] Mohammed A. Al-Tahan, Yutao Dong*, Aml E. Shrshr, Xiaobiao Liu, Ran Zhang, Hui Guan, Xiyang Kang, Ruipeng Wei, Jianmin Zhang*, Enormous-sulfur-content cathode and excellent electrochemical performance of Li-S battery accouched by surface engineering of Ni-doped WS2@rGO nanohybrid as a modified separator, J. Colloid Interface Sci. 2022, 609, 235-248.

[26] Yingying Zhang, Yutao Dong*, Ruipeng Wei, Hui Guan, Xiyang Kang, Mohammed A. Al-Tahan, Jianmin Zhang*, Rod-like Ni0.5Co0.5C2O4.2H2O in-situ formed on rGO by an interface induced engineering: Extraordinary rate and cycle performance as an anode in lithium-ion and sodium-ion half/full cells, J. Colloid Interface Sci. 2022, 607, 1153-1162.

[27] Ran Zhang, Yutao Dong*, Mohammed A. Al-Tahan, Yingying Zhang, Ruipeng Wei, Yuhang Ma, Changchun Yang, Jianmin Zhang*, Insights into the sandwich-like ultrathin Ni-doped MoS2/rGO hybrid as effective sulfur hosts with excellent adsorption and electrocatalysis effects for lithium-sulfur batteries, J. Energy Chem.. 2021, 60, 85-94.

[28] Yingying, Zhang, Canpei, Wang, Yutao Dong*, Ruipeng Wei, Jianmin Zhang, Understanding the high performance anode material of CoC2O4·2H2O microrods wrapped by reduced graphene oxide for lithium‐ion and sodium‐ion batteries, Chem. Eur. J. 2021, 27, 993-1001.

[29] Ruipeng Wei, Dong Yutao*, Yingying Zhang, Ran Zhang, Mohammed A. Al-Tahan, Jianmin Zhang*, In-situ self-assembled hollow urchins F-Co-MOF on rGO as advanced anodes for lithium-ion and sodium-ion batteries, J. Colloid Interface Sci. 2021, 582, 236-245.

[30] Mohammed A. Al-Tahan, Yutao Dong*, Ran Zhang, Yingying Zhang, Jianmin Zhang*, Understanding the high-performance Fe(OH)3@GO nanoarchitecture as effective sulfur hosts for the high capacity of lithium-sulfur batteries, Appl. Surf. Sci. 2021, 538, 148032.

[31] Canpei Wang, Yingying Zhang, Yongsheng Li, Yan Zhang, Yutao Dong*, Dan Li*, Jianmin Zhang*, Construction of uniform SnS2/ZnS heterostructure nanosheets embedded in graphene for advanced lithium-ion batteries, Journal of Alloys and Compounds 2020, 820, 153147.

[32] Yutao Dong, Yuhang Ma, Yongsheng Li, Meiting Niu, Jie Yang, Xuechao Song, Dan Li, Yushan Liu, Jianmin Zhang*, 3D architectures with Co2(OH)2CO3 nanowires wrapped by reduced graphene oxide as superior rate anode materials for Li-ion batteries, Nanoscale 2019, 11, 21180-21187.

[33] Yutao Dong, Yuhang Ma, Dan Li, Yushan Liu, Weihua Chen*, Xiangming Feng, Jianmin Zhang*, Construction of 3D Architectures with Ni(HCO3)2 Nanocubes Wrapped by Reduced Graphene Oxide for LIBs: Ultrahigh Capacity, Ultrafast Rate Capability and Ultralong Cycle Stability, Chem. Sci. 2018, 9, 8682-8691.

[34] Yutao Dong, Jialin Cai, Yongsheng Li, Yushan Liu*, Jie Ding, Dan Li, Jianmin Zhang*, A Coordination Strategy for TixSn1-xO2 Solid Solution Nanocubes Wrapped by rGO: the Good Candidate for Lithium-ion Battery Anode, ChemElectroChem 2018, 5, 3961-3967.

[35] Yutao Dong, Dan Li*, Chengwei Gao, Yushan Liu, Jianmin Zhang*, A self-assembled 3D urchin-like Ti0.8Sn0.2O2-rGO hybrid nanostructure as anode material for high-rate and long cycle life Li-ion batteries, J. Mater. Chem. A 2017, 5, 8087-8094.

专利

[1] 董玉涛,王春璟,王霁煜,赵静,王冰怡,刘艳艳,李鑫,任运来,谢黎霞 “一种二维结构双金属-植酸/还原氧化石墨烯复合材料制备方法及应用” 中国发明专利,2025.09.04申请号:2025112601869

[2] 董玉涛,王霁煜,靳紫倩,禹明浩,彭怀启,李鑫,樊良鑫,任运来,谢黎霞“一种双金属导电 CuCo-HHTP 配合物/石墨烯复合材料的制备方法及应用” 中国发明专利,2024.08.16申请号:2024111257342

[3] 董玉涛,靳紫倩,李鑫,马诗喻,彭怀启,王霄鹏,秦洁琼,刘立杰,樊良鑫,任运来,谢黎霞,郑先福 “一种电化学活性嗪炔碳材料的合成方法”中国发明专利,2025.08.29 授权专利号:ZL202311159572.X

[4] 董玉涛,李鑫,彭怀启,朱蒙蒙,张建“一种锰掺杂三硫化钽还原氧化石墨烯复合材料的制备方法及其应用” 中国发明专利,2023.09.29 授权专利号:ZL202210517611.8

[5] 董玉涛,张冉,姚虹,张建民 “一种镍掺杂二硫化钼/石墨烯三维复合材料的制备方法及应用” 中国发明专利,2022.03.29 授权专利号:ZL202010912772.8

[6] 张建民,李勇盛,董玉涛,李丹,张岩,韦瑞鹏 “一种氮磷共掺杂的多孔碳片/过渡金属磷化物复合材料的制备方法及应用”中国发明专利,2021.11.26授权专利号:ZL201811221982.2

[7] 李丹,苏行,董玉涛,马宇航,张建民“一种具有壳-核结构碳包裹多孔氧化亚钴纳米材料的制备方法及应用” 中国发明专利,2021.06.04授权专利号:ZL201711329542.3

[8] 张建民,王灿沛,董玉涛,李丹,刘玉山,陈卫华 “一种多级中空CoFeO材料、CoFeO/C复合材料的制备方法及应用” 中国发明专利,2020.5.19授权专利号:ZL201711346955.2

[9] 张建民,董玉涛,马宇航,刘冰玉,牛美婷,李丹,刘玉山,陈卫华 “石墨烯/碳酸氢镍纳米立方体三维复合材料的制备方法及储能应用” 中国发明专利,2019.11.29,授权专利号:ZL201710954065.3

[10] 张建民,董玉涛,刘玉山,李丹,陈卫华 “海胆状纳米TixSn1-xO2/石墨烯三维复合材料的制备方法及其在锂离子电池负极上的应用” 中国发明专利,2018.10.23授权专利号:ZL201610656248.2

[11] 柴凤兰,董玉涛,朱东方,郑河清,赵玉奇,赵开楼 等“异丙胺的合成方法. 中国发明专利” 2015.11.18 授权专利号:ZL201410226876.8

[12] 柴凤兰,李敬,董玉涛,赵玉奇,朱东方,刘新奇 “新型环氧化催化剂及制备方法和应用研究”中国发明专利,2015.05.13授权专利号:ZL201210126345.2

著作

[1] 林树坤,张敏,孙燕琼,郭鹏峰,牟莉,刘倩,叶旭,董玉涛(参编/7万字:第7章 电化学),魏玲,《物理化学》 ISBN 978-7-5772-0490-1,华中科技大学出版社,总字数525千字,2024.01

[2] 董玉涛(第一主编/9万字),李丹娜,安会勇,赵开楼,王会枝,张可擎,《无机化学》ISBN 978-7-307-13893-3 武汉大学出版社,总字数437千字,2014.07

[3] 何永福,王会,董玉涛(主编/7万字),董新燕,张坤,姜黎,王睿颖,《基础化学》ISBN 978-7-307-13714-1 武汉大学出版社,总字数551千字,2014.08

课题组:https://www.x-mol.com/groups/dong_yutao

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