研究员(自然科学) 硕士生导师
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张海东研究员,(巴渝学者特聘教授,三级教授)
招生专业:环境工程(学硕)、材料与化工(专硕)
E-mail:haidongzhang@ctbu.edu.cn; kohnzhang@163.com
Tel:+86-13638310516:
主要研究方向:环境催化;纳米功能材料;绿色化学;替代能源分子催化合成;精细化学品绿色催化合成;新型环境催化功能材料;精细化学品绿色催化合成。
ü 以空气为氧化剂的常温常压高效选择氧化催化反应体系;
ü 基于单原子(M0)-单氧化物(Ms+Ox)活性位的新型光催化选择氧化催化剂及催化体系
ü 多组分过渡金属氧化物中“氧化物对”活性位的界面工程和催化构效关系研究
ü 负载型金属催化剂中载体和金属活性中心的晶相、形貌、尺寸效应的协同作用机制
ü 晶相可调的p区-d区元素双组分氧化物Composite材料的制备化学及其催化功能化
ü 基于上述新型材料的低碳烃/低碳醇高效活化与高选择性氧化、电催化、丙烷氧化脱氢、CO2转化、VOCs催化燃烧、水污染物催化消除、油气污染物净化等
对研究生的总体培养目标:锻炼出凝练问题、制定工作计划、组织完成工作的全面能力;培养出面对挑战、持续上升的信心;相比本科毕业时具有更多、更高的选择可能性。
对研究生的期望:具备明确且实事求是的长期-短期目标;掌握脚踏实地且辩证唯物的方法论;有为实现目标付出努力、承受压力、不轻言放弃的勇气。
欢迎化学、化工、材料、生物、制药、环境等相关专业的同学报考!
研究背景:2005.09毕业于大连化学物理研究所催化基础国家重点实验室,师从李灿院士获得理学博士学位。2006.01-2007.01在荷兰王国Technology University of Eindhoven,Schuit Catalysis Institute的Rutger A. Van Santen教授指导下进行博士后研究。到重庆工商大学工作以来,已主持完成国家自然科学基金项目、科技部重点项目、重庆市科委自然科学基金、重庆市科委攻关项目、重庆市教委自然科学基金重点项目等科研项目30余项;在Journal of Catalysis、Journal of Colloid and Interface Science、Chemical Communications、Applied Surface Science、Chinese Journal of Catalysis、International Journal of Hydrogen Energy、Journal of Materials Chemistry A、Chemistry-A European Journal、Applied Catalysis A、Microporous and Mesoporous Materials、Chinese Chemical Letters、科学通报、物理化学学报、化工学报等国内外主流学术期刊上发表论文100多篇;应邀撰写研究综述4篇;获授权中国发明专利15项;获重庆市科学技术三等奖1项、全国商业科技进步一等奖1项,萧丽玉教育发展基金-优秀教师奖励基金奖1项。获得的2项研究成果曾被国家自然科学基金委收录进中国年度催化基础研究进展。担任重庆市科技局、上海市科技厅、四川省科技厅、山东省科技厅、湖南省科技厅、海南省科技厅、河北省科技厅、广西壮族自治区科技厅科技奖评审及科技项目评审专家。
主要研究方向近年代表论文:
(1) Engineering NiSe2/NiTe@Ni2.86Te2 heterostructure interfaces for enhancing energy-saving hydrogen production coupling with urea oxidation, Yang Xiang, Kun Xiong*, Lijuan Sun, Jianfeng Song, Min Deng, Jia Chen, Haidong Zhang*, Applied Surface Science, 2026,727, 166008.
(2) Engineering oxide speciation in CoMnOx catalysts for achieving an ideal selective oxidation of benzyl alcohol at room temperature with atmospheric pressure air, Yuting Song, Haidong Zhang*, Qi Yang, Jun Chen, Kun Xiong, Zhiquan Jiang, Qingqing Yang and Anran Tan, Journal of Colloid and Interface Science, 2025, 690, 137369.
(3) High-valence molybdenum doped Ni(OH)2 nanosheets enhancing hydrogen production and glycerol oxidation to formic acid, Min Deng, Wenwen Yang, Kun Xiong*, Haidong Zhang*, Jia Chen, Mingliang Yang, Xing Gan, International Journal of Hydrogen Energy, 2025, 137,1300-1307.
(4) Anchoring Ni nanoparticles on MoO2 nanorods for enhancing electrocatalytic oxidation of glycerol to formate, Yuan Gao, Zhiwei Li†, Min Deng, WenwenYang, Mingliang Yang, Xing Gan, Kun Xiong*, Haidong Zhang*, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2025, 715, 136661.
(5) Radical-driven selective oxidation of benzyl alcohol on MnCoOx catalysts with no oxidant other than air in reactor, Yuting Song, Haidong Zhang*, Qi Yang, Jun Chen, Kun Xiong*, Zhiquan Jiang*, Journal of Colloid and Interface Science, 2024, 664, 409-422.
(6) Nanoflowers Ni(OH)x/p-Ni with in-situ formation of high-valence nickel for boosting energy-saving hydrogen production from urea-assisted water splitting, ang Xiang, Linjian Yu, Kun Xiong*, Haidong Zhang*, Jia Chen, Xueqing Shi, Min Deng, Shiqian She, International Journal of Hydrogen Energy, 2024, 64, 360-367.
(7) Classic deep oxidation CuMnOx catalysts catalyzed selective oxidation of benzyl alcohol, Qi Yang, Yuantao Tang, Haidong Zhang*, Jun Chen, Zhiquan Jiang, Kun Xiong*, Jingjing Wang, Xinai Liu, Na Yang, Qiuyue Du and Yuting Song, Applied Surface Science, 2023, 610, 155364.
(8) Structural and Chemical Approaches to Enhance the Photoelectrocatalytic Performance of Carbon/g-C3N4 composite materials, Qiuyue Du, Haidong Zhang*, Zhiquan Jiang*, Kun Xiong*, Qi Yang, Na Yang, Yuting Song, Jia Chen, Chemical Communications, 2023, 59, 8476-8487. (inside front cover paper)
(9) An energy-efficient H2 production based on urea-aides water splitting enhanced by Ru induced in-situ speciation of NiO nanosheets on porous Ni, Hua Jin, Linjian Yu, Kun Xiong*, Jia Chen, Haidong Zhang*, Min Deng, Xueqing Shi, Journal of Alloys and Compounds, 2024, 983, 173938.
(10) TiO2-SiO2复合材料中TiO2物种、SiO2骨架的结构特性对其催化应用的影响,易冬梅,杜秋月,杨娜,张海东*,熊 昆*,杨淇,陈佳,王晶晶,材料科学与工艺,2023, 31(4), 60-69. (封面论文)
(11) On the CuO-Mn2O3 oxides pair in Cu-Mn dual components multi-oxide complexes: Structural and catalytic studies, Jingjing Wang, Lishan Peng, Jun Chen, Haidong Zhang*, Zhiquan Jiang*, Kun Xiong*, Qi Yang, Jia Chen and Na Yang, Applied Surface Science, 2022, 575, 151733.
(12) Cerium-incorporated Ni2P nanosheets for enhancing hydrogen production from overall water splitting and urea electrolysis, Kun Xiong*, Linjian Yu,Yang Xiang, Haidong Zhang*, Jia Chen, Yuan Gao, Journal of Alloys and Compounds, 2022, 912, 165234.
(13) Tuning of crystal phase of nickel telluride nanosheets to construct superior electrocatalyst for hydrogen evolution, Yang Xiang, Kun Xiong*, Linjian Yu, Haidong Zhang*, Jia Chen, Meirong Xia*, Journal of Alloys and Compounds, 2021,891,161955.
(14) Ordered porous Ni in-situ decorated by a thin-layer amorphous nickel-phosphorus via mild electrochemical-phosphorization for enhancing the hydrogen evolution performance, Kun Xiong*, Yuan Gao, Jia Chen, Yu Shen, Haidong Zhang*, Chemical Communications, 2020,56,611-614.