张 磊 教授

一、基本信息
张磊,男,中共党员,博士, 教授,博士生导师,2013年毕业于中科院大连化物所/大连理工大学获博士学位。《中国稀土学报》《低碳化学与化工》青年编委,《燃料化学学报》学术编辑,International Journal of Hydrogen Energy,燃料化学学报等期刊特约审稿人。辽宁省“百千万人才工程”入选者。获辽宁省自然学术成果奖两项、辽宁省研究生教学成果奖特等奖一项。主持和参与国家级、省部级等项目10余项,发表论文100余篇,授权专利3项。所发表的论文获“2019年中国百篇最具影响国内学术论文”。带领的团队在国内率先提出了“缓释催化”新概念,在甲醇、天然气等制氢催化新材料开发和系统集成技术研发方面处于国内领先地位并处于国际前沿。近年来课题组重点围绕“缓释催化”体系和可移动式供氢系统进行重大技术攻关和前沿技术探索,取得了多项具有自主知识产权的创新成果。
二、承担课程
《催化原理》、《化工设计》、《能源化学工程》
三、研究方向
催化新材料及催化反应过程、C1化学、氢能及氢能安全。
四、主要成果
(一)研究项目
1. 大庆中蓝石化有限公司提高壬烯固体磷酸催化剂性能科技合作项目编制性能报告,2023,20230726-3,主持。
2. 缓释催化材料中试放大技术研究,2023, 36100000-22-ZC0607-0044,主持。
3. 可控制备高性能CuZnFeAl缓释催化材料及其催化甲醇制氢缓释过程研究,2023,2023JH2/101300224,主持。
4. 基于空间限域内可控制备高稳定性Cu/MxCeyO2-CeO2催化剂及其催化CO优先氧化反应性能研究,2023,LJKMZ20220728,主持。
5. 稀土Ce掺杂水滑石镶嵌纳米Cu催化剂的制备及其催化甲醇重整制氢性能的研究,2019,L2019038,主持。
6. 基于空间限域内可控制备高稳定性Cu/MAlxOy-Al2O3催化剂及其催化甲醇重整制氢性能研究,2019,2019-MS-221,主持。
(二)代表性论文论著(仅限一作或通讯)
1. Characteristics of the methanol steam reforming catalyzed by Ru/CeO2[J]. Molecular Catalysis,2026,593:115789.(SCI、学生一作,本人通讯)
2. Loading effects of CuO−CeO2−y for CO oxidation: A combined experimental and theoretical study[J]. The Journal of Physical Chemistry C, 2025,129:19358.(SCI、学生一作,本人通讯)
3. Evidence for the dynamic change of surface structure of Cu-Al spinel: a DFT study[J]. Applied Surface Science, 2025,718:164877.(SCI、学生一作,本人通讯)
4. Boosting CO Oxidation Activity of Ru/CeO2 via Ball Milling Activation[J]. The Journal of Physical Chemistry C, 2024,128:10848. (SCI、学生一作,本人通讯)
5. Feasibility analysis of water gas shift reaction for the removal of trace CO in hydrogen[J]. International Journal of Hydrogen Energy, 2024, 52:1155.(SCI、学生一作,本人通讯)
6. Synergistic metal-support interaction promoting the formation of oxygen vacancies and their role in CO-PROX over CuO/NiO-CeO2 catalyst[J]. Journal of Environmental Chemical Engineering, 2024, 12: 111818.(SCI、学生一作,本人通讯)
7. Formation of superoxide and ozone-like species on Cu doped CeO2 (111) and their CO oxidation reactivity: a DFT study[J]. Physical Chemistry Chemical Physics, 2023, 25(47): 32557.(SCI、学生一作,本人通讯)
8. Mn-induced Cu/Ce catalysts with improved performance for CO preferential oxidation in H2/CO2-rich streams[J]. International Journal of Hydrogen Energy, 2023, 48: 20667.(SCI、学生一作,本人通讯)
9. Nix/CuZnAl catalysts effectively improve the performance of hydrogen evolution from methylcyclohexane dehydrogenation[J]. Journal of the Taiwan Institute of Chemical Engineers, 2023, 144: 104719.(SCI、学生一作,本人通讯)
10. Preparation of Cu0.1-xNixCe0.9O2-y catalyst by ball milling and its CO catalytic oxidation performance[J]. International Journal of Hydrogen Energy, 2023, 48: 12385.(SCI、学生一作,本人通讯)
11. Low temperature synthesis of Cu1−xAl2.5 spinel solid solution as sustained release catalyst for methanol to hydrogen[J].International Journal of Hydrogen Energy, 2022,47: 32133-32144.(SCI、学生一作,本人通讯)
12. Performance of Cu-Ce/M-Al (M=Mg, Ni, Co, Zn) hydrotalcite derived catalysts for hydrogen production from methanol steam reforming[J]. International Journal of Energy Research, 2021, 45: 12773.(SCI、学生一作,本人通讯)
13. CuO/CeO2-ZrO2/SiC整体催化剂催化甲醇水蒸气重整制氢的研究[J]. 化学学报, 2021,79: 513.(SCI、学生一作,本人通讯)
14. 钙钛矿型甲醇水蒸气重整制氢催化材料的研究[J]. 化学学报, 2021, 79: 100.(SCI、学生一作,本人通讯)
15. Rh-catalyzed asymmetric hydrogenation of α-aryl-β-alkylvinyl esters with chiral ferrocenylphosphine-phosphorami-dite ligand[J]. Tetrahedron Letters, 2021, 65: 152763.(SCI、学生一作,本人通讯)
16. Copper-catalyzed formal propargylic [3+2] cycloaddition for stereoselective construction of (E)-β-pyrazolylacrylates[J]. Tetrahedron Letters, 2020, 61: 151409.(SCI、学生一作,本人通讯)
17. Morphology effect of ceria on the performance of CuO/CeO2 catalysts for hydrogen production by methanol steam reforming. International Journal of Hydrogen Energy, 2019, 44: 7252.(SCI、学生一作,本人通讯)
18. Cu supported on ZnAl-LDHs precursor prepared by in-situ synthesis method on γ-Al2O3 as catalytic material with high catalytic activity for methanol steam reforming. International Journal of Hydrogen Energy, 2017, 42:9930. (SCI、学生一作,本人通讯)
(三)专利
1.一种钌基氧化物催化剂及制备方法和用途. ZL2021 1 1428825.X
2.微型重整装置以及微型重整系统. ZL2019 2 1763770.6
3.用于甲醇水蒸气重整催化重整制氢的催化剂、制备方法及应用. ZL2016 1 0351258.5
(四)获奖情况
1. 2018年,辽宁省自然学术成果奖三等奖,省部级奖励,排名第一。
五、联系方式
TEL:18241301477;Email:lnpuzhanglei@163.com
