鲁继青

基本信息Personal Information

研究员 博士生导师 硕士生导师

性别 : 男

毕业院校 : 中科院大连化学物理研究所

学历 : 博士研究生毕业

学位 : 博士学位

在职信息 : 在岗

所在单位 : 化学与材料科学学院

入职时间 : 2006年08月31日

学科 : 化学

联系方式 : 86-579-82291426

Email :

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个人简介Personal Profile

教育经历

1991-1995 华东理工大学,本科;

1995-1998 大连理工大学,硕士;

1998-2002 中科院大连化学物理研究所催化基础国家重点实验室,博士;


研究经历

2002-2006 日本产业综合技术研究所,博士后;

2006-至今 浙江师范大学化学与材料科学学院,研究员。


联系方式

email: jiqinglu@zjnu.cn


研究方向

1. 挥发性有机物(VOCs)催化燃烧反应中高效催化剂的合成、表征与反应机理研究;

2. 选择性加氢反应催化剂的合成、表征与反应机理研究;


个人简介

    本人长期从事环境催化领域研究,致力于催化新材料的设计合成、原位表征等方面工作。过去工作中针对CO氧化、短链烷烃催化氧化、含氯VOCs催化氧化等反应开展系统性工作。

    本人曾获浙江省中青年学术带头人称号,为浙江师范大学特聘双龙学者。曾主持国家级、省部级科研项目10余项。发表SCI科研论文200余篇,H因子=42。

    实验室具备良好的科研条件、严肃活泼的研究生培养方式,欢迎报考。


近五年科研论文

1. Catalytic oxidation of dichloromethane over CrFeO mixed oxides: Improved activity and stability by sulfuric acid treatment, Applied Catalysis A, General 636 (2022) 118573

2. Catalytic oxidation of dichloromethane over phosphate-modified Co3O4: Improved performance and control of byproduct selectivity by Co3O4 defects and surface acidity, Applied Surface Science 606 (2022) 154924

3. Highly active and water tolerant Pt/MFe2O4 (M = Co and Ni) catalysts for low temperature CO oxidation, Applied Catalysis A, General 619 (2021) 118142

4. The roles of metal-promoter interface on liquid phase selective hydrogenation of crotonaldehyde over Ir-MoOx/BN catalysts, Applied Catalysis A, General 623 (2021) 118269

5. Crystal-plane effects of anatase TiO2 on the selective hydrogenation of crotonaldehyde over Ir/TiO2 catalysts, Journal of Catalysis 395 (2021) 10–22

6. The effects of TiO2 crystal-plane-dependent Ir-TiOx interactions on the selective hydrogenation of crotonaldehyde over Ir/TiO2 catalysts, Chinese Journal of Catalysis 42 (2021) 1742-1754

7. Insights into propane combustion over MoO3 promoted Pt/ZrO2 catalysts: The generation of Pt-MoO3 interface and its promotional role on catalytic activity, Journal of Catalysis 391 (2020) 80-90

8. Metal-Free Ceria Catalysis for Selective Hydrogenation of Crotonaldehyde, ACS Catalysis 10 (2020) 14560−14566

9. The effects of MoOx decoration on the selective hydrogenation of crotonaldehyde over MoOx-promoted Ir/TUD-1 catalysts, Journal of Catalysis 381 (2020) 222–233

10. CO oxidation over Pt/Cr1.3Fe0.7O3 catalysts: Enhanced activity on single Pt atom by H2O promotion, Journal of Catalysis 382 (2020) 192–203

11. Co–Cr–O mixed oxides for low–temperature total oxidation of propane: Structural effects, kinetics, and spectroscopic investigation, Chinese Journal of Catalysis 41 (2020) 442–453

12. Total oxidation of propane over Pt-V/SiO2 catalysts: Remarkable enhancement of activity by vanadium promotion, Applied Catalysis A, General 590 (2020) 117337

13. Deep oxidation of propane over WO3-promoted Pt/BN catalysts: The critical role of Pt-WO3 interface, Applied Catalysis B: Environmental 272 (2020) 118858

14. CO oxidation over supported Pt/CrxFe2-xO3 catalysts and their good tolerance to CO2 and H2O, Applied Catalysis B: Environmental 245 (2019) 314–324

15. Kinetic study of selective hydrogenation of crotonaldehyde over Fe-promoted Ir/BN catalysts, Applied Surface Science 463 (2019) 463–473

16. Highly Active Pt/BN Catalysts for Propane Combustion: The Roles of Support and Reactant-Induced Evolution of Active Sites, ACS Catalysis 9 (2019) 1472−1481

17. Synergistic roles of Pt0 and Pt2+ species in propane combustion over highperformance Pt/AlF3 catalysts, Applied Surface Science 475 (2019) 524–531

18. Effect of Fe promotion on the performance of V2O5/MgF2 catalysts for gasphase dehydrofluorination of 1,1,1,3,3-pentafluoropropane, Applied Surface Science 490 (2019) 365–371

19. Dehydrochlorination of 1, 1, 2-trichloroethane over SiO2-supported alkali and transition metal catalysts: Tunable selectivity controlled by the acid base properties of the catalysts, Applied Catalysis B: Environmental 236 (2018) 368–376

20. High performance V2O5/MgF2 catalysts for gas-phase dehydrofluorination of 1,1,1,3,3-pentafluoropropane: Support-induced evolution of new active sites, Journal of Catalysis 364 (2018) 271–281







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