职称:教授 博士生导师 硕士生导师
电子邮箱:
入职时间:2019-05-27
所在单位:物理学院
学历:研究生(博士)毕业
办公地点:理科楼LE409
在职信息:在职
甘立勇,博士,教授,国家级青年人才,博士生导师
研究方向:主要从事表面与界面物理,能源材料设计与工况机制探索,深度结合理论模拟与原位实验探索能源材料工况下的基本物理机制,以发展高性能可再生能源体系
1. 光、电催化(HER,ORR,OER,NRR等)
2. 二维材料相关光、电、磁等基本性质及应用
3. 离子电池
电子邮件:ganly@cqu.edu.cn
地址:重庆大学虎溪校区物理学院LE409
欢迎感兴趣的本科生、研究生加入课题组!
教育背景
➢ 2007.09~2012.07 华南理工大学物理学院博士
➢ 2003.09~2007.07 重庆大学数理学院学士
工作经历
➢ 2019.05~今 重庆大学物理学院副研究员、教授
➢ 2017.07~2019.05 华南理工大学材料科学与工程学院副研究员
➢ 2016.03~2016.09 南方科技大学物理系访问学者
➢ 2014.09~2017.07 西南交通大学超导与新能源研究开发中心副教授
➢ 2012.07~2014.07 King Abdullah University of Science of Technology博士后
科研成果
至今以第一或通讯作者在Nat. Mater.(封面)、Adv. Mater.(3篇)、Acta Mater、 Energy Envrion. Sci.(背封面)、Adv. Funct. Mater.(4篇)、ACS Nano(2篇)、ACS Catal.(3篇)等重要国际学术期刊发表论文近100篇,其中ESI高被引论文6篇,被SCI他引8300多次,H因子49。主持国家自然科学基金面上2项、青年1项,重庆市自然科学基金等3项,重点实验室开发课题多项。主持重庆市教改、校级教改、校级教学建设项目各1项,重庆市高校一流本科课程1门(省部级);指导本科生参加全国大学生物理学术竞赛,共获省部级及以上奖励20多人次,多次获西南地区大学生物理学术竞赛优秀指导教师称号。
科研项目
Ø 国家自然科学基金面上项目(2025-2028)
Ø 重庆市基金面上项目(2024-2026)
Ø 重庆市留创计划项目(优秀)(2023)
Ø 东海实验室开放基金(2022-2024)
Ø 高性能陶瓷和超微结构国家重点实验室开放基金(2021-2023)
Ø 国家自然科学基金面上项目(2021-2024)
Ø 重庆市基金面上项目(2020-2023)
Ø 重庆大学人才启动基金(2019)
Ø 国家自然科学基金青年项目(2016-2018)
代表性科研论文(*通讯作者,#共同第一作者):
Please click https://publons.com/researcher/2654055/liyong-gan/ for details.
1. L. Xia#, B. F. Gomes#, W. Jiang#, D. Escalera-López, Y. Wang, Y. Hu, A. Y. Faid, K.Wang, T. Chen, K. Zhao, X. Zhang, Y. Zhou, R. Ram, B. Polesso, A. Guha, J. Su, C. M. S. Lobo, M. Haumann, R. Spatschek, S. Sunde, L. Gan, M. Huang, X. Zhou, C. Roth, W. Lehnert, S. CherevkoL. L.-Y. Gan*, F. Pelayo García de Arquer,* and M. Shviro*,“Operando-Informed Precatalyst Programming towards Reliable High Current Density Electrolysis”, Nat. Mater. 24, 753 (2025). 封面.
2. Y. Feng, S. Gong, Y. Wang, C. Ban, X. Qu, J. Ma, Y. Duan, C. Lin, D. Yu, L. Xia, X. Chen, X. Tao, L.-Y. Gan*, X. Zhou*, “Noble-Metal-Free Cocatalysts Reinforcing Hole Consumption for Photocatalytic Hydrogen Evolution with Ultrahigh Apparent Quantum Efficiency”, Adv. Mater. 37, 2412965 (2025).
3. Y. Duan, Y. Wang, W. Zhang, C. Ban, Y. Feng, X. Tao, A. Li, K. Wang, X. Zhang, X. Han, W. Fan, B. Zhang, H. Zou, L.-Y. Gan*, G. Han*, X. Zhou*, “Large-Scale Synthesis of High-Loading Single Metallic Atom Catalysts by a Metal Coordination Route”, Adv. Mater. 36, 2404900 (2024).
4. C. Ban, Y. Wang, Y. Feng, Z. Zhu, Y. Duan, J. Ma, X. Zhang, X. Liu, K. Zhou, H. Zou, D. Yu, X. Tao, L.-Y. Gan*, G. Han*, X. Zhou*, “Photochromic Single Atom Ag/TiO2 Catalysts for Selective CO2 Eeduction to CH4”, Energy Environ. Sci. 17, 518 (2024). 背封面.
5. Q. Song, Z. Zhu, B. Lei, S. Jing, Y. Xiang, D. Sun, J. Fan, G. Huang, J. Wang, X. Tao*, L.-Y. Gan*, X. Zhou*, F. Pan, “High-Throughput Design of Mg-Based Alloy Anodes for Magnesium-Ion Batteries”, Acta Mater. 305, 121824 (2026).
6. J. Zhong, Z. Liang, N. Liu, Y. Xiang, B. Yan, F. Zhu, X. Xie, X. Gui, L.-Y. Gan*, H. B. Yang*, D. Yu, Z. Zeng*, G. Yang, “Engineering Symmetry-Breaking Centers and d-Orbital Modulation in Triatomic Catalysts for Zinc-Air Batteries”, ACS Nano 18, 5258 (2024).
7. J. Ding, J. Wu, W. Hu, Y. Wang, Y. Duan, L. Xia, D. Yu, X. Tao, . L.-Y. Gan*, X. Zhou*, “Non-Metallic Element Modification: A Promising Strategy Toward Efficient Electrocatalytic CO2 Reduction”, Adv. Funct. Mater. 35, 2423433 (2025).
8. X. Liu, S. Jing, K. Wang, C. Ban, J. Ding, Y. Feng, Y. Duan, J. Ma, D. Yu, X. Han, C. Wang,* L.-Y. Gan*, X. Zhou*, “Double Bonuses Achieved in Single-Atom Catalysts for Efficient Oxygen Evolution: Enhanced Reaction Kinetics and Reinforced Electrochemical Reconstruction”, Adv. Funct. Mater. 34, 2309824 (2023).
9. J. Ma, X. Xiong, D. Wu, Y. Wang, C. Ban, Y. Feng, J. Meng, X. Gao, J.-Y. Dai, G. Han*, L.-Y. Gan*, X. Zhou*, “Band Position-Independent Piezo-Electrocatalysis for Ultrahigh CO2 Conversion”, Adv. Mater. 35, 2300027 (2023).
10. Y. Duan, Y. Wang, W. Zhang, J. Zhang, C. Ban, D. Yu, K. Zhou, J. Tang, X. Zhang, X. Han, L.-Y. Gan*, X. Tao*, X. Zhou*, “Simultaneous CO2 and H2O Activation via Integrated Cu Single Atom and N Vacancy Dual-Site for Enhanced CO Photo-Production”, Adv. Funct. Mater. 33, 2301729 (2023).
11. J. Ma, L. Xia, D. Wu, Y. Feng, C. Ban., L. Ruan, J. Guan, M. Zhang, R. Zhou, J.-Y. Dai, L.-Y. Gan*, X. Zhou*, “High-Efficiency CO2 Conversion via Mechano-Driven Dynamic Strain Engineering of ZnO Nanostructures”, Nano Energy 121, 109258 (2024).
12. J. Ma, D. Wu, Y. Feng, C. Ban, L. Xia, L. Ruan, J. Guan, Y. Wang, J. Meng, J.-Y. Dai*, L.-Y. Gan*, X. Zhou*, “Physical Mixing of Piezo-Electrocatalysts and Graphene Oxide to Promote CO2 Conversion”, Nano Energy 115, 108719 (2023).
13. X. Zhang, J.-Y. Zheng, Y.-C. Xiang, D.Wu, J. Fan, Y.-Y. Sun, L.-J. Chen*, L.-Y. Gan*, X. Zhou*, “Ohmic Contacts in MXene/MoSi2N4 Heterojunctions”, Appl. Phys. Lett. 123, 023505 (2023).
14. J. Ma, L. Xia, L. Ruan, J. Guan, L. Wang, X. Zhang, X. Gao, L.-Y. Gan*, X. Zhou*, “Sacrificial Agent Effect in Piezo-Electrocatalytic Hydrogen Evolution”, Appl. Phys. Lett. 122, 203902 (2023).
15. Y. Wang, K. Wang, J. Meng, C. Ban, Y. Duan, Y. Feng, S. Jing, J. Ma, D. Yu, J. Ding, L.-Y. Gan*, X. Zhou*, “Constructing Atomic Surface Concaves on Bi5O7Br Nanotube for Efficient Photocatalytic CO2 Reduction”, Nano Energy 109, 108305 (2023).
16. Y. Wang, C. Ban, J. Meng, J. Ma, H. Zou, Y. Feng, J. Ding, Y. Duan, L.-Y. Gan*, X. Zhou*, “Charge Localization Induced by Fe Doping in Porous Bi5O7I Micro-flower for Enhanced Photoreduction of CO2 to CO”, Sep. Purif. Technol. 312, 123379 (2023).
17. M. Duan, T. Shu, J. Li, D. Zhang, L.-Y. Gan*, K. X. Yao* and Q. Yuan*, “Boosting alkaline hydrogen evolution performance by constructing ultrasmall Ru clusters/Na+, K+-decorated porous carbon composites”, Nano Res. 16, 8836-8844 (2023).
18. J. Ding, S. Jing, C. Yin, C. Ban, K. Wang, X. Liu, Y. Duan, Y. Zhang, G. Han, L.-Y. Gan*, J. Rao*, “A new insight into the promoting effects of transition metal phosphides in methanol electrooxidation”, Chinese Chem. Lett. 34, 107899 (2023).
19. Y. Feng, Y. Wang, K. Wang, C. Ban, Y. Duan, J. Meng, X. Liu, J. Ma, J. Dai, D. Yu, C. Wang*, L.-Y. Gan*, X. Zhou*, “Constructing Cu1-Ti dual sites for highly efficient photocatalytic hydrogen evolution”, Nano Energy 103, 107853 (2022).
20. Y. Wang, J. Meng, S. Jing, K. Wang, C. Ban, Y. Feng, Y. Duan, J. Ma, L.-Y. Gan*, and X. Zhou*, “Origin of Bismuth-rich strategy in Bismuth oxyhalide photocatalysts”, Energy Environ. Mater. 6, e12432 (2023).
21. X. Liu, S. Jing, C. Ban, K. Wang, Y. Feng, C. Wang, J. Ding, B. Zhang, K. Zhou , L.-Y. Gan*, X. Zhou*, “Dynamic active sites in NiFe oxyhydroxide upon Au nanoparticles decoration for highly efficient electrochemical water oxidation”, Nano Energy 92, 107328 (2022).
22. C. Ban, Y. Duan, J. Ma, Y. Wang, J. Meng, Y. Feng, X. Liu, K. Wang, C. Wang, L.-Y. Gan*, X. Zhou*, “Isotype heterojunction-boosted CO2 photoreduction”, Nano-Micro Lett. 14, 74 (2022).
23. J. Meng, Y. Duan, S. Jing, J. Ma, K. Wang, K. Zhou, C. Ban, Y. Wang, B. Hu, D. Yu*, L.-Y. Gan*, X. Zhou*, “Facet junction of BiOBr nanosheets boosting spatial charge separation for CO2 photoreduction”, Nano Energy 92, 106671 (2022).
24. Z. Zeng., L.-Y. Gan, H. B. Yang*, X. Su, J. Gao, W. Liu, H. Matsumoto, J. Gong, J. Zhang, W. Cai, Z. Zhang, Y. Yan, B. Liu*, P. Chen*, “Orbital coupling of hetero-diatomic nickel-iron site for bifunctional electrocatalysis of CO2 reduction and oxygen evolution”, Nat. Commun. 12, 4088 (2021).
25. S. Tong, B. Fu, L.-Y. Gan* and Z. Zhang*, “Single atom catalysts for boosting electrocatalytic and photoelectrocatalytic performances”, J. Mater. Chem. A 9, 10731 (2021).
26. L. Li, L.-Y. Gan,* and Z. Zhang*, “Encapsulation Strategy on All Inorganic Perovskites for Stable and Efficient Photoelectrocatalytic Water Splitting”, Adv. Mater. Interfaces 8, 2100202 (2021).
27. H. Zou, X. Liu, K. Wang, Y. Duan, C. Wang, B. Zhang, K. Zhou, D. Yu, L.-Y. Gan* and X. Zhou*, “Constructing highly active Co sites in Prussian blue analogues for boosting electrocatalytic water oxidation”, Chem. Commun. 57, 8011 (2021).
28. D.-X. Zhang, H. Yin, H.-F. Zhong, L.-Y. Gan*, and P. Wang*, “Linear Scaling Relations for N2H4 Decomposition over Transition Metal Catalysts”, Int. J. Hydrogen. Energ. 45, 16114 (2020).
29. H. Yin, L.-Y. Gan*, and P. Wang*, “The Identification of Optimal Active Boron Sites for N2 Reduction”, J. Mater. Chem. A 8, 3910 (2020).
30. B. Fu, W. Wu, L.-Y. Gan*, and Z. Zhang*, “Bulk/Surface Defects Engineered TiO2 Nanotube Photonic Crystals Coupled with Plasmonic Gold Nanoparticles for Effective in Vivo Near-Infrared Light Photoelectrochemical Detection”, Anal. Chem. 91, 14611 (2019).
31. H.-F. Zhong, H. Yin, D.-X. Zhang, L.-Y. Gan*, and P. Wang*, “Intrinsically Synergistic Active Centers Coupled with Surface Metal Doping to Facilitate Alkaline Hydrogen Evolution Reaction”, J. Phys. Chem. C 123, 24220 (2019).
32. M. Zhuang, G. L. Xu#, L.-Y. Gan#, Y. Dou, C.-J. Sun, X. Ou,Y. Xie, Z. Liu, Y. Cai, Y. Ding, I. H. Abidi, A. Tyagi, K. Amine*, Z. Luo*, “Sub-5 nm Edge-Rich 1T-ReSe2 as Bifunctional Materials for Hydrogen Evolution and Sodium-Ion Storage”, Nano Energy 58, 660 (2019).
33. H. Yin, S-L. Li, L.-Y. Gan*, and P. Wang*, “Pt-Embedded in Monolayer g-C3N4 as a Promising Single-Atom Electrocatalyst for Ammonia Synthesis”, J. Mater. Chem. A 7, 11908 (2019).
34. Y.-T. Du, X. Kan*, F. Yang, L.-Y. Gan*, U. Schwingenschlögl, “MXene/Graphene Heterostructures as High-Performance Electrodes for Li-Ion Batteries”, ACS Appl. Mater. Interfaces 10, 32867 (2018).
35. Z.-J. Chen, G.-X. Cao, L.-Y. Gan*, H. Dai, N. Xu, M.-J. Zang, H.-B. Dai, H. Wu, and P. Wang*, “Highly Dispersed Platinum on Honeycomb-Like NiO@Ni Film as a Synergistic Electrocatalyst for Hydrogen Evolution Reaction”, ACS Catal. 8, 8866 (2018).
36. Y. Ding, I. H. Abidi, R. Wu, M. Zhuang, L.-Y. Gan*, and Z. Luo*, “Stacking-Modes-Induced Chemical Reactivity Differences on CVD Trilayer Graphene”, ACS Appl. Mater. Interfaces 10, 23424 (2018).
37. M. Zang, N. Xu, G. Cao, Z. Chen, J. Cui, L.-Y. Gan*, H. Dai, X. Yang, and P. Wang*, “Cobalt Molybdenum Oxide Derived High-Performance Electrocatalyst for the Hydrogen Evolution Reaction”, ACS Catal. 8, 5062 (2018).
38. H. Yin, Y.-P. Qiu, H. Dai, L.-Y. Gan*, H.-B. Dai, and P. Wang*, “Understanding of Selective H2 Generation from Hydrazine Decomposition on Ni(111) Surface”, J. Phys. Chem. C 122, 5443 (2018).
39. M. Zhuang, L.-Y. Gan*, M. Zou, Y. Dou, X. Ou, Z. Liu, Y. Ding, I. H. Abidi, A. Tyagi, M. Jalali, J. You, A. Cao, and Z. Lu*, “Engineered Sub-100 nm Mo(1-x)WxSe2 Crystals for Efficient Hydrogen Evolution Catalysis”, J. Mater. Chem. A 6, 2900 (2018).
40. J.-H. Liu, X. Kan*, B. Amin*, L.-Y. Gan*, and Yong Zhao, “Theoretical Exploring Potential Applications of Sc-Based MXenes”, Phys. Chem. Chem. Phys. 19, 32253 (2017) Selected in 2017 HOT articles.
41. S.-L. Li, H. Yin, X. Kan*, L.-Y. Gan*, U. Schwingenschlögl* and Yong Zhao, “Potential of Transition Metal Atoms Embedded in Buckled Monolayer g-C3N4 as Single-Atom Catalysts”, Phys. Chem. Chem. Phys. 19, 30069 (2017).
42. Y. Xin, X. Kan, L.-Y. Gan*, and Z. Zhang*, “Heterogeneous Bimetallic Phosphide/Sulfide Nanocomposite for Efficient Solar-Energy-Driven Overall Water Splitting”, ACS Nano 11,10303 (2017).
[1]表面与界面物理