性别 男
职称 研究员三级
电子邮件 lisg@sari.ac.cn
通讯地址 上海市浦东新区海科路100号9A楼
个人网页
招生专业
简历
李圣刚,中国科学院上海高等研究院研究员,上海科技大学特聘教授,博士生导师。1999年本科毕业于山东大学,2004年博士毕业于美国肯塔基大学,其后在美国阿拉巴马大学工作,2011年加入中国科学院上海高等研究院,先后获得中科院、科技部、基金委、上海市科委、跨国企业等项目支持,在Nat. Chem.,Nat. Commun.,Sci. Adv.,Chem,J. Am. Chem. Soc.,Angew. Chem. Int. Ed.等高影响力期刊发表论文近190余篇。近年来主要从事理论和计算催化、催化剂计算机辅助设计和催化剂信息学等方面的研究。
研究方向
1. 理论与计算催化
2. 催化剂计算机辅助设计
3. 催化剂信息学
获奖及荣誉
中国科学院引才计划
承担科研项目情况
1. 壳牌公司项目,项目共同负责人,2024.08 – 2026.06
2. 国家自然科学基金委重大项目,“孔材料催化的过程耦合与机制,课题三: 复杂催化体系扩散-反应网络耦合调控机制”,项目骨干,2023.01-2027.12
3. 上海市科委杨帆计划项目,“二氧化碳加氢用氧化铟基单原子催化剂的协同效应及理性设计”,项目骨干,2023.04-2026.03
4. 国家自然科学基金面上项目, “二氧化碳加氢氧化物催化剂的微观反应动力学模拟与计算机辅助设计”,项目负责人,2022.01 – 2025.12
5. 壳牌公司项目,项目共同负责人,2020.09 – 2022.08
6. 科技部重点研发计划项目,“合成气高效合成醇类化学品关键技术:课题一:合成气制备醇类化学品催化剂的构效关系及反应机理研究”,课题负责人,2018.05—2021.04
7. 科技部重点研发计划项目,“资源小分子高效转化的纳米催化关键技术及工业示范:课题二:CH4/CO2 重整制合成气的关键纳米催化技术及工业示范”,课题骨干,2016.06—2021.05
8. 国家自然科学基金委面上项目,“GPU加速密度泛函计算研究甲烷氧化偶联反应催化循环机制”,项目负责人,2015.01—2018.12
9. 壳牌石油公司项目,项目负责人,2013.07—2015.06
10. 中国科学院引才计划A类,中国科学院计划,负责人,2012-01–2014-12
代表论著
1. 文章:
[1] Haiyan Yang,+ Zhangqian Wei,+ Jian Zhang,Yaru Dang,Shenggang Li,* Xianni Bu,Zixuan Zhou,Chenfan Gong,Hao Wang,Jiong Li,Yang Liu,Yong Yang,Tianci Xiao,Chengyuan Liu,Yuhan Sun,Peng Gao,* Tuning the selectivity of CO2 hydrogenation to alcohols by crystal structure engineering. Chem 2024,10,2245
[2] Hailing Yu,+ Caiqi Wang,+ Xin Xin,+ Yao Wei,Shenggang Li,* Yunlei An,Fanfei Sun,Tiejun Lin,* Liangshu Zhong,* Engineering ZrO2–Ru interface to boost Fischer-Tropsch synthesis to olefins. Nat. Commun. 2024,15,5143
[3] Guanghui Feng, + Shibin Wang, + Shenggang Li,‡ Wei Chen,* Ruipeng Ge, Xuefei Feng,Junwei Zhang,Yanfang Song,Jiazhou Zhang,Gaofeng Zeng,Qiang Zhang,Guijun Ma,Yi-De Chuang,Xixiang Zhang,Wei Wei,* Jinghua Guo,Yuhan Sun,* “Solar driven conversion of carbon dioxide to alcohols,” Angew. Chem. Int. Ed. 2023,62,e202218664.
[4] Xinqing Chen,* + Minghuang Qiu, + Shenggang Li, + Chengguang Yang,Lei Shi,Shiju Zhou,Gan Yu,Lixia Ge,Xing Yu,Ziyu Liu,Nannan Sun,Kun Zhang,Hui Wang,Mouhua Wang,* Liangshu Zhong,Yuhan Sun,* “Gamma-ray irradiation to accelerate crystallization of mesoporous zeolites,” Angew. Chem. Int. Ed. 2020,59,11325 –11329.
[5] Shanshan Dang, + Bin Qin, + Yong Yang,Hui Wang,Jun Cai,Yong Han,Shenggang Li,* Peng Gao,* Yuhan Sun,* “Rationally designed indium oxide catalysts for CO2 hydrogenation to methanol with high activity and selectivity,” Sci. Adv. 2020,6,eaaz2060.
[6] Zixuan Zhou, + Yuchen Wang, + Yuanjie Bao,Haiyan Yang,Jiong Li,Chunran Chang,Shenggang Li,* Peng Gao.* Nickel-modified In2O3 with inherent oxygen vacancies for CO2 hydrogenation to methanol. Sci. China Chem. 2024,67,1715
[7] Lei Zhang, + Yaru Dang, + Xiaohong Zhou,† Peng Gao,* Alexander Petrus van Bavel,Hao Wang,Shenggang Li,* Lei Shi,Yong Yang,Evgeny I Vovk,Yihao Gao,Yuhan Sun,* “Direct conversion of CO2 into a jet fuel over CoFe alloy catalysts,” Innovation 2021,2,100170–11329.
[8] Siyu Lu, Haiyan Yang,Zixuan Zhou,Liangshu Zhong, Shenggang Li,* Peng Gao,* Yuhan Sun.* Effect of In2O3 particle size on CO2 hydrogenation to lower olefins over bifunctional catalysts. Chin. J. Catal. 2021,42,2038-2048
[9] Xiaohong Zhou,Yaoqi Pang,Zebang Liu,Evgeny I Vovk,Alexander Petrus van Bavel,Shenggang Li,* Yong Yang.* Active oxygen center in oxidative coupling of methane on La2O3 catalyst. J. Energy Chem. 2021,60,649-659
[10] Gai Miao, + Lei Shi, + Zhimin Zhou, + Lijun Zhu,Yanfei Zhang,Xinpeng Zhao,Hu Luo,Shenggang Li,* Lingzhao Kong,* Yuhan Sun,* “Catalyst design for selective hydrodeoxygenation of glycerol to 1,3-propanediol,” ACS Catal. 2020,10,15217-15226.
2. 论著章节:
[1] Liang Zhu,Evgeny I. Vovk,Yong Yang, Shenggang Li,* David A. Dixon,Perspective on understanding and developing catalysts for oxidative coupling of methane. Annu. Rep. Comput. Chem. 2023,19,45-63.
[2] Shenggang Li,* Yuchen Wang,Bin Qin,Zhimin Zhou,Shiju Zhou,Kun Li,Zhangqian Wei,“Mechanistic studies toward the rational design of oxide catalysts for carbon dioxide hydrogenation,” Annu. Rev. Comp. Chem,2021, 17,211-270.
[3] Shenggang Li,* David A. Dixon,* “Mechanism of oxide catalyzed selective Oxidation: A computational perspective,” Annu. Rev. Comp. Chem,2019,15,287-333.