当前位置: X-MOL首页全球导师 国内导师 › 袁帅

个人简介

2013年本科毕业于山东大学。2018年博士毕业于美国德克萨斯农工大学(Texas A&M University)(导师:Hong-Cai Zhou教授)。2018年至2021年在美国麻省理工学院从事博士后研究(合作导师:Yang Shao-Horn院士和Yuriy Román教授)。2021年6月起加入南京大学化学化工学院。目前致力于配位化学、材料化学和催化学科前沿交叉领域,利用金属有机框架(metal-organic framework, MOF)为平台设计多元功能材料,应用于能源环境等方面。在国际重要SCI期刊上发表论文100余篇,其中以第一和通讯作者身份发表Nat. Commun. 3 篇、J. Am. Chem. Soc. 11 篇、Angew. Chem. Int. Ed. 8 篇、ACS Cent. Sci. 2 篇、Joule 1 篇、Matter 1 篇、Adv. Mater. 1 篇、Adv. Energy Mater. 1 篇等,论文被引用7000余次。课题组诚聘博士后和科研助理,欢迎报考博士及硕士研究生,有意者请来信咨询。

研究领域

1)课题组受到生物酶三维催化位点的启发,以结构有序的多元多孔材料(如金属-有机框架,MOF)为平台,设计三维协同催化位点,打破传统表面催化剂的固有限制; 2)将三维协同位点的概念推广到MOF-复合材料领域,实现在原子精度上精确设计多元复合材料; 3)设计原型器件,将材料应用于协同催化、能源转化等重要领域(下图)。

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Yuan, S.; Huang, L.; Huang, Z.; Sun, D.; Qin, J.-S.; Feng, L.; Li, J.; Zou, X.; Cagin, T.; Zhou, H.-C., Continuous variation of lattice dimensions and pore sizes in metal–organic frameworks. J. Am. Chem. Soc. 2020,142, 4732-4738. 2. Yuan, S.; Li, Y.; Peng, J.; Questell-Santiago, Y. M.; Akkiraju, K.; Giordano, L.; Zheng, D. J.; Bagi, S.; Román-Leshkov, Y.; Shao-Horn, Y., Conversion of methane into liquid fuels—bridging thermal catalysis with electrocatalysis. Adv. Energy Mater. 2020, 10, 2002154. 3. Li, J.; Yuan, S.*; Qin, J.-S.; Pang, J.; Zhang, P.; Zhang, Y.; Huang, Y.; Drake, H. F.; Liu, W. R.; Zhou, H.-C.*, Stepwise Assembly of turn-on fluorescence sensors in multicomponent metal–organic frameworks for in vitro cyanide detection. Angew. Chem. Int. Ed. 2020,59, 9319-9323. 4. Feng, L.; Yuan, S.*; Qin, J.-S.; Wang, Y.; Kirchon, A.; Qiu, D.; Cheng, L.; Madrahimov, S. T.; Zhou, H.-C.*, Lattice expansion and contraction in metal-organic frameworks by sequential linker reinstallation. Matter 2019. 1 , 156-167. 5. Yuan, S.; Zhang, P.; Zhang, L.; Garcia-Esparza, A. T.; Sokaras, D.; Qin, J.-S.; Feng, L.; Day, G. S.; Chen, W.; Drake, H. F.; Elumalai, P.; Madrahimov, S. T.; Sun, D.; Zhou, H.-C., Exposed equatorial positions of metal centers via sequential ligand elimination and installation in MOFs. J. Am. Chem. Soc. 2018, 140, 10814-10819. 6. Yuan, S.; Qin, J.-S.; Li, J.; Huang, L.; Feng, L.; Fang, Y.; Lollar, C.; Pang, J; Zhang, L.; Sun, D.; Alsalme, A.; Cagin, T.; Zhou, H.-C. Retrosynthesis of multi-component metal−organic frameworks, Nat. Commun.2018, 9, 808. 7. Pang, J.; Yuan, S.*; Qin, J.; Wu, M.; Lollar, C. T.; Li, J.; Huang, N.; Li, B.; Zhang, P.; Zhou, H.-C.*, Enhancing pore-environment complexity using a trapezoidal linker: toward stepwise assembly of multivariate quinary metal–organic frameworks. J. Am. Chem. Soc. 2018,140, 12328-12332. 8. Yuan, S.; Zou, L.; Qin, J.-S.; Li, J.; Huang, L.; Feng, L.; Wang, X.; Bosch, M.; Alsalme, A.; Cagin, T.; Zhou, H.-C. Construction of hierarchically porous metal−organic frameworks through linker labilization, Nat. Commun. 2017, 8, 15356. 9. Yuan, S.; Sun, X.; Pang, J; Lollar, C.; Qin, J.-S.; Perry, Z.; Joseph, E.; Wang, X.; Fang, Y.; Bosch, M.; Sun, D.; Liu, D.; Zhou, H.-C. PCN-250 under pressure: sequential phase transformation and the implications on MOF densification, Joule,2017, 1, 806-815. 10. Yuan, S.; Chen, Y.-P.; Qin, J.-S.; Lu, W.; Zou, L.; Zhang, Q.; Wang, X.; Sun, X.; Zhou, H.-C. Linker installation: engineering pore environment with precisely placed functionalities in zirconium MOFs, J. Am. Chem. Soc.2016, 138, 8912-8919.

推荐链接
down
wechat
bug