北京师范大学化学学院
     
 

发布时间: 2021-02-28  浏览次数:

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李晨阳                


                     

教授,理学博士(美国佐治亚大学),博士后(美国埃默里大学)                


通信地址:北京市新街口外大街19号, 北京师范大学化学学院                


课题组主页:www.lcygroup.org                


               


               


教育和工作经历

2021-至今:北京师范大学化学学院

2015-2020:美国埃默里大学,博士后(导师:Francesco A. Evangelista教授)

2012-2015:美国佐治亚大学,理学博士(导师:Henry F. Schaefer教授)

2008-2012:南京大学,理学学士


研究兴趣

高精度电子结构方法的开发与应用(多参考态方法,程序开发)


招生信息

欢迎对理论与计算化学、计算机编程感兴趣的同学加入,详见课题组主页。


代表性论文

1. S. Wang*, C. Li*, and F. A. Evangelista*, Analytic energy gradients for the driven similarity renormalization group multireference second-order perturbation theory. J. Chem. Theory Comput. accepted (10.1021/acs.jctc.1c00980).

2. C. Li* and F. A. Evangelista, Spin-free implementation of the multireference driven similarity renormalization group: A benchmark study of open-shell diatomic molecules and spin-crossover energetics. J. Chem. Phys. 155, 114111 (2021).  

3. C. Li* and F. A. Evangelista, Connected three-body terms in single-reference unitary many-body theories: Iterative and perturbative approximations. J. Chem. Phys. 152, 234116 (2020).

4. T. Zhang*, C. Li*, and F. A. Evangelista*, Improving the efficiency of the multireference driven similarity renormalization group via sequential transformation, density fitting, and the noninteracting virtual orbital approximation. J. Chem. Theory Comput. 15, 4399 (2019).

5. S. Wang, C. Li*, and F. A. Evangelista, Analytic gradients for the single-reference driven similarity renormalization group second-order perturbation theory. J. Chem. Phys. 151, 044118 (2019).

6. C. Li*, R. Lindh*, and F. A. Evangelista*, Dynamically weighted multireference perturbation theory: Combining the advantages of multi-state and state-averaged methods. J. Chem. Phys. 150, 144107 (2019).

7. C. Li* and F. A. Evangelista*, Multireference theories of electron correlation based on the driven similarity renormalization group. Ann. Rev. Phys. Chem. 70, 245 (2019).

8. C. Li* and F. A. Evangelista*, Driven similarity renormalization group for excited states: A state-averaged perturbation theory. J. Chem. Phys. 148, 124106 (2018).



 
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