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GW/BSE Nonadiabatic Dynamics Simulations on Excited-State Relaxation Processes of Zinc Phthalocyanine-Fullerene Dyads:Roles of Bridging Chemical Bonds

GW/BSE级别下的非绝热动力学模拟揭示桥连化学键对调控酞菁锌-富勒烯给体-受体复合物激发态弛豫过程的重要作用
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摘要 In this work,we employ electronic structure calculations and nonadiabatic dynamics simulations based on many-body Green function and BetheSalpeter equation(GW/BSE)methods to study excited-state properties of a zinc phthalocyanine-fullerene(ZnPcC_(60))dyad with 6-6 and 5-6 configurations.In the former,the initially populated locally excited(LE)state of ZnPc is the lowest S1 state and thus,its subsequent charge separation is relatively slow.In contrast,in the latter,the S1 state is the LE state of C_(60)while the LE state of ZnPc is much higher in energy.There also exist several charge-transfer(CT)states between the LE states of ZnPc and C_(60).Thus,one can see apparent charge separation dynamics during excited-state relaxation dynamics from the LE state of ZnPc to that of C_(60).These points are verified in dynamics simulations.In the first 200 fs,there is a rapid excitation energy transfer from ZnPc to C_(60),followed by an ultrafast charge separation to form a CT intermediate state.This process is mainly driven by hole transfer from C_(60)to ZnPc.The present work demonstrates that different bonding patterns(i.e.5-6 and 6-6)of the C−N linker can be used to tune excited-state properties and thereto optoelectronic properties of covalently bonded ZnPc-C_(60)dyads.Methodologically,it is proven that combined GW/BSE nonadiabatic dynamics method is a practical and reliable tool for exploring photoinduced dynamics of nonperiodic dyads,organometallic molecules,quantum dots,nanoclusters,etc.
作者 Wen-kai Chen Xin-wei Sun Qiu Fang Xiang-yang Liu Gang-long Cui 陈文恺;孙鑫伟;方遒;刘向洋;崔刚龙(北京师范大学化学学院,理论与计算光化学教育部重点实验室,北京100875;四川师范大学化学与材料科学学院,成都610068)
出处 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2021年第6期704-716,I0001,I0013-I0030,共32页 化学物理学报(英文)
基金 support from the National Natural Science Foundation of China(No.21688102,No.21590801,and No.21520102005) support from Sichuan Science and Technology Program Grant(2020YJ0161)。
关键词 GW/BSE ZnPc-Fullerene dyads Nonadiabatic dynamics simulations Excited states Charge separation Photoinduced energy transfer GW/BSE 非绝热动力学 激发态 光诱导能量转移
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