Theoretical Study on Organic Photovoltaic Heterojunction FTAZ/IDCIC

Chinese Journal of Chemical Physics(2023)

引用 4|浏览24
暂无评分
摘要
Understanding organic photovoltaic(OPV)work principles and the materials'optoelec-tronic properties is fundamental for devel-oping novel heterojunction materials with the aim of improving power conversion effi-ciency(PCE)of organic solar cells.Here,in order to understand the PCE performance(>13%)of OPV device composed of the non-fullerene acceptor fusing naphtho[1,2-b:5,6-b']dithiophene with two thieno[3,2-b]thiophene(IDCIC)and the polymer donor fluorobenzotriazole(FTAZ),with the aid of extensive quantum chemistry calculations,we investigated the geometries,molecular orbitals,excitations,electrostatic potentials,trans-ferred charges and charge transfer distances of FTAZ,IDCIC and their complexes with face-on configurations,which was constructed as heterojunction interface model.The results indicate that,the prominent OPV performance of FTAZ:IDCIC heterojunction is caused by co-planarity between the donor and acceptor fragments in IDCIC,the the charge transfer(CT)and hybrid excitations of FTAZ and IDCIC,the complementary optical absorptions in visible region,and the large electrostatic potential difference between FTAZ and IDCIC.The electronic structures and excitations of FTAZ/IDCIC complexes suggest that exciton dissociation can fulfill through the decay of local excitation exciton in acceptor by means of hole transfer,which is quite different from the OPVs based on fullerenes acceptor.The rates of exciton dissociation,charge recombination and CT processes,which were evaluated by Marcus theory,support the efficient exciton dissociation that is also responsible for good photovoltaic performance.
更多
查看译文
关键词
Electronic structure,Excitation,Charge transfer,Organic photovoltaics,Het-erojunction interface
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要