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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Exciton Diffusion Length and Lifetime in Subphthalocyanine Films
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Exciton Diffusion Length and Lifetime in Subphthalocyanine Films

机译:亚酞菁膜的激子扩散长度和寿命

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Organic photovoltaic cells with chloro[subphthalocyaninato]boron(III)(SubPc)as donor in combination with buckminster fullerene(C_(60))as acceptor in a planar heterojunction configuration have shown high power conversion efficiencies.The parameter that determines the critical distance to the heterojunction over which light-generated excitons can be harvested is the exciton diffusion length.Here,we characterize this exciton diffusion length in SubPc thin films by photoluminescence(PL)quenching experiments in a planar bilayer system.As the layer thickness is much smaller than the optical penetration depth,we apply the transfer matrix method(TMM)to calculate the internal optical field inside the organic structures and use this to derive the intrinsic PL spectrum.An exciton diffusion length of 28 nm is determined,and good agreement is found with the diffusion lengths obtained from modeling the external quantum efficiency.In addition,time-resolved PL measurements are performed to determine the exciton lifetime to be 0.3 ns.
机译:在平面异质结构型中,以氯[亚酞菁硼(III)(SubPc)为施主与buckminster富勒烯(C_(60))为受体的有机光伏电池显示出高功率转换效率。该参数决定了到可以收集光生激子的异质结就是激子扩散长度。这里,我们通过平面双层系统中的光致发光(PL)猝灭实验来表征SubPc薄膜中的该激子扩散长度。因为层厚度远小于在光穿透深度方面,我们应用传递矩阵法(TMM)计算有机结构内部的内部光场,并利用其推导本征PL光谱。确定激子扩散长度为28 nm,与通过对外部量子效率建模获得的扩散长度。此外,进行时间分辨的PL测量以确定t他的激子寿命为0.3 ns。

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