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首页> 外文期刊>ChemSusChem >Understanding the Limiting Factors of Solvent-Annealed Small-Molecule Bulk-Heterojunction Organic Solar Cells from a Chemical Perspective
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Understanding the Limiting Factors of Solvent-Annealed Small-Molecule Bulk-Heterojunction Organic Solar Cells from a Chemical Perspective

机译:了解化学视角的溶剂退火的小分子杂项 - 异质结合有机太阳能电池的限制因素

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A detailed account of the limiting factors of solvent-annealed bulk-heterojunction small-molecule organic solar cells is given. This account is based on the extensive characterisation of solar cell devices made from a library of five diketopyrolopyrole (DPP) donor dyes. Their chemical structure is designed in such a way as to provide insights into the energetics of solar cell active layer micro-structure formation. Numerous chemical and physical properties of the active layers are assessed and interrelated such as light absorption, molecular packing in the solid state, crystal-forming properties in thin films, charge carrier mobility and charge carrier recombination kinetics. A myriad of characterisation techniques are used such as UV/Vis absorption spectroscopy, photoluminescence spectroscopy, XRD, AFM and photo-induced transient measurements, which provide information on the optical properties of the active layers, morphology and recombination kinetics. Consequently, a mechanism for the solvent-vapour-annealing-assisted formation of crystalline domains of donor molecules in the active layer is proposed, and the micro-structural features are related to the J-V characteristics of the devices. According to this model, the crystalline phase in which the donor crystallise in the active layer is the key determinant to direct the formation of the micro-structure.
机译:给出了溶剂退火的散装 - 异质结小分子有机太阳能电池的限制因子的详细描述。该账户基于由五个二酮吡咯(DPP)供体染料的文库制成的太阳能电池装置的广泛表征。它们的化学结构采用这种方式设计,以便为太阳能电池有源层微结构形成的能量学提供见解。在薄膜的固态,晶体形成特性,薄膜中的晶体形成特性,在薄膜,电荷载流子迁移率和电荷载体重组动力学中评估和相互关联的许多化学和相互关联。使用无数的表征技术,例如UV / Vis吸收光谱,光致发光光谱,XRD,AFM和光致瞬态测量,其提供有关活性层,形态和重组动力学的光学性质的信息。因此,提出了一种用于活性层中供体分子的晶体域的溶剂 - 蒸汽退火的辅助形成的机制,微结构特征与装置的J-V特性有关。根据该模型,其中供体在活性层中结晶的结晶相是指导微结构形成的关键决定因素。

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