首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Phthalimide-based pi-conjugated small molecules with tailored electronic energy levels for use as acceptors in organic solar cells
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Phthalimide-based pi-conjugated small molecules with tailored electronic energy levels for use as acceptors in organic solar cells

机译:邻苯二甲酰亚胺基的π共轭小分子,具有定制的电子能级,可用作有机太阳能电池的受体

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The design, synthesis, and characterization of seven phthalimide-based organic pi-conjugated small molecules are reported. The new materials are based on a phthalimide-thiophene-CORE-thiophene-phthalimide architecture. The CORE units utilized were phthalimide (M2), diketopyrrolopyrrole (M3), isoindigo (M4), naphthalene diimide (M5), perylene diimide (M6), and difluorobenzothiadiazole (M7); they were specifically selected to progressively increase the electron affinity of the resulting compound. A small molecule with no core (M1) was synthesized for comparison. Each material was synthesized through optimized direct heteroarylation cross-coupling procedures using bench top solvents in air. Combinations of UV-visible spectroscopy (UV-vis), cyclic voltammetry (CV), differential scanning calorimetry (DSC), ultraviolet photoelectron spectroscopy (UPS) and density functional theory (DFT) were used to characterize each material. The use of various core acceptor building blocks with differing electron affinities resulted in the series M1-M7 having a range of energetically deep LUMO levels and a range of HOMO-LUMO gap energies. Meanwhile, the melting and crystallization temperatures of the molecules M1-M7 were also found to vary according to the change in central acceptor unit. Compounds M1-M7 were employed as acceptors in combination with either the polymeric donor P3HT or small molecule donor DTS(FBTTh2)(2) to understand how the LUMO levels of each acceptor influences the open circuit voltage (V-oc). It was found that, in general, V-oc was only weakly related to the offset between the HOMO energy level of the donor and LUMO level of the acceptor used, with a V-oc of up to 1.2 V being achieved for M1.
机译:报告了七个邻苯二甲酰亚胺基有机pi共轭小分子的设计,合成和表征。新材料基于邻苯二甲酰亚胺-噻吩-CORE-噻吩-邻苯二甲酰亚胺结构。使用的CORE单元是邻苯二甲酰亚胺(M2),二酮吡咯并吡咯(M3),异靛蓝(M4),萘二酰亚胺(M5),per二酰亚胺(M6)和二氟苯并噻二唑(M7);对它们进行了专门选择,以逐步提高所得化合物的电子亲和力。合成了没有核的小分子(M1)用于比较。通过使用空气中的台式溶剂,通过优化的直接杂芳基交叉偶联程序合成每种材料。紫外可见光谱(UV-vis),循环伏安法(CV),差示扫描量热法(DSC),紫外光电子能谱(UPS)和密度泛函理论(DFT)的组合用于表征每种材料。使用具有不同电子亲和力的各种核心受体构建基块,导致M1-M7系列具有一系列能量深的LUMO能级和一系列HOMO-LUMO隙能。同时,还发现分子M1-M7的熔化和结晶温度根据中央受体单元的变化而变化。化合物M1-M7与聚合物供体P3HT或小分子供体DTS(FBTTh2)(2)结合用作受体,以了解每个受体的LUMO含量如何影响开路电压(V-oc)。已发现,通常,V-oc仅与供体的HOMO能级和所用受体的LUMO能级之间的偏移弱相关,M1的V-oc最高可达1.2V。

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