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Increasing the efficiency of a multilayer bulk heterojunction solar cell using water-soluble conjugated polymer as an electron injection layer

机译:使用水溶性共轭聚合物作为电子注入层的多层体异质结太阳能电池的效率提高

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摘要

A bulk heterojunction solar cell (BHJ-SC) was fabricated from the conventional active polymer blend P3HT:PCBM by constructing a polymer multilayer structure with novel electron-transporting water-soluble conjugated polymers (WSCPs), poly[9,9′-bis[2-(2-(2-(6″-(N,N,N-trimethylammonium) ethoxy) ethoxy) ethoxy) ethyl]fluorine, and its copolymer with a phenyl on top of the polymer active layer. In the multilayer structure BHJ-SC, each WSCP coordinated by Na~+ ions to the oxygen site on the side chain of the polymer acts as a good electron injection layer for the higher electron collection at the cathode metal. This causes up to 85% increase in the BHJ-SC's power conversion efficiency (PCE) compared to that of the BHJ-SC without WSCPs. This report will discuss the effect of the electron injection layer in the BHJ-SC in terms of the current/voltage characteristics, PCE, electron affinity, and charge mobility of water-soluble polymers.
机译:通过用新型电子传输水溶性共轭聚合物(WSCP),聚[9,9'-bis []构成聚合物多层结构,由常规的活性聚合物共混物P3HT:PCBM制成体异质结太阳能电池(BHJ-SC)。 2-(2-(2-(6-(6-″-(N,N,N-三甲基铵)乙氧基)乙氧基)乙氧基)乙基]氟及其在聚合物活性层上与苯基的共聚物。在多层结构BHJ-SC中,每个由Na〜+离子配位到聚合物侧链上的氧位的WSCP充当了良好的电子注入层,用于在阴极金属处收集更高的电子。与没有WSCP的BHJ-SC相比,BHJ-SC的功率转换效率(PCE)最多提高了85%。该报告将就电流/电压特性,PCE,电子亲和力和水溶性聚合物的电荷迁移率来讨论BHJ-SC中电子注入层的作用。

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