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Design and Synthesis of Novel Block Copolymers for Efficient Opto-Electronic Applications

机译:高效光电应用的新型嵌段共聚物的设计与合成

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It has been predicted that nano-phase separated block copolymer systems containing electron rich donor blocks and electron deficient acceptor blocks may facilitate the charge carrier separation and migration in organic photovoltaic devices due to improved morphology in comparison to polymer blend system. This paper presents preliminary data describing the design and synthesis of a novel Donor-Bridge-Acceptor (D-B-A) block copolymer system for potential high efficient organic opto-electronic applications. Specifically, the donor block contains an electron donating alkyloxy derivatized polyphenylenevinylene (PPV), the acceptor block contains an electron withdrawing alkyl-sulfone derivatized polyphenylenevinylene (PPV), and the bridge block contains an electronically neutral non-conjugated aliphatic hydrocarbon chain. The key synthetic strategy includes the synthesis of each individual block first, then couple the blocks together. While the donor block stabilizes and facilitates the transport of the holes, the acceptor block stabilizes and facilitates the transport of the electrons, the bridge block is designed to hinder the probability of electron-hole recombination. Thus, improved charge separation and stability are expected with this system. In addition, charge migration toward electrodes may also be facilitated due to the potential nano-phase separated and highly ordered block copolymer ultra-structure.
机译:已经预测,纳米相分离的嵌段共聚物系统含有电子富供体块和电子缺陷的受体块可以促进有机光伏器件中的电荷载流子分离和迁移,与聚合物共混体系相比,由于改善的形态。本文提出了描述用于潜在高效有机光电应用的新型供体 - 桥接受体(D-B-A)嵌段共聚物系统的设计和合成的初步数据。具体地,供体嵌段含有电子提供烷基氧基衍生化的聚苯乙烯烯酮(PPV),受体嵌段含有抽出的烷基砜衍生化的聚苯乙烯烯酮(PPV),并且桥块含有电子中性非共轭脂族烃链。关键的合成策略包括首先合成每个块,然后将块耦合在一起。虽然施主块稳定并便于孔的运输,而受体块稳定并便于电子的运输,桥块设计用于阻碍电子 - 空穴重组的可能性。因此,预期该系统预期提高电荷分离和稳定性。另外,由于电位纳米相分离和高度有序的嵌段共聚物超结构,也可以促进对电极的电荷迁移。

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