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Self-assembled monolayer initiated electropolymerization: A route to thin-film materials with enhanced photovoltaic performance

机译:自组装单层引发的电聚合:通往具有增强光伏性能的薄膜材料的途径

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摘要

Continuing progress in the field of organic polymer photovoltaic (PV) devices requires the development of new materials with better charge-tran sport efficiency. To improve this parameter, we have investigated surface-attached bilayer polymer PV thin films prepared starting from a covalently attached monolayer of an electroactive initiator using sequential electropolymerization of dithiophene and its derivatives. These systems were found to show significantly C increased photocurrent generation quantum yields as compared to systems made through conventional approaches. In addition, the described PV thin films possess remarkable mechanical, air, and photostability. These properties likely arise from the more uniform and better ordered bulk layer morphologies as well as tighter covalently bonded contacts at the interfacial junctions. contributing to improved charge transport. While more studies on the fundamental reasons behind the discovered phenomenon are currently underway, this information can be readily applied to build more efficient organic polymer photovoltaics.
机译:有机聚合物光伏(PV)器件领域的不断进步要求开发具有更高电荷穿越运动效率的新材料。为了改善该参数,我们研究了使用二噻吩及其衍生物的顺序电聚合,从共价连接的电活性引发剂单层开始制备的表面连接的双层聚合物PV薄膜。与通过常规方法制造的系统相比,发现这些系统显示出显着的C增加的光电流产生量子产率。另外,所描述的PV薄膜具有显着的机械,空气和光稳定性。这些特性可能来自于更均匀和有序的本体层形态以及界面连接处更紧密的共价键接触。有助于改善电荷传输。尽管目前正在对发现的现象背后的根本原因进行更多的研究,但该信息可以很容易地应用于构建更有效的有机聚合物光伏材料。

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