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Nanoscale J-aggregates of poly(3-hexylthiophene): key to electronic interface interactions with graphene oxide as revealed by KPFM

机译:纳米尺度的J-aggregates保利(3-hexylthiophene):电子界面相互作用的关键石墨烯氧化物的KPFM透露的

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摘要

The nanoscale aggregate structure of conjugated polymers critically determines the performance of organic thin film optoelectronic devices. Their impact on electronic interface interactions with adjacent layers of graphene, widely reported to improve the device characteristics, yet remains an open issue, which needs to be addressed by an appropriate benchmark system. Here, we prepared discrete ensembles of poly(3-hexylthiophene) nanoparticles and graphene oxide sheets (P3HT(NPs)-GO) with well-defined aggregate structures of either J- or H-type and imaged their photogenerated charge transfer dynamics across their interface by Kelvin probe force microscopy (KPFM). A distinctive inversion of the sign of the surface potential and surface photovoltage (SPV) demonstrates that J-aggregates are decisive for establishing charge transfer interactions with GO. These enable efficient injection of photogenerated holes from P3HT(NPs) into GO sheets over a range of tens of nanometers, causing a slow SPV relaxation dynamics, and define their operation as an efficient hole-transport layer (HTL). Conversely, H-type aggregates do not facilitate specific interactions and entrust GO sheets the role of charge-blocking layers (CBLs). The direct effect of the aggregate structure of P3HT on the functional operation of GO as a HTL or CBL thus establishes clear criteria towards the rational design of improved organic optoelectronic devices.
机译:共轭的纳米聚合结构聚合物非常确定的性能有机薄膜光电设备。对电子界面相互作用的影响相邻层的石墨烯,广泛报道提高设备特征,然而仍然存在一个开放的问题,需要解决的适当的基准体系。离散集合聚(3-hexylthiophene)纳米颗粒和石墨烯氧化物表(P3HT (NPs)——去),定义良好的骨料J -或屏蔽结构和成像他们photogenerated电荷转移动力学在他们的接口开尔文探针的力量显微镜(KPFM)。表面势和表面的迹象光电压(SPV)表明J-aggregates果断建立电荷转移吗相互作用。从P3HT注入photogenerated洞(NPs)表在一系列数万纳米,导致缓慢SPV放松作为一个动态,并定义他们的操作高效的空穴传输层(HTL)。屏蔽总量不方便具体交互和委托表的作用charge-blocking层(cbl)。P3HT的总体结构函数运算的HTL或CBL如此建立明确的标准对理性的设计改进有机光电子设备。

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