首页> 外文会议>Conference on physical chemistry of interfaces and nanomaterials XII >Effect of Film Nanostructure on In-Plane Charge Transport in Organic Bulk Heteroj unction Materials
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Effect of Film Nanostructure on In-Plane Charge Transport in Organic Bulk Heteroj unction Materials

机译:薄膜纳米结构对有机型杂毒压力材料在平面内电荷输送的影响

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Bulk heterojunction (BHJ) organic solar cells are a promising alternative energy technology, but a thorough understanding of charge transport behavior in BHJ materials is necessary in order to design devices with high power conversion efficiencies. Parameters such as carrier mobilities, carrier concentrations, and the recombination coefficient have traditionally been successfully measured using vertical structures similar to organic photovoltaic (OPV) cells. We have developed a lateral BHJ device which complements these vertical techniques by allowing spatially resolved measurement along the transport direction of charge carriers. This is essential for evaluating the effect of nanoscale structure and morphology on these important charge transport parameters. Nanomorphology in organic BHJ films has been controlled using a variety of methods, but the effect of these procedures has been infrequently correlated with the charge transport parameter of the BHJ material. Electron beam lithography has been used to create lateral device structures with many voltage probes at a sub-micron resolution throughout the device channel. By performing in-situ potentiometry, we can calculate both carrier mobilities and determine the effect of solvent choice and annealing procedure on the charge transport in BHJ system. Spin coated P3HT:PCBM films prepared from solutions in chloroform and o-xylene are characterized using this technique.
机译:散装异质结(BHJ)有机太阳能电池是一个有前途的替代能源技术,但是对BHJ材料中的电荷运输行为的彻底了解是必要的,以设计具有高功率转换效率的设备。传统上使用类似于有机光伏(OPV)细胞的垂直结构来成功测量诸如载体迁移率,载流子浓度和重组系数的参数。我们开发了一种横向BHJ装置,其通过允许沿电荷载流子的传送方向允许空间地解析的测量来补充这些垂直技术。这对于评估纳米级结构和形态对这些重要的电荷传输参数的影响至关重要。有机BHJ薄膜中的纳米形态已经使用各种方法控制,但这些程序的效果与BHJ材料的电荷传输参数相当相关。电子束光刻已经用于在整个设备通道中产生具有许多电压探针的横向装置结构。通过进行原位电位计量,我们可以计算载波迁移率,并确定溶剂选择和退火程序对BHJ系统电荷运输的影响。旋转涂层P3HT:使用该技术表征由氯仿和O-甲烷中的溶液制备的PCBM薄膜。

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