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Organic Semiconductors: Applications in Solar Photovoltaic and Sensor Devices

机译:有机半导体:在太阳能光伏和传感器装置中的应用

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Organic semiconductor-based solar photovoltaic cells and sensors are scalable, printable, solution processable, bendable and light-weight. Furthermore, organic semiconductors require low energy fabrication process coupled with the ease of processing, as well as compatibility with flexible substrates, hence, can be fabricated at low cost as light-weight solar cells and sensors. Organic semiconductors have been identified as a fascinating class of novel semiconductors that have the electrical and optical properties of metals and semiconductors. The continuous demand to improve the properties of organic semiconductors raises the quest for a deep understanding of fundamental issues and relevant electronic processes. Organic semiconductor thin film is sandwiched between two metal electrodes of indium tin oxide (ITO) and aluminum to form organic photovoltaic solar cell. Several types of organic semiconductors have been utilized as the photoactive layer in the solution processable organic solar cells. The performance of the fabricated solar cells can be improved by dissolving the material in the right choice of solvent, annealing of organic thin film, slowly forming the thin film and introducing an infra-red absorbance layer. Besides, organic semiconductor-based sensors can be fabricated utilizing either in a sandwich type or planar type device. Some of these techniques and the experimental results are presented.
机译:基于有机半导体的太阳能光伏电池和传感器是可伸缩的,可印刷的,溶液加工,可弯曲和轻质的。此外,有机半导体需要与易于加工耦合的低能量制造过程,以及与柔性基板的相容性,因此可以以低成本作为轻质太阳能电池和传感器来制造。有机半导体已被鉴定为具有金属和半导体的电气和光学性质的迷人类别的新型半导体。不断提高有机半导体性质的需求提高了对深切问题和相关电子过程的深刻理解。有机半导体薄膜夹在氧化铟锡(ITO)和铝的两个金属电极之间,形成有机光伏太阳能电池。已经使用了几种类型的有机半导体作为溶液加工有机太阳能电池中的光活性层。通过将材料溶解在正确的选择溶剂中,可以提高制造的太阳能电池的性能,有机薄膜的退火,缓慢地形成薄膜并引入红外线吸光度层。此外,可以在夹层型或平面型装置中使用有机半导体的传感器。提出了其中一些技术和实验结果。

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