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The fabrication and analysis of a PbS nanocrysta1:C_(60) bilayer hybrid photovoltaic system

机译:PbS纳米晶体:C_(60)双层混合光伏系统的制备与分析

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A near-infrared sensitive hybrid photovoltaic system between PbS nanocrystals (PbS-NCs) and C60 is demonstrated. Up to 0.44% power conversion efficiency is obtained under AM1.5G with a short circuit current density (J_(sc)) of 5 mA cm~(-2) when the PbS-NC layer is treated in anhydrous methanol. The observed J_(sc) is found be approximately one-third of the maximum expected from this hybrid configuration, indicating the potential for further optimization. Crucial for device operation, a smooth film of nanocrystals is seen to form on the hole transporting poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) layer deposited on the transparent electrode, facilitated through an ionic interaction between nanocrystal capping ligands and the PEDOT:PSS. The formation of the open circuit voltage in this system is seen to be influenced by an interfacial dipole formed at the hole-extracting electrode, providing insights for further optimization.
机译:演示了PbS纳米晶体(PbS-NCs)和C60之间的近红外敏感混合光伏系统。当PbS-NC层在无水甲醇中处理时,在AM1.5G下,短路电流密度(J_(sc))为5 mA cm〜(-2)时,功率转换效率高达0.44%。发现观察到的J_(sc)大约是此混合配置所期望的最大值的三分之一,这表明有可能进行进一步优化。对于设备操作至关重要,可以看到在透明电极上沉积的空穴传输的聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)层上形成了光滑的纳米晶体膜,这是通过纳米晶体之间的离子相互作用而促进的封端配体和PEDOT:PSS。可以看出,该系统中开路电压的形成受到在空穴提取电极上形成的界面偶极子的影响,为进一步优化提供了见识。

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