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Perovskite Solar Cells on Corrugated Substrates with Enhanced Efficiency

机译:波纹基板上的钙钛矿太阳能电池效率更高

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摘要

Organometallic halide perovskites solar cells are fabricated on nano- scaled corrugated substrates using a sequential deposition method. The corrugated substrates are fabricated using colloidal lithography followed by reactive ion etching. The corrugated structure is found to accelerate the chemical reaction between the sequentially deposited lead iodide (PbI2) and methyl ammonium iodide layers to form stoichiometric perovskite films, and the corrugated morphology is preserved at the interface of the hole transport layer (HTL) and the perovskite layer. The shunt resistance of the corrugated devices is found to be higher than that of the planar devices, leading to a higher open circuit voltage (VOC) and fill factor (FF) in the corrugated devices. Finite- difference time- domain simulation is carried out on both planar and corrugated devices. The results revealed that light absorption is enhanced in the corrugated devices due to the corrugated HTL/ perovskite interface, resulting in a significantly higher short circuit current (JSC) observed in the corrugated devices. As a result, the average power conversion efficiency increases from 8.7% for the planar devices to 13% for the corrugated devices.
机译:使用顺序沉积方法在纳米级波纹状基板上制造有机金属卤化物钙钛矿太阳能电池。瓦楞纸的基材是使用胶体光刻技术进行反应离子刻蚀而成的。发现波纹结构可加速顺序沉积的碘化铅(PbI2)和甲基碘化铵层之间的化学反应,形成化学计量的钙钛矿膜,并且波纹形态保留在空穴传输层(HTL)和钙钛矿的界面处层。发现波纹装置的分流电阻高于平面装置的分流电阻,从而导致波纹装置的开路电压(VOC)和填充系数(FF)更高。在平面和波纹设备上都进行了时域有限差分仿真。结果显示,由于波纹状的HTL /钙钛矿界面,波纹状器件中的光吸收得到增强,从而在波纹状器件中观察到明显更高的短路电流(JSC)。结果,平均功率转换效率从平面装置的8.7%增加到波纹状装置的13%。

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