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Preparation and Characteristics of MAPbBr3 Perovskite Quantum Dots on NiOx Film and Application for High Transparent Solar Cells

机译:NiOx薄膜上MAPbBr3钙钛矿量子点的制备特性及在高透明太阳能电池中的应用

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摘要

In this work, a MAPbBr3 quantum dot (QD-MAPbBr3) layer was prepared by a simple and rapid method. Octylammonium bromide (OABr) gives the MAPbBr3 better exciton binding energy, good surface morphology, and stability. To form a nanocrystalline thin film on indium tin oxide (ITO) glass, the QD-MAPbBr3 film was coated by a spin-coating method in a nitrogen-filled glove box and the NiOx film was used as an adhesive layer and hole transport layer. The highest transmittance of MAPbBr3 on NiOx/ITO glass was around 75% at 700 nm. This study also reported a high transparent and perovskite bulk-free ITO/NiOx/QD-MAPbBr3/C60/Ag solar cell where the NiOx, QD-MAPbBr3, and C60 were used as a hole transport layer, active layer, and electron transport layer, respectively.
机译:在这项工作中,通过简单而快速的方法制备了MAPbBr3量子点(QD-MAPbBr3)层。溴化八溴铵(OABr)使MAPbBr3具有更好的激子结合能,良好的表面形态和稳定性。为了在铟锡氧化物(ITO)玻璃上形成纳米晶薄膜,通过旋涂法在充氮手套箱中涂覆QD-MAPbBr3膜,并将NiOx膜用作粘合层和空穴传输层。 MAPbBr3在NiOx / ITO玻璃上的最高透射率在700 nm处约为75%。这项研究还报道了一种高透明且无钙钛矿的ITO / NiOx / QD-MAPbBr3 / C60 / Ag太阳能电池,其中NiOx,QD-MAPbBr3和C60用作空穴传输层,活性层和电子传输层, 分别。

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