模具(集成电路)
太阳能电池
卷到卷处理
涂层
材料科学
钙钛矿(结构)
比例(比率)
钙钛矿太阳能电池
光电子学
复合材料
纳米技术
工程类
物理
化学工程
量子力学
作者
Dominic Blackburn,Nathan Hill,Christopher J. Wood,Tamilselvan Velusamy,Balder A. Nieto-Díaz,C. L. Woolley,Andy Brown,Loukas Zampelis,Trevor McArdle,Molly Worth,Timothy Thornber,Ibrahim Albariqi,Rachel C. Kilbride,Tingxiang Yang,C. Neil Hunter,Graham J. Leggett,George Koutsourakis,James C. Blakesley,Fernando A. Castro,David Beynon
标识
DOI:10.1021/acsaem.4c02734
摘要
We fabricate a type of back-contact perovskite solar cell based on 1.5 μm-width grooves that are embossed into a plastic film whose opposing "walls" are selectively coated with either n- or p-type contacts. A perovskite precursor solution is then deposited into the grooves, creating individual photovoltaic devices. Each groove device is series-connected to its neighbors, creating minimodules consisting of hundreds of connected grooves. Here, we report on the fabrication of groove-based devices using slot-die coating to deposit the perovskite precursor and explore the structure of the perovskite in the grooves using a range of microscopy and spectroscopy techniques. Significantly, our devices do not contain any expensive or scarce elements such as indium, indicating that this technology is both sustainable and low-cost. Furthermore, all coating processes explored here were performed using roll-to-roll processing techniques. Our technology is therefore completely scalable and is consistent with high-throughput, low-cost manufacturing.
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