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Hole transport layer free stable perovskite solar cell with low temperature processed carbon electrodes

机译:带有经过低温处理的碳电极的无空穴传输层的稳定钙钛矿太阳能电池

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Perovskite solar cells, despite showing promising efficiency of more than 22%, is still far from realizing its full prospect on commercial scale, majorly owing to the cost associated with gold or silver counter electrode as well as hole transport material. Herein we report, low temperature processed carbon paste for hole transport layer free perovskite solar cell (PSC) fabricated in ambient conditions. Conductive (11.46 Ω □-1) and adherent carbon paste were prepared with acrylic and ethyl cellulose based binders. We have optimized the amount of binder required for good adherence as well as conductivity. Perovskite solar cell with the FTO/TiO2 compact layer/TiO2 mesoporous layer/MAPbI3/carbon architecture was fabricated with 7.41% power conversion efficiency. The prepared devices show promising stability for more than 500 hours.
机译:钙钛矿太阳能电池尽管显示出令人鼓舞的效率超过22%,但仍远未实现其在商业规模上的全部前景,这主要归因于与金或银对电极以及空穴传输材料相关的成本。我们在此报告,在环境条件下制造的用于无空穴传输层的钙钛矿型太阳能电池(PSC)的低温加工碳糊。导电(11.46Ω□ -1 )和粘附的碳糊用丙烯酸和乙基纤维素基粘合剂制备。我们优化了良好附着力和导电性所需的粘合剂量。具有FTO / TiO的钙钛矿太阳能电池 2 致密层/ TiO 2 介孔层/ MAPbI 3 碳纤维结构的功率转换效率为7.41%。所制备的装置在500小时以上的时间内显示出稳定的稳定性。

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