bstract(#br)With emerging flexible substrates, perovskite solar cells 的简体中文翻译

bstract(#br)With emerging flexible

bstract(#br)With emerging flexible substrates, perovskite solar cells have entered into a new stage of development toward flexibility, portability and miniaturization. However, this promising landscape is hindered by the necessity the high-temperature processes. In this study, a highly efficient, stable and flexible planar perovskite solar cell is fabricated using an all-room temperature pathway. First, a nanocrystalline SnO 2 layer is deposited on polyethylene terephthalate/indium tin oxide via room-temperature sol-gel strategy. Then (FAPbI 3 ) 0.85 (MAPbBr 3 ) 0.15 is coated thereon, by annealing-free solution deposition. In both steps films are subjected to ultrasonic vibration, right after deposition, while they are still wet. By virtue of the ultrasonic energy, surface evaporation of liquid molecules is accelerated, impurities are removed from deposited wet film, and as a result shrinkage and sintering occur at room temperature. The cell is completed by a classical method, showing a champion power conversion efficiency of 17.38%, based on 0.16 cm 2 active area. After 480 hours aging in 50% relative humidity, this cell retains 80% of its initial performance. This research promises efficient, inexpensive and sustainable systems for harvesting solar energy by wearable modules.
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结果 (简体中文) 1: [复制]
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bstract(#br)随着新兴的柔性基板,钙钛矿太阳能电池已进入向柔性,便携性和小型化发展的新阶段。但是,这种前景广阔的前景因高温工艺的必要性而受到阻碍。在这项研究中,使用全室温路径制造了一种高效,稳定且灵活的平面钙钛矿太阳能电池。首先,通过室温溶胶-凝胶策略将纳米晶SnO 2层沉积在聚对苯二甲酸乙二醇酯/铟锡氧化物上。然后,通过无退火溶液沉积在其上涂覆(FAPbI 3)0.85(MAPbBr 3)0.15。在这两个步骤中,薄膜在刚沉积后仍处于湿润状态时,都会经受超声波振动。借助超声波能量,液体分子的表面蒸发得以加速,从沉积的湿膜中除去杂质,结果在室温下发生收缩和烧结。该电池通过经典方法完成,基于有效面积0.16 cm 2,其冠军功率转换效率为17.38%。在50%相对湿度下老化480小时后,该电池保留了其初始性能的80%。这项研究有望为可穿戴模块收集太阳能提供高效,廉价和可持续的系统。
正在翻译中..
结果 (简体中文) 2:[复制]
复制成功!
bstract(#br)With emerging flexible substrates, perovskite solar cells have entered into a new stage of development toward flexibility, portability and miniaturization. However, this promising landscape is hindered by the necessity the high-temperature processes. In this study, a highly efficient, stable and flexible planar perovskite solar cell is fabricated using an all-room temperature pathway. First, a nanocrystalline SnO 2 layer is deposited on polyethylene terephthalate/indium tin oxide via room-temperature sol-gel strategy. Then (FAPbI 3 ) 0.85 (MAPbBr 3 ) 0.15 is coated thereon, by annealing-free solution deposition. In both steps films are subjected to ultrasonic vibration, right after deposition, while they are still wet. By virtue of the ultrasonic energy, surface evaporation of liquid molecules is accelerated, impurities are removed from deposited wet film, and as a result shrinkage and sintering occur at room temperature. The cell is completed by a classical method, showing a champion power conversion efficiency of 17.38%, based on 0.16 cm 2 active area. After 480 hours aging in 50% relative humidity, this cell retains 80% of its initial performance. This research promises efficient, inexpensive and sustainable systems for harvesting solar energy by wearable modules.
正在翻译中..
结果 (简体中文) 3:[复制]
复制成功!
钙钛矿太阳能电池(bstract(#br)随着柔性衬底的出现,已进入柔性化、便携化、小型化的新发展阶段。然而,由于高温过程的必要性,这一前景看好的景观受到了阻碍。在本研究中,我们利用全室温路径制备了一种高效、稳定、灵活的平面钙钛矿太阳能电池。首先,采用室温溶胶-凝胶法在聚对苯二甲酸乙二醇酯/氧化铟锡上制备了纳米SnO 2薄膜。然后(FAPbI 3)0.85(mapbr3)0.15通过无退火溶液沉积涂覆在其上。在这两个步骤中,薄膜在沉积后立即受到超声波振动,而它们仍然是湿的。借助于超声波能量,液体分子的表面蒸发加快,杂质从沉积的湿膜中去除,从而在室温下发生收缩和烧结。该单元采用经典的方法完成,以0.16cm~2的有效面积计算,冠军功率转换效率为17.38%。在50%相对湿度下老化480小时后,该电池仍保持80%的初始性能。这项研究为可穿戴组件收集太阳能提供了高效、廉价和可持续的系统。<br>
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