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PEROVSKITES SOLAR CELLS: A NEW EMERGING TECHNOLOGY

机译:钙钛矿太阳能电池:一种新兴技术

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Solar energy has been considered as an important source of clean and safe energy to overcome the problems associate to the burn of fossil fuels (e.g. climate changes, pollution, health problems, etc.). In the area of photovoltaics, devices that convert solar energy into electricity, perovskites solar cells (PSC) have attracted great attention due to their rapid development, high energy conversion efficiency, diversification of the processing methods and different materials. The fantastic properties of the hybrid perovskite materials, such as high absorption coefficient, direct and tunable bandgap, ambipolar charge carrier, simple preparation, etc., have quoted this technology as one the most important in this century. The rapid development of PSC has provided a significant increase in energy conversion efficiency, which was first reported, in 2009, as 3.8% and now reaches up to 22.10%, according to the National Laboratory of Renewable Energy (NREL). Many studies have been carried out to further increase the efficiency of devices and solve problems as the instability of the material, and the presence of lead, so that the PSC can be applied commercially. This paper presents a review on PSC and the major advances reported in device’s architecture, preparation methods, novel materials and interface engineering.
机译:太阳能被认为是清洁和安全能源的重要来源,可以克服与化石燃料燃烧有关的问题(例如气候变化,污染,健康问题等)。在光伏领域,钙钛矿太阳能电池(PSC)将太阳能转换为电能的装置因其快速发展,高能量转换效率,加工方法的多样化和材料的不同而备受关注。钙钛矿杂化材料的优异性能,例如高吸收系数,直接和可调节的带隙,双极性电荷载流子,简单的制备方法等,已被誉为是本世纪最重要的技术。美国国家可再生能源实验室(NREL)表示,PSC的快速发展极大地提高了能源转换效率,2009年首次报道该转换率为3.8%,现在达到22.10%。已经进行了许多研究以进一步提高器件的效率并解决由于材料的不稳定性和铅的存在而引起的问题,从而使得PSC可以在商业上应用。本文介绍了PSC,以及在设备的架构,制备方法,新颖的材料和接口工程方面报道的主要进展。

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