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A review of photovoltaic performance of organic/inorganic solar cells for future renewable and sustainable energy technologies

机译:有机/无机太阳能电池光伏性能综述,以供未来可再生能源技术

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Solar cells are emerging as serious contenders to rival leading energy sources to generate electricity for environment friendly renewable and sustainable energy technologies. Earth is receiving an incredible amount of solar energy which can be converted into electricity by means of high-performance solar cells for meeting the future global energy needs. This article reviews the rapid progress in the developments of inorganic and organic solar cells (SCs) such as silicon SCs, perovskite SCs, Ⅲ-Ⅴ SCs, quantum dot SCs, dye sensitized SCs, flexible SCs, thin film SCs and tandem SCs. This article highlights the factors influencing the photovoltaic (PV) performance of SCs such as solar cell architectures, photovoltaic materials, photo-electrode materials, operational and thermal stability challenges, recombination losses, thermal and chemical treatments, trap defects, hole transport materials and optical irradiation. This paper also point out the reliability issues and challenges in the commercialization of SCs. Solar cells are emerging as a promising solution for power generating windows, power saving display systems, self-powered flexible and wearable electronic devices, building integrated photovoltaics, charging of e-vehicles, space craft and satellite applications and solar lighting.
机译:太阳能电池作为严重竞争者对竞争的能源进行严重的竞争者,为环境友好的可再生和可持续的能源技术发电。地球正在接受令人难以置信的太阳能,可以通过高性能太阳能电池转换为电力,以满足未来的全球能量需求。本文审查了无机和有机太阳能电池(SCS)的发展的快速进展,如硅SCS,Perovskite SCS,Ⅲ-ⅴSCS,量子点SCS,染料敏化SCS,柔性SCS,薄膜SCS和串联SCS。这些文章突出了影响SCS等SCS的光伏(PV)性能的因素,如太阳能电池架构,光伏材料,光电电极材料,操作和热稳定性挑战,重组损失,热和化学处理,陷阱缺陷,孔输送材料和光学辐照。本文还指出了SCS商业化的可靠性问题和挑战。太阳能电池作为发电窗口,省电显示系统,自动柔性和可穿戴电子设备,建筑集成光伏,电子车辆充电,空间工艺和卫星应用以及太阳能照明的承诺解决方案。

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