A Review on Recent Advances in Materials of Hybrid Organic–Inorganic Perovskite Solar Cells

Kawther A. Kalaph, A. Jafar, N. Abdalameer, Amar Moula Hmood
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Abstract

This study is an emphasis on the metal halide perovskite solar cells that are susceptible to factors that influence their power conversion efficiency (PCE). Perovskite solar cells, also known as PSCs, have been shown to have a high power conversion efficiency (PCE) due to a number of various factors. As they reached a power conversion efficiency of 25%, solar cells based on metal halide perovskite were a game-changer in the quest for photovoltaic performance. A flurry of activity in the fields of structure design, materials chemistry, process engineering, and device physics has helped the solid-state perovskite solar cell to become a leading contender for the next generation of solar energy harvesters in the world today. This follows up on the ground-breaking development of the solid-state perovskite solar cell in 2012. This cell has a higher efficiency compared to commercial silicon or other organic and inorganic solar cells, as well as a lower cost of materials and processes. However, it has the disadvantage that these high efficiencies can only be obtained with lead-based perovskites, which increases the cost of the cell. As a result of this fact, a new study area on lead-free metal halide perovskites was established, and it is now exhibiting a remarkable degree of vibrancy. This provided us with the impetus to review this burgeoning area of research and discuss possible alternative elements according to current theoretical and practical investigations that might be utilized to replace lead in metal halide perovskites as well as the features of the perovskite materials that correspond to these elements.
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有机-无机钙钛矿杂化太阳能电池材料研究进展
本研究的重点是金属卤化物钙钛矿太阳能电池易受影响其功率转换效率(PCE)的因素。钙钛矿太阳能电池,也被称为PSCs,由于许多不同的因素,已被证明具有很高的功率转换效率(PCE)。基于金属卤化物钙钛矿的太阳能电池达到了25%的能量转换效率,在追求光伏性能方面改变了游戏规则。在结构设计、材料化学、工艺工程和设备物理等领域的一系列活动,帮助固态钙钛矿太阳能电池成为当今世界下一代太阳能收集器的主要竞争者。这是继2012年固态钙钛矿太阳能电池的突破性发展之后的又一进展。与商业硅或其他有机和无机太阳能电池相比,这种电池具有更高的效率,以及更低的材料和工艺成本。然而,它的缺点是这些高效率只能通过铅基钙钛矿获得,这增加了电池的成本。由于这一事实,建立了无铅金属卤化物钙钛矿的一个新的研究领域,并且现在显示出显著的活力。这为我们提供了回顾这一新兴研究领域的动力,并根据当前的理论和实践研究讨论可能用于取代金属卤化物钙钛矿中的铅的替代元素,以及与这些元素对应的钙钛矿材料的特征。
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