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Interfaces in Perovskite Solar Cells

机译:钙钛矿太阳能电池中的界面

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摘要

Rapid improvement in photoconversion efficiency (PCE) of solution processable organometallic hybrid halide based perovskite solar cells (PSCs) have taken the photovoltaic (PV) community with a surprise and has extended their application in other electronic devices such as light emitting diodes, photo detectors and batteries. Together with efforts to push the PCE of PSCs to record values 22% - now at par with that of crystalline silicon solar cells origin of their PV action and underlying physical processes are also deeply investigated worldwide in diverse device configurations. A typical PSC consists of a perovskite film sandwiched between an electron and a hole selective contact thereby creating ESC/perovskite and perovskite/HSC interfaces, respectively. The selective contacts and their interfaces determine properties of perovskite layer and also control the performance, origin of PV action, open circuit voltage, device stability, and hysteresis in PSCs. Herein, we define ideal charge selective contacts, and provide an overview on how the choice of interfacing materials impacts charge accumulation, transport, transfer/recombination, band-alignment, and electrical stability in PSCs. We then discuss device related considerations such as morphology of the selective contacts (planar or mesoporous), energetics and electrical properties (insulating and conducting), and its chemical properties (organic vs inorganic). Finally, the outlook highlights key challenges and future directions for a commercially viable perovskite based PV technology.
机译:溶液可加工的有机金属混合卤化物钙钛矿太阳能电池(PSC)的光转换效率(PCE)的快速提高已使光伏(PV)社区大为惊讶,并将其应用扩展到其他电子设备中,例如发光二极管,光电探测器和电池。加上努力推动PSC的PCE记录值超过22%的努力-现在与晶体硅太阳能电池的PCE值相当,其光伏作用的起源和潜在的物理过程也在全球范围内的各种器件配置中进行了深入研究。典型的PSC由钙钛矿膜组成,该钙钛矿膜夹在电子和空穴选择性接触之间,从而分别形成ESC /钙钛矿和钙钛矿/ HSC界面。选择性触点及其界面决定了钙钛矿层的特性,还控制着性能,PV作用的起因,开路电压,器件稳定性以及PSC中的磁滞现象。本文中,我们定义了理想的电荷选择触点,并概述了接口材料的选择如何影响PSC中的电荷积累,传输,转移/重组,能带对准和电稳定性。然后,我们讨论与设备相关的考虑因素,例如选择性接触的形态(平面或中孔),高能和电特性(绝缘和导电)及其化学特性(有机与无机)。最后,前景突出了钙钛矿基光伏技术在商业上可行的主要挑战和未来方向。

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