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首页> 外文期刊>Advanced Optical Materials >Creation and Annihilation of Nonradiative Recombination Centers in Polycrystalline Metal Halide Perovskites by Alternating Electric Field and Light
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Creation and Annihilation of Nonradiative Recombination Centers in Polycrystalline Metal Halide Perovskites by Alternating Electric Field and Light

机译:交变电场和光在多晶金属卤化物钙钛矿中的非辐射复合中心的产生和s灭

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摘要

Metal halide perovskites are promising optoelectronic materials. Their electronic properties however are rather unstable which is often assigned to ion migration. Ion migration can be readily influenced by an electric field (EF). Here, the response of photoluminescence (PL) of individual MAPbX(3) (MA = CH3NH3, X = I, Br) sub-micrometer-sized polycrystals to EF is studied. Alternating EF with frequency higher than 10 Hz is found to reversibly quench PL. It is proposed that an alternating EF when applied together with light increases ion migration. This leads to a shift in the equilibrium between creation and annihilation of defects toward higher concentration of nonradiative recombination centers. The PL quenching is found to increase with increasing frequency of the field. This can be rationalized by the frequency dependence of the dielectric constant, leading to stronger internal fields for high modulation frequencies compared to, e.g., a constant EF with the same external amplitude. PL quenching and enhancement observed under constant EF are hypothesized to be due to a reconfiguration of already existing nonradiative recombination centers situated on grain boundaries. The control of perovskite PL by alternating EF reported here can find applications in optoelectronic devices.
机译:金属卤化物钙钛矿是有前途的光电材料。然而,它们的电子性质相当不稳定,这通常归因于离子迁移。离子迁移容易受到电场(EF)的影响。在这里,研究了单个MAPbX(3)(MA = CH3NH3,X = I,Br)亚微米级多晶的光致发光(PL)对EF的响应。发现频率高于10 Hz的交流EF可逆地抑制PL。提出当与光一起施加时交替的EF会增加离子迁移。这导致缺陷产生和an灭之间的平衡向更高浓度的非辐射复合中心转移。发现PL猝灭随着场频率的增加而增加。这可以通过介电常数的频率依赖性来合理化,与例如具有相同外部振幅的恒定EF相比,对于高调制频率而言导致更强的内部场。假设在恒定EF下观察到的PL淬灭和增强是由于对位于晶界上的现有非辐射复合中心的重新构型所致。此处报道的通过交替EF来控制钙钛矿PL可以在光电设备中找到应用。

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