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Ionic Charge Transfer Complex Induced Visible Light Harvesting and Photocharge Generation in Perovskite

机译:离子电荷转移复合物诱导钙钛矿中可见光的收集和光电荷的产生

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Organometal trihalide perovskite has recently emerged as a new class of promising material for high efficiency solar cells applications. While excess ions in perovskites are recently getting a great deal of attention, there is so far no clear understanding on both their formation and relating ions interaction to the photocharge generation in perovskite. Herein, we showed that tremendous ions indeed form during the initial stage of perovskite formation when the organic methylammonium halide (MAX(a), X-a = Br and I) meets the inorganic PbX2b, (X-b = Cl, Br, I). The strong charge exchanges between the Pb2+ cations and Xa- anions result in formation of ionic charge transfer complexes (iCTC). MAX(a) parties induce empty valence electronic states within the forbidden bandgap of PbX2b. The strong surface dipole provide sufficient driving force for sub-bandgap electron transition with energy identical to the optical bandgap of forming perovskites. Evidences from XPS/UPS and photoluminescence studies showed that the light absorption, exciton dissociation, and photocharge generation of the perovskites are closely related to the strong ionic charge transfer interactions between Pb2+ and x(a-) ions in the perovskite lattices. Our results shed light on mechanisms of light harvesting and subsequent free carrier generation in perovskites.
机译:有机金属三卤化物钙钛矿最近已成为一种新型的有前途的材料,可用于高效太阳能电池。尽管钙钛矿中的过量离子最近引起了广泛关注,但到目前为止,对于它们的形成以及离子与钙钛矿中的光电荷产生之间的相互作用没有明确的了解。在这里,我们表明,当有机甲基卤化铵(MAX(a),X-a = Br和I)遇到无机PbX2b(X-b = Cl,Br,I)时,在钙钛矿形成的初始阶段确实形成了巨大的离子。 Pb2 +阳离子和Xa-阴离子之间的强电荷交换导致形成离子电荷转移络合物(iCTC)。 MAX(a)方在PbX2b的禁带隙内感应空价电子态。强表面偶极子为亚带隙电子跃迁提供了足够的驱动力,其能量与形成钙钛矿的光学带隙相同。 XPS / UPS和光致发光研究的证据表明,钙钛矿的光吸收,激子离解和光电荷的产生与钙钛矿晶格中Pb2 +和x(a-)离子之间的强离子电荷转移相互作用密切相关。我们的研究结果揭示了钙钛矿中光收集和随后产生自由载流子的机理。

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