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Investigating the feasibility of symmetric guanidinium based plumbate perovskites in prototype solar cell devices

机译:研究在原型太阳能电池设备中基于胍基对称铅酸钙钛矿的可行性

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In this work we have studied the feasibility of highly symmetric guanidinium (GA; CH6N3+) cation in perovskite based solar cells. It is an alternative to the methyl ammonium (MA; CH3NH3+) or formamidinium (FA; CH(NH2)(2+)) ions commonly utilized in the perovskite solar cells, may bring additional advantages due to its triad rotational symmetry and zero dipole moment (mu). We noticed that due to steric factors, GA preferably forms two-dimensional (2D) layer, where GA(2)PbI(4) is favored monoclinic structure (E-g = 2.5 eV) and the obtained device efficiency is eta = 0.45%. This study provides a guideline for designing guanidinium based perovskite absorbers for solar cell devices. In addition, through further compositional engineering with mixed organic cations using GA may enhance the device performance. (C) 2017 The Japan Society of Applied Physics
机译:在这项工作中,我们研究了钙钛矿基太阳能电池中高对称胍盐(GA; CH6N3 +)阳离子的可行性。它是钙钛矿太阳能电池中常用的甲基铵(MA; CH3NH3 +)或甲form(FA; CH(NH2)(2+))离子的替代物,由于其三重旋转对称性和零偶极矩,可能带来其他优势(亩)。我们注意到,由于空间因素,GA最好形成二维(2D)层,其中GA(2)PbI(4)有利于单斜晶结构(E-g = 2.5 eV),并且获得的器件效率为eta = 0.45%。该研究为设计用于太阳能电池装置的胍基钙钛矿吸收剂提供了指导。另外,通过使用GA通过混合有机阳离子进行进一步的成分工程可以提高器件性能。 (C)2017日本应用物理学会

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