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A step towards environmental benign Mg/Pb based binary metal mixed halide perovskite material

机译:迈向环境友好的Mg / Pb基二元金属混合卤化物钙钛矿材料的一步

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Today's the best performing perovskite solar cells utilise Pb2+as a major bivalent cation source, however, the presence of toxic Pb is major issue that put its commercialization in dire straits. In this report, we unveiled the chemical synthesis and characterisation of Mg/Pb binary metal mixed halide perovskite with chemical formula CH3NH3PbxMg1−xI3−yClyusing MgCl2as a compositional gradient with nominal value of x from 0.1 to 0.9. The FESEM images of compositions corresponding to higher proportion ofCl-(or MgCl2) demonstrate improved particle (or grain) size of ∼ 8–12 μm. There is a close resemblance of stoichiometric ratio of Pb:Mg obtained from EDX analysis with that of incorporated stoichiometric ratio of Pb:Mg. Further, Mg and Cl incorporation is strengthened by the characteristic spectral peak for core level electron of Mg(2p) and Cl(2p) other than Pb(4f) and I(3d) in the XPS survey spectrum of composition x = 0.5. These binary Mg/Pb Perovskite with bandgap in the range 1.57–1.59 eV behave as comparatively less toxic potential candidate for the single junction module. The IR studies at room temperature show observable shift in peak positions on comparing two extreme compositions i.e., x = 0.1 and x = 1.0. It is noticeable that both standard CH3NH3PbI3and binary Mg/Pb Perovskite with nominal value x = 0.7 have comparable thermal stability, however, the composition x = 0.1 have lower thermal stability than x = 0.7. The carrier lifetimes measurements by Microwave Detected Photoconductivity (MDP) showed an improvement of lifetime to 142 μs for nominal value x = 0.9 compared to 76 μs in case of MAPbI3film. Correspondingly we see a 160 mV improvement in open-circuit voltage (VOC) in the solar cells fabricated with nominal value x = 0.9 (VOC= 1.07 V) as compared to standard MAPbI3cells (VOC= 0.90 V). The champion cell with nominal value x = 0.9 shows PCE of 14.2% where as the best PCE of MAPbI3cell is 14.50% under a reverse scan.
机译:当今性能最好的钙钛矿太阳能电池利用Pb2 +作为主要的二价阳离子来源,但是,有毒Pb的存在是使其在严峻海峡中商业化的主要问题。在本报告中,我们揭露了Mg / Pb二元金属混合卤化物钙钛矿的化学合成和表征,化学组成为CH3NH3PbxMg1-xI3-yy,其中MgCl2为组成梯度,标称值x从0.1到0.9。与较高比例的Cl-(或MgCl2)相对应的成分的FESEM图像表明,颗粒(或晶粒)的尺寸有所改善,约为-8-12μm。通过EDX分析获得的Pb:Mg的化学计量比与结合的Pb:Mg的化学计量比非常相似。此外,在组成x == 0.5的XPS测量光谱中,除Pb(4f)和I(3d)以外的Mg(2p)和Cl(2p)的核心能级电子的特征光谱峰增强了Mg和Cl的结合。这些二价Mg / Pb钙钛矿带隙在1.57–1.59 eV范围内,对于单结模块,其潜在的毒性潜力相对较小。室温下的IR研究表明,在比较两个极端组成即x = 0.1和x = 1.0时,峰位置可观察到位移。值得注意的是,标称值x == 0.7的标准CH3NH3PbI3和二元Mg / Pb钙钛矿都具有相当的热稳定性,但是,组成x == 0.1的热稳定性低于x == 0.7。通过微波检测光电导率(MDP)进行的载流子寿命测量表明,标称值x == 0.9时,寿命提高到142µs,而MAPbI3膜的寿命是76µs。相应地,我们看到,与标准MAPbI3电池(VOC = 0.90 comparedV)相比,标称值为x =(0.9(VOC = 1.07 V)的太阳能电池的开路电压(VOC)提高了160 mV。标称值x = 0.9的冠军细胞显示PCE为14.2%,而MAPbI3cell的最佳PCE在反向扫描下为14.50%。

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