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Electrical and chemical properties of vacancy-ordered lead free layered double perovskite nanoparticles

机译:电和化学性质vacancy-ordered无铅分层的两倍纳米钙钛矿

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摘要

In this work we synthesized vacancy-ordered lead-free layered double perovskite (LDP) nanoparticles. This structure consists of two layers of trivalent metal halide octahedra [B(iii)X6]3− separated by a layer of divalent metal [B(ii)X6]4− (B is a divalent or trivalent metal). The chemical formula of this structure is based on A4B(ii)B(iii)2X12 where A is Cs, B(iii) is Bi, X is Cl and B(ii) is a different ratio between Mn2+ and Cd2+. Well-defined colloidal nanoplates of Cs4CdxMn1−xBi2Cl12 were successfully synthesized. These nanoplates show photoluminescence (PL) in the orange to red region that can be tuned by changing the Cd/Mn ratio. High resolution scanning transmission electron microscopy (HR-STEM) and atomic resolution elemental analysis were performed on these lead free LDP nanoplates revealing two different particle compositions that can be controlled by the Cd/Mn ratio. Ultraviolet Photoelectron Spectroscopy (UPS) and scanning tunneling spectroscopy (STS) reveal the band gap structure of these LDP nanoplates. Density functional theory (DFT) calculations show the existence of [MnCl6]4− in-gap states. While the absorption occurs from the valence band maximum (VBM) to the conduction band minimum (CBM), the emission may occur from the CBM to an in-gap band maximum (IGM), which could explain the PL in the orange to red region of these nanoplates. This work provides a detailed picture of the chemical and electronic properties of LDP nanoparticles.
机译:在这个工作我们合成vacancy-ordered无铅分层双钙钛矿(LDP)纳米粒子。层三价金属卤化物正八面体[B (iii) X6] 3−隔着一层二价金属(B (2) X6) 4−(B是一个二价或三价金属)。基于A4B (ii) B (3) 2 x12的Cs, B (3)是Bi, X是Cl和B (ii)是一个不同的比率Mn2 + Cd2 +。的nanoplates Cs4CdxMn1−xBi2Cl12成功地合成。橙色,红色光致发光(PL)区域,可以通过改变Cd /锰来调谐比率。电子显微镜(HR-STEM)和原子元素分析进行决议这些领导自由自民党nanoplates揭示两种不同的粒子组成,可以由Cd / Mn率控制。光电子能谱(UPS)和扫描隧穿谱(STS)揭示了带隙这些自民党nanoplates结构。泛函理论(DFT)计算显示的存在[MnCl6] 4−空缺状态。从价带最大吸收发生(VBM)传导带最小(CBM)煤层气的排放可能发生空隙的乐队最大(IGM),这可能解释的PL这些nanoplates的橙色,红色区域。化学的工作提供了一个详细的图片自民党和电子性质的纳米粒子。

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