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首页> 外文期刊>Nanotechnology >Doping Mn2+ in hybrid Ruddlesden-Popper phase of layered double perovskite (BA)(4)AgBiBr8
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Doping Mn2+ in hybrid Ruddlesden-Popper phase of layered double perovskite (BA)(4)AgBiBr8

机译:层状双钙钛矿(BA)(4)AgBiBr8杂化Ruddlesden-Popper相中掺杂Mn2+

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The layered hybrid double perovskites emerged as excellent semiconductor materials owing to their environment compatibility and stability. However, these materials are weakly luminescent, and their photoluminescence (PL) properties can be modulated via doping. While Mn2+ doping in perovskites is well known, but to the best of our knowledge the doping of Mn2+ in layered double perovskites (LDPs) is yet to be explored. Herein, for the first time, we demonstrate the doping of Mn2+ in hybrid inorganic-organic two-dimensional (2D) LDPs, (BA)(4)AgBiBr8 (BA = n-butyl amine) via a simple solid-state mechanochemical route. The powder x-ray diffraction pattern, and electron paramagnetic resonance analysis confirm the successful incorporation of Mn2+ ions inside (BA)(4)AgBiBr8 lattice. The Mn2+ doped 2D LDP shows energy transfer from host excitons to d-electrons of Mn2+ ions, which results in red-shifted broad Mn2+ emission band centered at 625 nm, attributed to the spin-forbidden T-4(1) to (6)A(1) internal transition. This work opens up new possibilities to dope metal ions in 2D LDPs to tune the optical as well as magnetic properties.
机译:层状杂化双钙钛矿因其环境相容性和稳定性而成为优良的半导体材料。然而,这些材料的发光较弱,它们的光致发光(PL)特性可以通过掺杂来调制。虽然钙钛矿中Mn2+的掺杂是众所周知的,但据我们所知,层状双钙钛矿(LDP)中Mn2+的掺杂还有待探索。在此,我们首次通过简单的固态机械化学路线证明了Mn2+在杂化无机-有机二维(2D)LDPs(BA)(4)AgBiBr8(BA=正丁胺)中的掺杂。粉末X射线衍射图和电子顺磁共振分析证实了Mn2+离子成功掺入(BA)(4)AgBiBr8晶格内。Mn2+掺杂的二维LDP显示出从主激子到Mn2+离子的d电子的能量转移,这导致以625 nm为中心的宽Mn2+发射带红移,这归因于自旋禁止的T-4(1)到(6)A(1)内部跃迁。这项工作为在2D LDP中掺杂金属离子以调整光学和磁性开辟了新的可能性。

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