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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >An unusal strategy of Ca2+ heterovalent doping enabled upconversion enhancement of Er3+ in bismuth oxychloride layered semiconducting crystals
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An unusal strategy of Ca2+ heterovalent doping enabled upconversion enhancement of Er3+ in bismuth oxychloride layered semiconducting crystals

机译:Ca2 +异拷贝掺杂的非态策略使得氧化铋层状半导体晶体中ER3 +的上增强增强

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Substitutional heterovalent doping has been considered as an effective method to control optical properties of lanthanide doped phosphors in the past, but it focuses only on three-dimensional and insulating crystal hosts. This study aimed to report the efficient upconversion enhancement of Er3+ induced by a new strategy of Ca2+ heterovalent doping in the layered semiconducting host based on BiOCl crystals concentrated by van der Waals force. The surface photovoltage (SPV) tests, theoretical calculations and optical probing effect of Eu3+ ions provided evidence that the replacement of Bi3+ with Ca2+ strengthened the macroscopic polarization and the corresponding spontaneous internal electric field (IEF) along the [001] of the BiOCl crystal sheet. The upconversion (UC) red and green emission intensities of the sample co-doped with 10 mol% Ca2+ ions were enhanced 39 and 12 times, respectively, compared with those of the Ca2+-free sample. Moreover, this study showed that the higher separation efficiency of photocarriers led to the prolongation of the decay time of excited energy levels under the strengthened intrinsic IEF by Ca2+-heterovalent doping, which was partially responsible for the UC photoluminescence (PL) enhancement of Er3+. This work not only provided new insight into the method for the engineering of UC emissions but also enhanced the understanding of layered semiconducting materials to modify the transition of lanthanide ions. (C) 2020 Published by Elsevier B.V.
机译:取代异价掺杂被认为是控制稀土掺杂磷光体光学性质的有效方法,但它只关注三维和绝缘晶体主体。本研究旨在报道在基于范德华力浓缩的BiOCl晶体的层状半导体基质中,Ca2+异价掺杂的新策略诱导Er3+的高效上转换增强。Eu3+离子的表面光电压(SPV)测试、理论计算和光学探测效应提供了证据,表明Bi3+被Ca2+取代,增强了BiOCl晶体片[001]的宏观极化和相应的自发内电场(IEF)。与无Ca2+的样品相比,共掺杂10 mol%Ca2+离子的样品的上转换(UC)红色和绿色发射强度分别提高了39倍和12倍。此外,本研究还表明,较高的光载流子分离效率导致在Ca2+杂价掺杂增强的本征IEF下激发能级的衰减时间延长,这部分是导致Er3+的UC光致发光(PL)增强的原因。这项工作不仅为UC发射的工程设计方法提供了新的见解,而且还增强了对层状半导体材料的理解,以改变镧系离子的转变。(C) 2020年爱思唯尔公司出版。

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