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关于Yb Bi VO:Tm固溶体的系统研究:上转换光致发光特性的实验与密度泛函理论计算

Systematic studies on Yb Bi VO:Tm solid solutions: experiments and DFT calculations on up-conversion photoluminescence properties.

作者信息

Yi Juan, Zhao Zong-Yan, Wang Yu-An

机构信息

Faculty of Materials Science and Engineering, Kunming University of Science and Technology Kunming 650093 P. R. China

Shenzhen Water (Group) Co., Ltd. Shenzhen 518026 P. R. China.

出版信息

RSC Adv. 2018 Jan 2;8(2):596-605. doi: 10.1039/c7ra10534g.

DOI:10.1039/c7ra10534g
PMID:35538979
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9076974/
Abstract

Compound solid solutions have attracted intensive attention due to their adjustable structure, electronic structure, and optical properties. Despite tremendous advances in compound solid solution preparations, combining a rare metal compound and a bismuth compound with the same crystal phase by forming a compound solid solution is still challenging but fascinating. For example, RE Bi VO with a zircon-type structure exhibits tunable band gaps and photoluminescence performance with varying RE compositions. Herein, Yb Bi VO solid solutions with continuous monophasic phase prepared by a facile synthesis strategy that is combined with co-precipitation and hydrothermal methods are reported. By doping a small amount of Tm, Yb Bi VO solid solutions can achieve a broad range up-conversion photoluminescence from UV-light to NIR-light. Combined with DFT calculations, the underlying mechanism of experimental observations is explained. In these up-conversion processes, the existence of Tm is an essential factor. In particular, the NIR-to-UV up-conversion photoluminescence of Yb Bi VO: 2 mol% Tm solid solution is very interesting and a worthy phenomenon for further studies. As such, designing compound solid solutions may provide a new avenue for controllable up-conversion efficiencies in semiconductor nanocrystals and also a novel insight into the rational tunable up-conversion process for applications in biological labeling and imaging.

摘要

复合固溶体因其可调节的结构、电子结构和光学性质而备受关注。尽管在复合固溶体制备方面取得了巨大进展,但通过形成复合固溶体将具有相同晶相的稀有金属化合物和铋化合物结合起来仍然具有挑战性但很吸引人。例如,具有锆石型结构的RE Bi VO表现出随RE组成变化的可调带隙和光致发光性能。在此,报道了通过一种简便的合成策略制备的具有连续单相的Yb Bi VO固溶体,该策略结合了共沉淀法和水热法。通过掺杂少量Tm,Yb Bi VO固溶体可以实现从紫外光到近红外光的宽范围上转换光致发光。结合密度泛函理论计算,解释了实验观察结果的潜在机制。在这些上转换过程中,Tm的存在是一个关键因素。特别是,Yb Bi VO: 2 mol% Tm固溶体的近红外到紫外上转换光致发光非常有趣,是一个值得进一步研究的现象。因此,设计复合固溶体可能为半导体纳米晶体中可控的上转换效率提供一条新途径,也为生物标记和成像应用中合理可调的上转换过程提供新的见解。

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