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用于新兴固态照明应用的高效绿光发射CaY(VO)∶Er纳米磷光体的晶相细化与光学特性

Crystal Phase Refinement and Optical Features of Highly Efficient Green Light Radiating CaY(VO): Er Nanophosphors for Emerging Solid-state Lighting Applications.

作者信息

Devi Poonam, Sehrawat Priyanka, Dalal Hina, Sheoran Monika, Kumari Neelam, Malik Rajesh Kumar

机构信息

Department of Chemistry, Maharshi Dayanand University, Rohtak, 124001, India.

Department of Chemistry, Aggarwal College, 121004, Ballabgarh, Faridabad, India.

出版信息

J Fluoresc. 2024 May;34(3):1241-1252. doi: 10.1007/s10895-023-03356-3. Epub 2023 Jul 31.

DOI:10.1007/s10895-023-03356-3
PMID:37523137
Abstract

CaY(VO) phosphor activated with Er ions have been developed by the urea-aided solution combustion technique. XRD profiles assisted with Rietveld refinement executed over-developed Er-activated CaY(VO) powder, revealed a trigonal phase with the R3c space group. The electron microscope techniques namely TEM and SEM characterize the size and surface-linked qualities of the developed nanopowder, respectively. The uniform distribution of various elements in the nanocrystalline sample is authenticated by an energy-dispersive spectroscopy (EDS) system. The E (band gap) value of 3.64 eV for CaYEr(VO) and 3.74 eV for CaY(VO) has been estimated. Upon 382 nm excitation, Er: CaY(VO) phosphor gives rise to the bright green emission owing to the S → I transition. The concentration quenching after 10 mol% composition of trivalent erbium ions is attributed to dipole-dipole interlinkages in accordance with Dexter's theory. The radiative lifetime (1.1083 ms), non-radiative rates (0.2079 ms), quantum efficiency (79%), along with colorimetric parameters i.e. CIE x (= 0.2577), y (= 0.4566), and CCT quantities offer CaYEr(VO) as a proficient green radiating nanomaterial for RGB phosphors in solid-state applications.

摘要

通过尿素辅助溶液燃烧技术制备了掺铒离子的CaY(VO)荧光粉。对制备的掺铒CaY(VO)粉末进行Rietveld精修辅助的XRD分析,结果表明其为具有R3c空间群的三角相。电子显微镜技术(即TEM和SEM)分别表征了所制备纳米粉末的尺寸和表面相关性质。通过能量色散光谱(EDS)系统验证了纳米晶样品中各种元素的均匀分布。已估算出CaYEr(VO)的E(带隙)值为3.64 eV,CaY(VO)的E(带隙)值为3.74 eV。在382 nm激发下,Er:CaY(VO)荧光粉由于S→I跃迁而产生亮绿色发射。根据德克斯特理论,三价铒离子组成在10 mol%后出现的浓度猝灭归因于偶极-偶极相互作用。辐射寿命(1.1083 ms)、非辐射速率(0.2079 ms)、量子效率(79%)以及色度参数(即CIE x(=0.2577)、y(=0.4566))和CCT值表明CaYEr(VO)是一种用于固态应用中RGB荧光粉的高效绿色发光纳米材料。

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