Structural characterization, luminescence properties and applications of Eu3+ ion-doped bismuth molybdate phosphor via a molten salt-assisted approach

Author:

Li Yaoyao1,Li Huiya1,Wang Xiaomeng1,Zhang Zicheng1,Li Huiting1,Xie Jixing1,Ma Haiyun1,Han Yuanyuan1,Wang Chunzheng1,Wang Liyong1ORCID

Affiliation:

1. College of Chemistry and Materials Science, The Flame Retardant Material and Processing Technology Engineering Research Center, Medical Experimental Centre, Key Laboratory of Medicine Chemistry and Molecular Diagnosis, Ministry of Education, Hebei University, No. 180 Wusi Road, Baoding 071002, China

Abstract

A molten salt-assisted method for the synthesis of Eu[Formula: see text]-doped bismuth molybdate (BMO: Eu[Formula: see text]) phosphor was proposed. (BMO: Eu[Formula: see text]) phosphors with different phase structures were obtained by changing the calcination temperature. The applications in LED devices and latent fingerprint recognition of the obtained product were explored. The results of structural characterizations and scanning electron microscope (SEM) photographs analysis prove that the products exhibit different crystal structures and morphologies with the change of calcination temperature. Based on the above findings, the as-prepared products have potential applications in the field of WLED and potential fingerprint recognition.

Funder

National Natural Science Foundation of China

Students Research Fund and Graduate project Innovation of Hebei University

Medical Science Foundation of Hebei University

Multi-disciplinary Research Project of Hebei University

Beijing Tianjin Hebei Collaborative Innovation Community Construction Project

Key project of Natural Science Foundation of Hebei Province

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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