发光学报2026,Vol.47Issue(1):33-44,12.DOI:10.37188/CJL.20250212
流延法制备高性能BaMgSiO4基光致变色陶瓷
Preparation of High-performance BaMgSiO4-based Photochromic Ceramics by Tape-casting Method
摘要
Abstract
Inorganic photochromic materials have wide applications in intelligent displays,optical storage,optical switching,and so on.Currently,the main preparation method for photochromic ceramics is the solid-state method,however,the materials fabricated by this method still face poor mixing uniformity,low mass transfer efficiency,and inhomogeneity during the high-temperature sintering process.Additionally,it is difficult to prepare larger size sam-ples,then restricting their practical applications.In this work,a series of BaMgSiO4:0.5%Eu2+/x%Fe3+(mole fraction)photochromic ceramics were prepared using both the solid-state method and the tape-casting method.By comparing the ceramics prepared by these two methods,it was demonstrated that the tape-casting method can optimize the material's microstructure,thereby enhancing its color-changing and mechanical properties.In terms of mechanical properties,the ceramics prepared by the tape-casting method exhibit higher density and lower porosity;moreover,both their hardness and fracture toughness are superior to those of the ceramics prepared by the solid-state method.Further-more,the prepared BaMgSiO4-based ceramics possess excellent reversible photochromic properties.Under 365 nm ultraviolet(UV)or sunlight irradiation,these samples can change their colors from white to pink,and the coloration contrast reaches 92.9%.Additionally,they have a fast response speed,can realize the maximum coloration contrast within 6 s.Therefore,the tape-casting preparation method demonstrates significant prospects for photochromic mate-rials in ceramic backplanes and multi-functional display applications.关键词
光致变色陶瓷/流延法/变色对比度Key words
photochromic ceramics/tape-casting method/coloration contrast分类
数理科学引用本文复制引用
孙一贵,卢春晓,李帅,赵烨,银相宇,郭昱,李雍,张奇伟..流延法制备高性能BaMgSiO4基光致变色陶瓷[J].发光学报,2026,47(1):33-44,12.基金项目
中国北方稀土项目(BFXT-2023-D-0044) (BFXT-2023-D-0044)
国家自然科学基金(52562014)Supported by the Project of China Northern Rare Earth(BFXT-2023-D-0044) (52562014)
National Natural Science Foundation of China(52562014) (52562014)