材料科学
光致发光
荧光粉
发光二极管
二极管
发光效率
氟化物
热稳定性
光电子学
化学工程
水解
纳米技术
无机化学
化学
工程类
生物化学
图层(电子)
作者
Jing Yang,Peilan Luo,Pingping Wan,Menglin Ye,Zhongxian Qiu,Jilin Zhang,Shixun Lian,Chengzhi Li,Wenli Zhou
标识
DOI:10.1016/j.ceramint.2021.11.038
摘要
Poor water stability is the main problem of commercialized Mn4+-doped fluorides for white light emitting diode (WLED) application. This work proposes a surface engineering strategy to rebuild a Mn4+-free fluoride shell on fluorides to effectively resist the destruction from water molecules. By simple processing using glyoxylic acid (GA) solution, the moisture resistance of the red-emitting fluorides can be significantly improved. The photoluminescence (PL) quantum efficiency (QE) of the surface-engineered K2SiF6:Mn4+ (KSFM-GA) still maintain 98.43% after water immersion for 360 h, in sharp contrary to the untreated one (its PLQE decreases to 59.79%). Additionally, PL intensity of the hydrolyzed KSFM can be recovered to 99.1% through the treatment of the reducing GA solution. By using the high-stability KSFM-GA red phosphor, the as-fabricated high-performance warm-WLED device can still maintain 84.6% in luminous efficacy, higher than that (79.6%) with the untreated KSFM, after 500 h of aging in a high temperature (85 °C) and high humidity (85%) environment.
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