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Surface lattice enhancement of red-emitting fluorides enabled by embedding small cations
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作者 Pingping Wan Chen Yang +3 位作者 Aolin Wang Liping Yu Shixun Lian Wenli Zhou 《Inorganic Chemistry Frontiers》 2023年第17期5089-5097,共9页
The poor moisture resistance of Mn^(4+)-activated fluoride red phosphors restricts their practical applications.Herein,this work proposes the embedment of small radius cations(Si^(4+)or Ge^(4+))into the inert shell(K_... The poor moisture resistance of Mn^(4+)-activated fluoride red phosphors restricts their practical applications.Herein,this work proposes the embedment of small radius cations(Si^(4+)or Ge^(4+))into the inert shell(K_(2)TiF_(6))constructed on the surface of K_(2)TiF_(6):Mn^(4+)particles,which increases the covalence of the surface lattice and thus leads to a significant improvement of the stability of the fluoride.By using multidimensional microstructural characterization techniques,we confirmed the construction of a heterogeneous shell(K_(2)Ti_(1−x)Si_(x)F_(6) and K_(2)Ti_(1−y)Ge_(y)F_(6))and systematically investigated the construction process.Compared to the untreated K_(2)TiF_(6):Mn^(4+),the external quantum efficiencies of the K_(2)TiF_(6):Mn^(4+)@K_(2)Ti_(1−x)Si_(x)F_(6) and K_(2)TiF_(6):Mn^(4+)@K_(2)Ti_(1−y)Ge_(y)F_(6) heterogeneous core–shell particles improved by 2–3%,and 99%and 88%of the initial luminescence intensity were maintained after boiling in water for 50 min,respectively,which are significantly better than that(25%)of the homogeneous K_(2)TiF_(6):Mn^(4+)@K_(2)TiF_(6).The aging of red and white light-emitting diode devices at a high temperature(85℃)and a high humidity(85%)shows that the heterogeneous core–shell structures have higher stability than their homogeneous counterparts.The surface lattice enhancement strategy proposed in this work is useful as a reference for improving the properties of other under-stable materials. 展开更多
关键词 surface lattice enhancement increases covalence surface lattice multidimensional microstructural characterization techniqueswe small cations embedding moisture resistance Mn activated fluoride red phosphors embedment small radius cations si inert shell k tif constructed
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