首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Optically active uniform potassium and lithium rare earth fluoride nanocrystals derived from metal trifluroacetate precursors
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Optically active uniform potassium and lithium rare earth fluoride nanocrystals derived from metal trifluroacetate precursors

机译:源自金属三氟乙酸盐前体的光学活性均匀的钾和锂稀土氟化物纳米晶体

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摘要

This paper reports the first systematical synthesis of near-monodisperse potassium and lithium rare earth (RE) fluoride (K(Li)REF4) nanocrystals with diverse shapes (cubic KLaF4 and KCeF4 wormlike nanowires, nanocubes and nanopolyhedra; cubic LiREF4 (RE = Pr to Gd, Y) nanopolyhedra; tetragonal LiREF4 (RE = Tb to Lu, Y) rhombic nanoplates) via co-thermolysis of Li(CF3COO) or K(CF3COO) and RE(CF3COO)(3) in a hot oleic acid/oleylamine/1-octadecene solution. The effects of the solvent composition, reaction temperature and time on the crystal phase purity, shape, and size of the as-prepared nanocrystals have been investigated in detail. The formation of monodisperse nanocrystals is found to strongly depend upon the nature of both alkali metals from Li to K, and the rare earth series from La to Lu and Y. Based on the series of experimental results, a controlled-growth mechanism has also been proposed. In addition, the ease of doping of these as-synthesized host nanocrystals for designed luminescence properties is assessed. For example, monodisperse and single-crystalline Eu3+ doped KGdF4, Yb3+ and Er3+ co-doped LiYF4 nanocrystals redispersed in cyclohexane exhibit visible room-temperature red and green emissions under ultraviolet (UV) excitation and near infrared (NIR) 980 nm laser excitation, respectively.
机译:本文报道了具有各种形状(立方KLaF4和KCeF4蠕虫状纳米线,纳米立方体和纳米多面体;立方LiREF4(RE = Pr to Gd,Y)纳米多面体;通过在热油酸/油胺/中对Li(CF3COO)或K(CF3COO)和RE(CF3COO)(3)进行共热解,形成四方LiREF4(RE = Tb对应Lu,Y)菱形纳米板)。 1-十八碳烯溶液。已经详细研究了溶剂组成,反应温度和时间对所制备纳米晶的晶相纯度,形状和尺寸的影响。发现单分散纳米晶体的形成强烈地依赖于从Li到K的两种碱金属的性质,以及从La到Lu和Y的稀土系列。基于一系列的实验结果,也已经控制了增长的机理。建议。另外,评估了为设计的发光特性掺杂这些刚合成的主体纳米晶体的难易程度。例如,单分散和单晶掺杂Eu3 +的KGdF4,Yb3 +和Er3 +共掺杂的LiYF4纳米晶体重新分散在环己烷中,在紫外(UV)激发和近红外(NIR)980 nm激光激发下分别显示可见的室温红色和绿色发射。 。

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