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通过溶液相中的可控氟化反应,从三氟乙酸盐络合物前驱体合成具有多种形状的单分散稀土氟化物和氟氧化物纳米晶体。

From trifluoroacetate complex precursors to monodisperse rare-earth fluoride and oxyfluoride nanocrystals with diverse shapes through controlled fluorination in solution phase.

作者信息

Sun Xiao, Zhang Ya-Wen, Du Ya-Ping, Yan Zheng-Guang, Si Rui, You Li-Ping, Yan Chun-Hua

机构信息

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Rare Earth Materials Chemistry and Applications, PKU-HKU Joint Laboratory in Rare Earth Materials and Bioinorganic Chemistry, Peking University, Beijing 100871, P.R. China.

出版信息

Chemistry. 2007;13(8):2320-32. doi: 10.1002/chem.200601072.

Abstract

We report the first systematic synthesis of monodisperse rare-earth (RE=La to Lu, Y) fluoride and oxyfluoride nanocrystals with diverse shapes (trigonal REF3 triangular, truncated-triangular, hexagonal, and polygonal nanoplates; orthorhombic REF3 quadrilateral and zigzag-shaped nanoplates; cubic REOF nanopolyhedra and nanorods) from single-source precursors (SSP) of [RE(CF(3)COO)(3)] through controlled fluorination in oleic acid (OA)/oleylamine (OM)/1-octadecene (ODE). To selectively obtain REF3 or REOF nanocrystals, the fluorination of the RE-O bond to the RE-F bond at the nucleation stage was controlled by finely tuning the ratio of OA/ODE or OA/OM, and the reaction temperature. For phase-pure REF3 or REOF naocrystals, their shape-selective syntheses could be realized by further modifying the reaction conditions. The two-dimensional growth of the REF3 nanoplates and the one-dimensional growth of the REOF nanorods were likely due to the selective adsorption of the capping ligands on specific crystal planes of the nanocrystals. Those well-shaped nanocrystals with diverse geometric symmetries (such as D(3h), D(6h), C(2h), O(h), and D(nh)) displayed a remarkable capability to form self-assembled superlattices. By manipulating the solvent-substrate combination, the plate-shaped REF3 nanocrystals could form highly ordered nanoarrays by means of either the face-to-face formation or the edge-to-edge formation. By using this SSP strategy, we also obtained high-quality LaF3:Eu and LaF3:Eu/LaF3 triangular nanoplates that showed photoluminescent red emissions of Eu3+ ions sensitive to the surface effect.

摘要

我们报道了首例通过[RE(CF(3)COO)(3)]单源前驱体(SSP)在油酸(OA)/油胺(OM)/1-十八烯(ODE)中进行可控氟化反应,系统合成具有多种形状(三角REF3三角形、截角三角形、六边形和多边形纳米片;正交REF3四边形和之字形纳米片;立方REOF纳米多面体和纳米棒)的单分散稀土(RE = La至Lu、Y)氟化物和氟氧化物纳米晶体。为了选择性地获得REF3或REOF纳米晶体,在成核阶段通过精细调节OA/ODE或OA/OM的比例以及反应温度,控制RE - O键向RE - F键的氟化反应。对于相纯的REF3或REOF纳米晶体,通过进一步改变反应条件可实现其形状选择性合成。REF3纳米片的二维生长和REOF纳米棒的一维生长可能是由于封端配体在纳米晶体特定晶面上的选择性吸附。那些具有多种几何对称性(如D(3h)、D(6h)、C(2h)、O(h)和D(nh))的形状规整的纳米晶体表现出显著的形成自组装超晶格的能力。通过操控溶剂 - 基底组合,板状REF3纳米晶体可通过面对面或边对边的方式形成高度有序的纳米阵列。利用这种SSP策略,我们还获得了高质量的LaF3:Eu和LaF3:Eu/LaF3三角形纳米片,它们显示出对表面效应敏感的Eu3 +离子的光致发光红色发射。

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