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Eu3+掺杂Y2O3纳米晶体的溶剂热合成与表征

Solvothermal synthesis and characterization of Eu3+ doped Y2O3 nanocrystals.

作者信息

Devaraju Murukanahally Kempaiah, Yin Shu, Sato Tsugio

机构信息

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, 2-1-1, Katahira, Aoba-Ku, Sendai 980-8577, Japan.

出版信息

J Nanosci Nanotechnol. 2010 Feb;10(2):731-8. doi: 10.1166/jnn.2010.1814.

Abstract

A solvothermal refluxing system containing of ethylene glycol and ethylene glycol-hexane mixed organic solvents were used to prepare Eu3+ doped Y2O3 nanocrystals via solvothermal refluxing reaction-calcinations method. In the presence of ethylene glycol, the reaction temperature required for the preparation of Y(OH)3 precursor crystal is 170 degrees C but in ethylene glycol-hexane mixed organic solvents, the synthesis temperature was reduced to 70 degrees C. The Y(OH)3 precursor particles were calcinated at 600-1200 degrees C in air to prepare nanosized Eu3+ doped Y2O3 red phosphor. The as prepared particles by refluxing in ethylene glycol followed by calcination showed 20-60 nm in diameter. For the characterization, XRD, TG-DTA, EDS, FTIR, TEM and PL measurements were employed. The as prepared sample by refluxing in ethylene glycol-hexane mixed solvents exhibited strong red emission around 610 nm under 254 nm xenon light excitation and photoluminescence property was compared with reference sample (5 mol% Eu3+:Y2O3) prepared via conventional co-precipitation method followed by calcinations at 800 degrees C for 5 h in air.

摘要

采用包含乙二醇以及乙二醇 - 己烷混合有机溶剂的溶剂热回流体系,通过溶剂热回流反应 - 煅烧法制备Eu³⁺掺杂的Y₂O₃纳米晶体。在乙二醇存在的情况下,制备Y(OH)₃前驱体晶体所需的反应温度为170℃,但在乙二醇 - 己烷混合有机溶剂中,合成温度降至70℃。将Y(OH)₃前驱体颗粒在空气中600 - 1200℃煅烧,以制备纳米尺寸的Eu³⁺掺杂Y₂O₃红色荧光粉。通过在乙二醇中回流然后煅烧制备的颗粒直径为20 - 60nm。为进行表征,采用了XRD、TG - DTA、EDS、FTIR、TEM和PL测量。通过在乙二醇 - 己烷混合溶剂中回流制备的样品在254nm氙灯激发下在610nm左右表现出强烈的红色发射,并将其光致发光性能与通过传统共沉淀法制备、然后在空气中800℃煅烧5h的参比样品(5mol% Eu³⁺:Y₂O₃)进行了比较。

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