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Phase transition of Er3+-doped Al2O3 powders prepared by the non-aqueous sol-gel method

机译:非水溶胶-凝胶法制备掺Er3 +的Al2O3粉末的相变

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The Er3+-doped Al2O3 powders have been prepared by the non-aqueous sol-gel method using the aluminum isopropoxide as precursor, acetylacetone as chelating agent, nitric acid as catalyzer, and hydrated erbium nitrate, as dopant under isopropanol environment. The phase structure and phase transition of the Er3+-doped Al2O3 powders were investigated by using thermogravimetry/differential thermal analysis (TG/DTA), Fourier transform infrared spectroscopy (FT-IR), and X-ray diffraction (XRD). The phase contents diagram for the Er-doped Al-O system with the doping concentration up to 5 mol% was described at the sintering temperature from 550 to 1250 degrees C. There were the three crystalline types of Er3+-doped Al2O3 phases, gamma-, theta- and alpha-(Al, Er)(2)O-3, and the two relative stoichiometric compounds composed of Al, Er, and O, ErAlO3 and Al10Er6O24 phases in the Er-Al-O phase contents diagram. The Er3+ doping suppressed crystallization of the gamma and theta phases and delayed phase transition of the gamma -> theta and theta -> alpha. The increased Er3+ doping concentration and the elevated sintering temperature enhanced the precipitation of the ErAlO3 and Al10Er6O24 phases. The preparation procedure for the Er3+-doped Al2O3 powders in the non-aqueous sol-gel process, including chelating, hydrolysis, peptization, doping and gelation, has a significant effect on the phase formation and its transition for the Er3+-doped Al2O3 powders. (c) 2005 Published by Elsevier B.V.
机译:在异丙醇环境下,以异丙醇铝为前驱体,乙酰丙酮为螯合剂,硝酸为催化剂,水合硝酸er作为掺杂剂,通过非水溶胶-凝胶法制备了掺Er3 +的Al2O3粉体。通过热重/差热分析(​​TG / DTA),傅立叶变换红外光谱(FT-IR)和X射线衍射(XRD)研究了掺Er3 +的Al2O3粉末的相结构和相变。描述了在550到1250摄氏度的烧结温度下,掺杂浓度最高为5 mol%的Er掺杂Al-O系统的相含量图。Er3+掺杂Al2O3相共有三种晶型,即γ- ,theta和alpha-(Al,Er)(2)O-3,以及在Er-Al-O相含量图中由Al,Er和O,ErAlO3和Al10Er6O24相组成的两种相对化学计量的化合物。 Er3 +掺杂抑制了γ和theta相的结晶,并延迟了γ-> theta和theta-> alpha的相变。增加的Er3 +掺杂浓度和升高的烧结温度提高了ErAlO3和Al10Er6O24相的沉淀。掺螯合,水解,胶溶,掺杂和胶凝的非水溶胶-凝胶法制备掺Er3 +的Al2O3粉末的过程对掺Er3 +的Al2O3粉末的相形成及其过渡具有重要影响。 (c)2005年由Elsevier B.V.

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