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机构地区:[1]青岛科技大学材料科学与工程学院,青岛266042 [2]济南世纪创新水泥有限公司,济南250316
出 处:《现代技术陶瓷》2015年第4期1-5,共5页Advanced Ceramics
基 金:国家自然科学基金项目资助(51372127;51072086)
摘 要:采用溶胶-凝胶法合成SiO2包覆Gd2O3∶Eu3+球型核壳粒子,并对所得产物进行XRD,FT-IR,SEM,TEM,XDS,PL等测试。XRD结果显示:壳层Gd2O3∶Eu3+在600℃开始结晶,随着煅烧温度的升高结晶性提高。SEM,TEM测试结果显示所得核壳粒子具有高分散、均匀球型形貌、粒径大小300nm左右。在255nm的紫外光激发下,合成的荧光粉具有很强的610nm的特征红光。Gd2 O3 ∶ Eu3+ layers were deposited on monodisperse SiO2 particles via a sol - gel process ,resulting in the formation of Gd2 O3 ∶Eu3+ @ SiO2 core-shell particles with the size of 250 nm .The as-prepared samples were characterized by X -ray diffraction (XRD) ,Fourier transform infrared spectroscopy (FT -IR) ,scanning electron microscopy (SEM ) ,transmission electron micros‐copy (TEM ) ,Energy Dispersive X -Ray Spectroscopy (EDS) ,and photoluminescence spectra (PL) . The XRD results indicated the Gd2 O3 ∶Eu3+ layers began to crystallize on the silica surfaces at 600 ℃and the crystallinity increased with the elevation of annealing temperature .The SEM and TEM ima‐ges showed that obtained the core-shell particles were in spherical shape with narrow size distribu‐tion and non -agglomeration . Under the excitation of ultraviolet (255nm ) , the Eu3+ ion mainly showed its characteristic red (610nm ,5D0 -7 F2 ) emission in the core-shell particles from Gd2 O3 ∶Eu3+ shell .
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