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Preparation, characterization and photoluminescence properties of SiO2 and SiO2:Eu3+ submicron rods

机译:SiO2和SiO2:Eu3 +亚微米棒的制备,表征和光致发光性能

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SiO2 and Eu3+-doped SiO2 submicron rods were conveniently fabricated via a sol gel process at room temperature. In this process, citric acid served as a unique structural modifier through hydrolysis of TEOS at alkaline condition to obtain the silica submicron rods. The morphology of the products was sensitive to the conditions, such as stirring, gelation time and the dropping speed of NH4OH. By sampling the products at different reaction times, we discussed the formation and growing mechanism of SiO2:Eu3+ submicron rods in detail. The weak interactions between ammonium citrate crystals and silica species may be the reasons of the rods formation. The obtained silica submicron rods were 5-6 mu m in length and 650-750 nm in width and there was no obvious change after doping. Under UV light excitation, the undoped silica submicron rods exhibited blue emission, which may be associated with defect centers in the structures of the products. The Eu3+-doped silica submicron rods exhibited red emission, which was due to the 4f -> 4f transition of Eu3+. The effect of different doping concentrations of Eu3+ ions on the luminescence was investigated. The samples were characterized by X-ray diffraction (XRD), Fourier transform infrared spectrum (FT-IR), Thermo-gravimetry Analysis (TGA), Scanning electron microscope (SEM), Transmission electron microscope (TEM), Energy-dispersive spectroscopy (EDS) and Photoluminescence spectrum. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:SiO2和Eu3 +掺杂的SiO2亚微米棒可通过溶胶凝胶法在室温下方便地制备。在此过程中,柠檬酸通过在碱性条件下水解TEOS来获得独特的结构改性剂,从而获得二氧化硅亚微米棒。产物的形态对条件敏感,例如搅拌,胶凝时间和NH 4 OH的滴加速度。通过在不同反应时间对产物进行采样,我们详细讨论了SiO2:Eu3 +亚微米棒的形成和生长机理。柠檬酸铵晶体与二氧化硅之间的弱相互作用可能是形成棒的原因。得到的二氧化硅亚微米棒的长度为5-6μm,宽度为650-750nm,掺杂后没有明显变化。在紫外光激发下,未掺杂的二氧化硅亚微米棒表现出蓝色发射,这可能与产品结构中的缺陷中心有关。掺杂Eu3 +的二氧化硅亚微米棒显示红色发射,这是由于Eu3 +的4f-> 4f跃迁。研究了不同掺杂浓度的Eu3 +离子对发光的影响。通过X射线衍射(XRD),傅立叶变换红外光谱(FT-IR),热重分析(TGA),扫描电子显微镜(SEM),透射电子显微镜(TEM),能量色散光谱( EDS)和光致发光光谱。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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