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Preparation and characterisation of nanostructural TiO2-Er2O3 binary oxides with high surface area derived from particulate sol-gel route

机译:颗粒溶胶-凝胶法制备高表面积纳米结构TiO 2 -Er 2 O 3 二元氧化物的制备与表征

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Nanostructured and nanoporous TiO2-Er2O3 films and powders with various TiO2 : Er2O3 molar ratios and high specific surface area (SSA) have been prepared by a new straightforward particulate sol-gel route. X-ray diffraction and Fourier transform infrared spectroscopy revealed that erbium oxide formed in the range 50-100 mol.-%Er2O3, whereas erbium dititanate formed in the range 25-100 mol.-%Er2O3. Oxygen deficient titania phases (TiO2−x), such as Ti7O13 and Ti2O3, were observed for TiO2 : Er2O3=25 : 75 (molar ratio) system annealed at 800°C. It was observed that Er2O3 retarded anatase to rutile transformation. Furthermore, TEM analysis also showed that Er2O3 hindered the crystallisation and crystal growth of powders. Specific surface area of powders measured by Brunauer-Emmett-Teller analysis was enhanced by introducing Er2O3. TiO2 : Er2O3=25 : 75 (molar ratio) system annealed at 500°C produced the smallest crystallite size (1·2 nm), the smallest grain size (17 nm), the highest SSA (174 m2 g−1) and the highest roughness. TiO2 : Er2O3=50 : 50 (molar ratio) system annealed at 800°C showed the smallest crystallite size (4·3 nm), the highest SSA (44 m2 g−1), the highest roughness with 32 nm average grain size. One of the smallest crystallite sizes and one of the highest SSA reported in the literature are obtained, and they can be used in many applications in areas from optical electronics to gas sensors.
机译:纳米结构且具有纳米孔的TiO 2 -Er 2 O 3 薄膜和具有各种TiO 2 的粉末:Er 通过新的简单的颗粒溶胶-凝胶法制备了2 O 3 摩尔比和高比表面积(SSA)。 X射线衍射和傅里叶变换红外光谱表明,形成的氧化er的范围为50-100 mol .-%Er 2 O 3 ,而二钛酸nate的形成范围为25-100 mol .-%Er 2 O 3 。 Ti 7 O 13 和Ti 2 O <等缺氧二氧化钛相(TiO 2-x ) sub> 3 ,观察到TiO 2 :Er 2 O 3 = 25:75(摩尔比)系统于800℃。观察到Er 2 O 3 抑制了锐钛矿向金红石的转化。此外,TEM分析还表明,Er 2 O 3 阻碍了粉末的结晶和晶体生长。通过引入Er 2 O 3 可以提高通过Brunauer-Emmett-Teller分析测得的粉末比表面积。 TiO 2 :Er 2 O 3 = 25:75(摩尔比)体系在500°C退火产生最小的晶粒尺寸(1&middot2 nm ),最小的晶粒尺寸(17 nm),最高的SSA(174 m 2 g -1 )和最高的粗糙度。 TiO 2 :Er 2 O 3 = 50:50(摩尔比)体系在800°C退火时显示出最小的微晶尺寸(4· 3 nm),最高SSA(44 m 2 g -1 ),最高粗糙度和32 nm平均晶粒尺寸。获得了文献中报道的最小的微晶尺寸之一和最高的SSA之一,它们可用于从光学电子到气体传感器等许多领域。

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