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首页> 外文期刊>Russian Journal of Physical Chemistry >Influence of calcination temperature on the physical properties of nano-titania prepared by sol-gel/hydrothermal method
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Influence of calcination temperature on the physical properties of nano-titania prepared by sol-gel/hydrothermal method

机译:煅烧温度对溶胶-凝胶/水热法制备纳米二氧化钛物理性能的影响

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Nano-sized TiO2 powders were synthesized by a modified hydrolysis reaction using titanium butoxide as a precursor, water as a solvent, acetylacetone to slowdown the hydrolysis and the condensation reactions and ammonia as a base catalyst. Phase transformation and particle size of the calcined powders were investigated as a function of the calcination temperature by room-temperature X-ray diffraction; scanning electron microscopy and Fourier transform infrared spectroscopy techniques. Thermal gravimetric analysis (TGA) was used to examine the thermal properties of the produced TiO2 nanoparticles. The XRD showed that the uncalcined sample was mostly the anatase phase with some rutile content. It was indicated that the thermal annealing resulted in increasing the average crystallite size from 8.2 to 53.5 nm. As the calcination temperature increased, the particle size, the rutile phase, the crystallization of the anatase phase, and the agglomeration were increased. The increase in the rutile content and grain growth are caused by the calcination at higher temperatures even calcination at 800A degrees C for 2 h.
机译:纳米级TiO2粉末是通过使用丁醇钛作为前体,水作为溶剂,乙酰丙酮以减缓水解和缩合反应以及氨作为基础催化剂的改性水解反应合成的。通过室温X射线衍射研究煅烧粉末的相变和粒度与煅烧温度的关系。扫描电子显微镜和傅立叶变换红外光谱技术。使用热重分析(TGA)来检查生产的TiO2纳米颗粒的热性能。 XRD显示未煅烧的样品主要是锐钛矿相,具有一些金红石含量。结果表明,热退火导致平均晶粒尺寸从8.2nm增加到53.5nm。随着煅烧温度的升高,粒度,金红石相,锐钛矿相的结晶和附聚都增加。金红石含量和晶粒长大的增加是由于在较高的温度下煅烧(甚至在800A的温度下煅烧2小时)引起的。

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