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首页> 外文期刊>Nanomaterials >Dynamic Diffraction Studies on the Crystallization, Phase Transformation, and Activation Energies in Anodized Titania Nanotubes
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Dynamic Diffraction Studies on the Crystallization, Phase Transformation, and Activation Energies in Anodized Titania Nanotubes

机译:阳极氧化二氧化钛纳米管中结晶,相变和活化能的动态衍射研究

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The influence of calcination time on the phase transformation and crystallization kinetics of anodized titania nanotube arrays was studied using in-situ isothermal and non-isothermal synchrotron radiation diffraction from room temperature to 900 °C. Anatase first crystallized at 400 °C, while rutile crystallized at 550 °C. Isothermal heating of the anodized titania nanotubes by an increase in the calcination time at 400, 450, 500, 550, 600, and 650 °C resulted in a slight reduction in anatase abundance, but an increase in the abundance of rutile because of an anatase-to-rutile transformation. The Avrami equation was used to model the titania crystallization mechanism and the Arrhenius equation was used to estimate the activation energies of the titania phase transformation. Activation energies of 22 (10) kJ/mol for the titanium-to-anatase transformation, and 207 (17) kJ/mol for the anatase-to-rutile transformation were estimated.
机译:研究了煅烧时间对阳极氧化二氧化钛纳米管阵列从室温到900°C的原位等温和非等温同步辐射的衍射变化的影响。锐钛矿首先在400°C结晶,而金红石在550°C结晶。在400、450、500、550、600和650°C下通过煅烧时间的增加对阳极氧化的二氧化钛纳米管进行等温加热,导致锐钛矿的丰度略有降低,但由于锐钛矿的存在,金红石的丰度增加到金红石的转化。使用Avrami方程来模拟二氧化钛的结晶机理,使用Arrhenius方程来估算二氧化钛相变的活化能。钛到锐钛矿转化的活化能估计为22(10)kJ / mol,锐钛矿到金红石转化的活化能估计为207(17)kJ / mol。

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