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Influence of Mass and Heat Transfer on Morphologies of Metal Oxide Nanochannel Arrays Prepared by Anodization Method

机译:质量和热传递对阳极氧化法制备金属氧化物纳米通道阵列形貌的影响

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We discuss the influence of mass and heat transfer on the morphologies of Al, Ti, and Zr nanochannel arrays during anodization process. When these metals are anodized, the nanopores are firstly formed at the metal surface, and the nonuniform distribution of mass transfer in the pores results in the increase of pore depth. The nonuniform temperature distribution and the downward movement of reaction interface lead to the temperature changes and the generation of microcracks inside the pore wall, which results in the conversion of nanopores into nanotubes. The low-valency oxides also make the middle of the pore wall crack easily. The morphologies during metal anodization depend greatly on the temperature at the reaction interface. At low interface temperature, it appears to form the nanopores more easily, and, at high interface temperature, it is more propitious to form the nanotube structure. Many factors including resistivity, thermal conductivity, oxidizing reaction heat, and electric field strength (or current density) affect the reaction interface temperature.
机译:我们讨论了阳极氧化过程中传质和传热对Al,Ti和Zr纳米通道阵列形态的影响。当这些金属被阳极化时,首先在金属表面形成纳米孔,并且在孔中传质的不均匀分布导致孔深度的增加。温度分布不均匀和反应界面向下移动导致温度变化和孔壁内部微裂纹的产生,从而导致纳米孔转化为纳米管。低价氧化物也容易使孔壁的中间开裂。金属阳极氧化过程中的形态在很大程度上取决于反应界面的温度。在低界面温度下,似乎更容易形成纳米孔,而在高界面温度下,更有利于形成纳米管结构。许多因素包括电阻率,导热率,氧化反应热和电场强度(或电流密度)都会影响反应界面温度。

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