首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Large scale free-standing open-ended TiO2 nanotube arrays: stress-induced self-detachment and in situ pore openingf
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Large scale free-standing open-ended TiO2 nanotube arrays: stress-induced self-detachment and in situ pore openingf

机译:大型独立式开放式TiO2纳米管阵列:应力诱导的自分离和原位开孔

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摘要

In this study, the free-standing and open-ended TiO2 nanotube arrays with large area are synthesized under high field anodization. The membrane is firstly self-detached from Ti foil during anodization followed by a pore opening process of in situ field-assisted chemical dissolution. A model of stress accumulation is proposed to explain the self-detachment of the as-formed TiO2 nanotube membrane from the underlying Ti substrate. It is believed that the stress accumulation in the membrane is the collective effects of the stress generation during tube growth and the stress release due to chemical dissolution. When the stress accumulates to a critical value, the TiO2 nanotube membrane would be self-detached from the Ti substrate. It is found that the magnitude of stress is associated with the thickness of a stressed layer rather than the thickness of the as-formed TiO2 membrane. By changing the anodization parameters, the stress accumulation rate can be facilely controlled, which finally determines the detaching time and thickness of the detached membrane.
机译:在这项研究中,大面积的独立式和开放式的TiO2纳米管阵列是在高场阳极氧化条件下合成的。该膜首先在阳极氧化过程中自Ti箔上自动分离,然后进行原位场辅助化学溶解的开孔过程。提出了一种应力累积模型来解释所形成的TiO2纳米管膜与下面的Ti基底的自分离。据信膜中的应力累积是管生长期间应力产生和由于化学溶解引起的应力释放的共同作用。当应力累积到临界值时,TiO2纳米管膜会自Ti基板上自动剥离。发现应力的大小与应力层的厚度有关,而不与所形成的TiO 2膜的厚度有关。通过更改阳极氧化参数,可以轻松控制应力累积速率,最终确定分离时间和分离膜的厚度。

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