首页> 外文会议>International Conference on Science and Engineering of Materials >Synthesis of TiO_2 Nanotube Arrays in NaOH added Ethylene Glycol Electrolyte and the Effect of Annealing Temperature on the Nanotube Arrays to their Photocurrent Performance
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Synthesis of TiO_2 Nanotube Arrays in NaOH added Ethylene Glycol Electrolyte and the Effect of Annealing Temperature on the Nanotube Arrays to their Photocurrent Performance

机译:NaOH中加入乙二醇电解质的TiO_2纳米管阵列的合成及退火温度对纳米管阵列的影响光电流性能

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The present study employs NaOH as an oxygen source in fluorinated ethylene glycol (EG) electrolyte for the formation of titanium dioxide nanotube arrays (TiO_2 NTs) by anodic process. The nanotube formed were 125 nm in diameter with length of ~ 7 μm after 30 min of anodization. They were then annealed to study the effect of annealing temperature on the photocurrent generated by the TiO_2 NTs. It is found that TiO_2 NTs annealed at 400°C has the highest photocurrent (0.716 mA cm~(-2) at 0.5 V vs Ag/AgCl). This is attributed to the crystallinity (mostly anatase) of the TiO_2 NTs as well as the nanotubular structure which retains at this temperature but not at higher temperature.
机译:本研究采用NaOH作为氟化乙二醇(例如)电解质的氧源,用于通过阳极方法形成二氧化钛纳米管阵列(TiO_2NTS)。在阳极氧化30分钟后,形成的纳米管的直径为125nm,长度为约7μm。然后,它们退火以研究退火温度对由TiO_2 NT产生的光电流的影响。发现在400℃下退火的TiO_2 NTS具有最高的光电流(0.716 mA cm〜(-2),0.5V Vs Ag / AgCl)。这归因于TiO_2 NTS的结晶度(大多是锐钛矿)以及在该温度下保持但不在较高温度下保持的纳米管结构。

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