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Fabrication of nano-sized oxide composite coatings and photo-electric conversion/electron storage characteristics

机译:纳米氧化物复合涂层的制备及光电转换/电子存储特性

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摘要

Titanium dioxide TiO2 can be used as a photo-anode to give generated electrons to the metal substrate under illumination. The transition metal oxide such as iron oxide Fe2O3 can be used to store electrons generated by the photo-electric conversion function of TiO2 under the illuminated situation while the electrons are discharged from the transition metal oxide to the metal substrate in the dark. In this paper, coatings of nano-sized composite of TiO2 and Fe2O3 were fabricated by the Warm Spray process, in which the feedstock powder is accelerated by a supersonic gas jet with speed above 1.0 km s(-1) and temperature between 800 and 2500 K, and then impacted onto the target substrate continuously to form coatings. The coatings of TiO2 and Fe2O3 nano-composite fabricated by Warm Spray showed no thermal deterioration such as phase transformation and particle growth of the feedstock during the spray process. The coatings fabricated by the Warm Spray had larger photo-current and the electron charge/discharge capacity than that by a conventional HVOF process. In addition, these characteristics were improved by decreasing the primary particle size of TiO2 and Fe2O3. (c) 2008 Elsevier B.V. All rights reserved.
机译:二氧化钛TiO2可以用作光阳极,以在照明下将生成的电子传递给金属基板。过渡金属氧化物(例如氧化铁Fe2O3)可用于在光照下存储由TiO2的光电转换功能生成的电子,而电子则在黑暗中从过渡金属氧化物释放到金​​属基板上。本文通过热喷涂工艺制备了TiO2和Fe2O3纳米复合涂层,其中超声速度为1.0 km s(-1)以上,温度在800至2500之间K,然后连续冲击到目标基材上以形成涂层。通过热喷涂制备的TiO2和Fe2O3纳米复合材料涂层在喷涂过程中未显示出热变质,如相变和原料的颗粒生长。与常规的HVOF方法相比,由热喷涂制备的涂层具有更大的光电流和电子充放电容量。此外,通过降低TiO2和Fe2O3的一次粒径可以改善这些特性。 (c)2008 Elsevier B.V.保留所有权利。

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