首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Formation of a crystalline nanotube-nanoparticle hybrid by post water-treatment of a thin amorphous TiO2 layer on a TiO2 nanotube array as an efficient photoanode in dye-sensitized solar cells
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Formation of a crystalline nanotube-nanoparticle hybrid by post water-treatment of a thin amorphous TiO2 layer on a TiO2 nanotube array as an efficient photoanode in dye-sensitized solar cells

机译:通过后处理TiO2纳米管阵列上的非晶TiO2薄层作为染料敏化太阳能电池中的有效光电阳极,对水进行处理,从而形成晶体纳米管-纳米颗粒杂化体

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摘要

An atomic layer deposited, conformal thin layer (~15 nm) of amorphous TiO2 on a primary TiO2 NTarray is effectively converted into partly crystalline nanoparticles on the inside walls of TiO2 nanotubes by water mediated dissolution-precipitation phenomena without disturbing the original state of the TNTAs. This method helps to achieve the exclusive conversion of the secondary shell of amorphous TiO2 layer coated by ALD into nanoparticles and the preservation of original crystalline nanotube (core) properties such as mechanical stability and the charge transport properties. As a consequence, the resultant core-shell type nanotube-nanoparticle composite showed higher photoanode performance (25% increment in efficiency) than conventional untreated TiO2 NT array photoanode.
机译:通过水介导的溶解-沉淀现象在一次TiO2 NT阵列上沉积原子层的非晶TiO2的共形薄层(〜15 nm)有效地转化为TiO2纳米管内壁上的部分结晶的纳米颗粒,而不会干扰TNTA的原始状态。此方法有助于实现将ALD涂覆的无定形TiO2层的第二层壳独家转化为纳米颗粒,并保留原始晶体纳米管(核)性能,例如机械稳定性和电荷传输性能。结果,与常规的未处理的TiO 2 NT阵列光电阳极相比,所得的核-壳型纳米管-纳米颗粒复合材料显示出更高的光电阳极性能(效率提高25%)。

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