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Cuprous oxide/Titanium dioxide nanotube-array with coaxial heterogeneous structure synthesized by multiple-cycle chemical adsorption plus reduction method

机译:多循环化学吸附加还原法合成具有同轴异质结构的氧化亚铜/二氧化钛纳米管阵列

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摘要

We report the formation and characterization of Cuprous oxide/Titanium dioxide (Cu2O/TiO2) nanotube-array coaxial heterogeneous structure, which is supposed to have potential applications in photo-induced water decomposition and organic pollutant degradation. Such structure is formed by coating nano-particles of Cu2O onto titanium dioxide nanotube-array walls via multiple-cycle chemical adsorption plus reduction method (MC-CAR). The practical deposition technique employs a soaking step to separate the adsorption and reduction processes, thus enhancing the controllability of deposition rate and preventing the clogging of nanotube pores. The size of Cu2O nano-particles is adjusted by changing the glucose concentration in the reaction solutions. As a result, compact nano-particle film with sufficiently small crystal sizes is uniformly covered on the tube walls, resulting in the formation of coaxial heterogeneous structure. The detailed synthesis process and the surface morphology, structure, photoelectric properties, and hydrogen evolution ability of the Cu2O/TiO2 nanotube-array with coaxial heterogeneous structure are systematically investigated. The resulting film shows a stable hydrogen production rate of 3.1 mLcm-2h-1, which can be targeted for energy application in relation with solar energy driven production of hydrogen from water.
机译:我们报告了氧化亚铜/二氧化钛(Cu2O / TiO2)纳米管阵列同轴异质结构的形成和表征,该结构应该在光致水分解和有机污染物降解中具有潜在的应用。这种结构是通过多循环化学吸附加还原法(MC-CAR)将Cu2O纳米颗粒涂覆在二氧化钛纳米管阵列壁上形成的。实际的沉积技术采用浸泡步骤来分离吸附和还原过程,从而提高沉积速率的可控性并防止纳米管孔的堵塞。通过改变反应溶液中的葡萄糖浓度来调节Cu 2 O纳米颗粒的尺寸。结果,具有足够小的晶体尺寸的致密纳米颗粒膜均匀地覆盖在管壁上,导致形成同轴异质结构。系统地研究了同轴异质结构的Cu2O / TiO2纳米管阵列的详细合成工艺,表面形貌,结构,光电性能和析氢能力。所得膜显示出3.1 mLcm-2h-1的稳定氢产生速率,与太阳能驱动的从水中产生氢有关,可以作为能量应用的目标。

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