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Two novel hierarchical homogeneous nanoarchitectures of TiO2 nanorods branched and P25-coated TiO2 nanotube arrays and their photocurrent performances

机译:TiO2纳米棒支化和P25包覆的TiO2纳米管阵列的两种新颖的分层均质纳米结构及其光电流性能

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摘要

We report here for the first time the synthesis of two novel hierarchical homogeneous nanoarchitectures of TiO2 nanorods branched TiO2 nanotube arrays (BTs) and P25-coated TiO2 nanotube arrays (PCTs) using two-step method including electrochemical anodization and hydrothermal modification process. Then the photocurrent densities versus applied potentials of BTs, PCTs, and pure TiO2 nanotube arrays (TNTAs) were investigated as well. Interestingly, at -0.11 V and under the same illumination condition, the photocurrent densities of BTs and PCTs show more than 1.5 and 1 times higher than that of pure TNTAs, respectively, which can be mainly attributed to significant improvement of the light-absorbing and charge-harvesting efficiency resulting from both larger and rougher surface areas of BTs and PCTs. Furthermore, these dramatic improvements suggest that BTs and PCTs will achieve better photoelectric conversion efficiency and become the promising candidates for applications in DSSCs, sensors, and photocatalysis.
机译:我们在这里首次报告使用包括电化学阳极氧化和水热改性工艺在内的两步法合成了TiO2纳米棒分支的TiO2纳米管阵列(BTs)和P25涂层的TiO2纳米管阵列(PCTs)的两个新颖的分层均质纳米结构。然后,还研究了BT,PCT和纯TiO2纳米管阵列(TNTA)的光电流密度与施加电势的关系。有趣的是,在-0.11 V和相同的照明条件下,BT和PCT的光电流密度分别比纯TNTA高1.5倍和1倍,这主要归因于吸光性和光吸收性的显着提高。 BT和PCT的表面积越来越大导致电荷收集效率提高。此外,这些显着的改进表明BT和PCT将实现更好的光电转换效率,并成为在DSSC,传感器和光催化领域中应用的有希望的候选者。

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