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Titanium dioxide nanoswords with highly reactive, photocatalytic facets

机译:具有高反应性,光催化刻面的二氧化钛纳米剑

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摘要

Titanium dioxide (TiO_2) is one of the most widely studied and important materials for catalysis, photovoltaics, and surface science applications, but the ability to consistently control the relative exposure of higher surface energy facets during synthesis remains challenging. Here, we present the repeatable synthesis of highly reactive, rutile {001} or {101} facets on broad, sword-shaped TiO_2 nanostructures rapidly synthesized in minutes. Growth occurs along planes of lower surface energy, repeatedly yielding nanostructures with large, high energy facets. The quantitative photocatalytic reactivity of the nanoswords, demonstrated by the photoreduction of silver, is over an order of magnitude higher than reference low energy TiO_2{110} substrates. Therefore, the higher surface energy dominated TiO_2 nanoswords are ideal structures for characterizing the physicochemical properties of rutile TiO_2, and may be used to enhance a variety of catalytic, optical, and clean-technology applications.
机译:二氧化钛(TiO_2)是用于催化,光伏和表面科学应用的最广泛研究的重要材料之一,但是在合成过程中始终如一地控制较高表面能面的相对暴露的能力仍然具有挑战性。在这里,我们提出了在数分钟内快速合成的宽阔剑形TiO_2纳米结构上的高反应性,金红石型{001}或{101}刻面的可重复合成。生长沿较低表面能的平面进行,反复产生具有大的高能平面的纳米结构。通过银的光还原表明,纳米剑的定量光催化反应性比参考低能TiO_2 {110}衬底高一个数量级。因此,以表面能为主的TiO_2纳米剑是表征金红石型TiO_2的理化性质的理想结构,可用于增强各种催化,光学和清洁技术应用。

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