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Nanoscale strontium titanate photocatalysts for overall water splitting

机译:用于整体水分解的纳米级钛酸锶光催化剂

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SrTiO _3 (STO) is a large band gap (3.2 eV) semiconductor that catalyzes the overall water splitting reaction under UV light irradiation in the presence of a NiO cocatalyst. As we show here, the reactivity persists in nanoscale particles of the material, although the process is less effective at the nanoscale. To reach these conclusions, Bulk STO, 30 ± 5 nm STO, and 6.5 ± 1 nm STO were synthesized by three different methods, their crystal structures verified with XRD and their morphology observed with HRTEM before and after NiO deposition. In connection with NiO, all samples split water into stoichiometric mixtures of H _2 and O _2, but the activity is decreasing from 28 μmol H _2 g ~(-1) h ~(-1) (bulk STO), to 19.4 μmol H _2 g ~(-1) h ~(-1) (30 nm STO), and 3.0 μmol H _2 g ~(-1) h ~(-1) (6.5 nm STO). The reasons for this decrease are an increase of the water oxidation overpotential for the smaller particles and reduced light absorption due to a quantum size effect. Overall, these findings establish the first nanoscale titanate photocatalyst for overall water splitting.
机译:SrTiO _3(STO)是一种带隙大(3.2 eV)的半导体,可在NiO助催化剂存在下,在紫外线照射下催化整个水分解反应。正如我们在此处显示的那样,尽管该过程在纳米级上效率较低,但反应性在材料的纳米级颗粒中仍然存在。为得出这些结论,采用三种不同的方法合成了块状STO,30±5 nm STO和6.5±1 nm STO,用XRD验证了它们的晶体结构,并在NiO沉积前后用HRTEM观察了它们的形态。与NiO有关,所有样品将水分解为H _2和O _2的化学计量混合物,但活性从28μmolH _2 g〜(-1)h〜(-1)(本体STO)降低到19.4μmolH _2 g〜(-1)h〜(-1)(30 nm STO)和3.0μmolH _2 g〜(-1)h〜(-1)(6.5 nm STO)。减少的原因是较小颗粒的水氧化超电势增加,并且由于量子尺寸效应而降低了光吸收。总体而言,这些发现建立了第一个用于整体水分解的纳米级钛酸酯光催化剂。

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