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首页> 外文期刊>Nanoscale >strong synergistic effect of the (110) and (100) facets of the SrTiO3 perovskite micro/nanocrystal: decreasing the binding energy of exciton and superb photooxidation capability for Co2+
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strong synergistic effect of the (110) and (100) facets of the SrTiO3 perovskite micro/nanocrystal: decreasing the binding energy of exciton and superb photooxidation capability for Co2+

机译:SrTiO3钙钛矿微纳米晶(110)和(100)面的强协同效应:降低激子结合能,对Co2+具有超强的光氧化能力

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Crystal facet regulation is an effective method for preparing SrTiO3 or other perovskite semiconductor materials with high photochemical catalysis performance. In general, the edge-truncated cube of SrTiO3 micro-nano particles has been widely reported because of the multiple crystal facets exposed at the same time. However, the effect of the (110) facet and the interaction between the (100) and (110) facets on the properties of photo-induced carriers is still not very clear. In this article, we have designed and prepared two edge-truncated cube SrTiO3—a small and large area proportion of the (110) facet, respectively. In addition to the morphological and structural characterization, high-resolution XPS and femtosecond multiphoton transient absorption (fs-TA) spectroscopy were used to detect the atomic vacancy and were applied to confirm the state of carrier transition. The results showed that the larger (110) facet led to two influences—more Sr vacancies and more self-trapping excitons (STEs) with an ultra-low binding energy (Eb = 2.13 meV), about 1.17 meV lower than that of the sample with the smaller (110) facet. In particular, the larger (110) facet also caused a much higher photooxidation performance for Co2+ to Co3+. This study not only enriches the arsenal of SrTiO3 materials but also sheds new insights into the understanding of the synergistic effect essence of the (100) and (110) facets, which could promote the development of new perovskite photocatalytic materials, particularly in the recovery of heavy metals.
机译:水晶方面的监管是一种有效的方法准备SrTiO3或其他钙钛矿半导体材料与高的光化学催化性能。edge-truncated SrTiO3微纳米立方体粒子被广泛报道的多个水晶方面暴露在同一时间。然而,(110)面和效果之间的交互(100)和(110)面photo-induced运营商仍的属性不是很清楚。准备两个立方体edge-truncated SrTiO3-a小和大面积的比例(110)方面,分别。形态和结构特征,高分辨率XPS和飞秒多光子瞬态吸收(fs-TA)光谱用来探测原子空位,应用于确定载体的状态过渡。导致两个influences-more Sr(110)方面职位空缺和自已诱捕激子(集)超低的结合能(Eb = 2.13兆电子伏),约1.17兆电子伏低于样本较小的(110)面。大(110)方面也引起了高得多光致氧化性能Co3二氧化碳+ +。研究不仅丰富了SrTiO3的阿森纳材料也了新的见解对协同效应的本质的理解的(100)和(110)面,这可能促进新钙钛矿的开发光催化材料,特别是在复苏的重金属。

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