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Unique N doped Sn3O4 nanosheets as an efficient and stable photocatalyst for hydrogen generation under sunlight

机译:独特的N掺杂Sn3O4 nanosheets作为高效和稳定的光催化剂对氢的一代阳光下

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摘要

Unique N doped Sn3O4 nanosheets have been demonstrated successfully using a facile hydrothermal method. Investigations of the triclinic phase and the impurities were performed using powder X-ray diffraction analysis (XRD) and Raman spectroscopy. The morphological analysis demonstrated a rectangular intra- and inter-connected nanosheet-like structure. The length of the nanosheets was observed to be in the range of 200-300 nm and the thickness of the nanosheets was less than 10 nm. The optical study reveals an extended absorption edge into the visible region, owing to the incorporation of nitrogen into the lattice of Sn3O4, which was further confirmed using X-ray photoelectron spectroscopy (XPS). Considering the band structure in the visible region, the photocatalytic activities of pristine and N doped Sn3O4 nanosheets for hydrogen evolution from water under natural sunlight were investigated. 4% N-Sn3O4 showed a higher photocatalytic activity (654.33 mu mol(-1) h(-1) 0.1 g(-1)) for hydrogen production that was eight times that of pristine Sn3O4. The enhanced photocatalytic activity is attributed to the inhibition of charge carrier separation owing to the N doping, morphology and crystallinity of the N-Sn3O4 nanostructures. A stable efficiency was observed for three cycles, which clearly shows the stability of N-Sn3O4.
机译:独特的N掺杂Sn3O4 nanosheets演示了使用容易成功热液的方法。三斜晶系的阶段和杂质进行使用粉末x射线衍射分析(XRD)和拉曼光谱。演示了一个矩形内部的和紧密相联的nanosheet-like结构。观察nanosheets长度200 - 300纳米的范围和厚度nanosheets小于10纳米。揭示了一个扩展吸收边缘可见区域,由于整合氮的晶格Sn3O4,进一步证实了用x射线光电子能谱(XPS)。结构可见的地区光催化活动的原始和N掺杂Sn3O4 nanosheets供氢进化水在自然阳光下进行调查。4% N-Sn3O4显示更高的光催化活动(654.33μ摩尔(1)h (1) 0.1 g (1))制氢的八倍原始Sn3O4。活动是由于抑制由于电荷载体分离N掺杂,N-Sn3O4的形态和结晶度纳米结构。三个周期,这清楚地显示了N-Sn3O4的稳定。

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