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ZnO decorated Sn3O4 nanosheet nano-heterostructure: a stable photocatalyst for water splitting and dye degradation under natural sunlight

机译:ZnO装饰的Sn3O4纳米片纳米异质结构:一种稳定的光催化剂,可在自然光下分解水和降解染料

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Herein, a facile hydrothermally-assisted sonochemical approach for the synthesis of a ZnO decorated Sn _(3) O _(4) nano-heterostructure is reported. The phase purity of the nano-heterostructure was confirmed by X-ray diffraction and Raman spectroscopy. The morphological analysis demonstrated a nanosheet-like structure of Sn _(3) O _(4) with a thickness of 20 nm, decorated with ZnO. The optical band gap was found to be 2.60 eV for the ZnO@Sn _(3) O _(4) nano-heterostructure. Photoluminescence studies revealed the suppression of electron–hole recombination in the ZnO@Sn _(3) O _(4) nano-heterostructure. The potential efficiency of ZnO@Sn _(3) O _(4) was further evaluated towards photocatalytic hydrogen production via H _(2) O splitting and degradation of methylene blue (MB) dye. Interestingly, it showed significantly superior photocatalytic activity compared to ZnO and Sn _(3) O _(4) . The complete degradation of MB dye solution was achieved within 40 min. The nano-heterostructure also exhibited enhanced photocatalytic activity towards hydrogen evolution (98.2 μmol h ~(?1) /0.1 g) via water splitting under natural sunlight. The superior photocatalytic activity of ZnO@Sn _(3) O _(4) was attributed to vacancy defects created due to its nano-heterostructure.
机译:本文中,报道了一种用于合成ZnO装饰的Sn _(3)O _(4)纳米异质结构的简便水热辅助声化学方法。通过X射线衍射和拉曼光谱法确认了纳米异质结构的相纯度。形态分析表明,纳米片状结构的Sn_(3)O_(4)的厚度为20nm,并装饰有ZnO。对于ZnO @ Sn_(3)O_(4)纳米异质结构,发现光学带隙为2.60eV。光致发光研究表明抑制了ZnO @ Sn _(3)O _(4)纳米异质结构中的电子-空穴复合。 ZnO @ Sn_(3)O_(4)的潜在效率通过H_(2)O分解和亚甲基蓝(MB)染料的降解进一步评估了光催化制氢的效率。有趣的是,与ZnO和Sn _(3)O _(4)相比,它显示出显着优越的光催化活性。 MB染料溶液在40分钟内完全降解。通过在自然阳光下进行水分解,纳米异质结构还表现出增强的对氢释放的光催化活性(98.2μmolh〜(?1)/0.1 g)。 ZnO @ Sn_(3)O_(4)的优异光催化活性归因于由于其纳米异质结构而产生的空位缺陷。

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