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2D WC/WO_3 Heterogeneous Hybrid for Photocatalytic Decomposition of Organic Compounds with Vis-NIR Light

机译:二维WC / WO_3非均相杂化物用于Vis-NIR光催化分解有机化合物

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摘要

Developing catalysts to improve charge-carrier transfer and separation is critical for efficient photocatalytic applications driven by low-energy photons. van der Waals stacking of 2D materials has opened up opportunities to engineer heteromaterials for strong interlayer excitonic transition. However, fabrication of 2D heteromaterials with clean and seamless interfaces remains challenging. Here, a 2D tungsten carbide/tungsten trioxide (WC/WO3) heterogeneous hybrid in situ synthesized by a chemical engineering method has been reported. The hybrid comprises of layer-by-layer stacked WC and WO3 monolayers. The WC and specific interfacial interfaces between the WC and WO3 layers exhibit synergetic effects, promoting interfacial charge transfer and separation. Binderless WC performing platinum-like behavior works as a potential substitute for noble metals and accelerates multielectron oxygen reduction, consequently speeding up the photocatalytic decomposition of organic compounds over the WO3 catalyst. The specific interfacial interaction between WC and WO3 layers potentially improves interfacial charge transfer from conduction band of WO3 to WC. In the absence of noble metals, the WC/WO3 hybrid as a catalyst exhibits distinct decomposition of organic compounds with vis-NIR light ( = 400-800 nm). This finding provides a cost-effective approach to capture low-energy photons in environmental remediation applications.
机译:开发催化剂以改善电荷载流子的转移和分离对于由低能光子驱动的有效光催化应用至关重要。 van der Waals的2D材料堆叠为工程异质材料提供了实现强层间激子跃迁的机会。然而,具有清洁和无缝界面的二维异质材料的制造仍然具有挑战性。在此,已经报道了通过化学工程方法原位合成的二维碳化钨/三氧化钨(WC / WO3)异质杂化物。杂物包含逐层堆叠的WC和WO3单层。 WC和WC和WO3层之间的特定界面界面表现出协同效应,促进了界面电荷的转移和分离。表现出类铂行为的无粘结剂WC可作为贵金属的潜在替代品,并加速多电子氧的还原反应,从而加快有机化合物在WO3催化剂上的光催化分解。 WC和WO3层之间的特定界面相互作用可能会改善从WO3的导带到WC的界面电荷转移。在没有贵金属的情况下,WC / WO3杂化物作为催化剂在可见-近红外光(= 400-800 nm)下表现出明显的有机化合物分解。这一发现为在环境修复应用中捕获低能光子提供了一种经济有效的方法。

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