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Hierarchical Assembly of SnO2/ZnO Nanostructures for Enhanced Photocatalytic Performance

机译:SnO 2 / ZnO纳米结构的层级组装以增强光催化性能

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SnO2/ZnO hierarchical heterostructures have been successfully synthesized by combining electrospinning technique and hydrothermal method. Various morphologies of the secondary ZnO nanostructures including nanorods (NRs) and nanosheets (NSs) can be tailored by adding surfactants. Photocatalytic performance of the heterostructures was investigated and obvious enhancement was demonstrated in degradation of the organic pollutant, compared to the primary SnO2-based nanofibers (NFs) and bare ZnO. Furthermore, it was found that the H2 evolution from water splitting was achieved by photocatalysis of heterostructured nanocomposites after sulfurization treatment. This synthetic methodology described herein promises to be an effective approach for fabricating variety of nanostructures for enhanced catalytic applications. The heterostructured nanomaterials have considerable potential to address the environmental and energy issues via degradation of pollutant and generation of clean H2 fuel.
机译:结合电纺丝技术和水热法成功合成了SnO 2 / ZnO分层异质结构。可以通过添加表面活性剂来定制次要ZnO纳米结构的各种形态,包括纳米棒(NRs)和纳米片(NSs)。与主要的SnO 2 基纳米纤维(NFs)和裸露的ZnO相比,研究了异质结构的光催化性能,并证明了有机污染物降解的明显增强。此外,还发现通过硫化后异质结构纳米复合材料的光催化作用,水分解产生了H 2 。本文所述的这种合成方法有望成为制造用于增强催化应用的各种纳米结构的有效方法。异质结构纳米材料具有巨大的潜力,可通过污染物降解和产生清洁的H 2 燃料来解决环境和能源问题。

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