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Electrospun Mesoporous Composite CuO-Co3O4/N- TiO2 Nanofibers as Efficient Visible Light Photocatalysts

机译:静电传播复合cuo-co3O4/n- tio2纳米纤维作为有效的可见光光催化剂

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One-dimensional mesoporous composite CuO-Co3O4 /N-TiO2 nanofibers (CuCoNT NFs) have been fabricated by in situ sol- gel electrospinning technique. In our approach, both polyvinylpyrrolidone (PVP) and polyethylene glycol (PEG) are used as dual polymeric carrier matrix for the fabrication of electrospun CuCoNT NFs. PVP chains assist the electrospinning of the uniform composite nanofibers whereas PEG is responsible for mesoporosity which is confirmed by N2 sorption analyses. Along with CuCoNT NFs, other nanofiber samples (TiO2 NFs, NTiO2 NFs, CuO/N-TiO2 NFs, Co3O4/N-TiO2 NFs) have also been fabricated for comparative studies. The morphology and composition of the NFs have been confirmed by the HR-TEM and XPS analyses. The red shifting of band gap energy from anatase TiO2 NFs to composite CuCoNT NFs (1.57 eV) is suggesting formation of visible light response. Oxygen vacancies in CuCoNT NFs, leads to lowering the e~- -h~+ recombination. The lowering of photoluminescence spectrum and high photocurrent response in CuCoNT NFs makes CuO as low cost cocatalyst. The composite CuCoNT NFs is treated as an efficient photocatalyst for swift degradation of mixed dyes in visible light, an exemplary move. Exactly, 100% mixed dyes (30 mg/L) degradation is achieved at pH 10 in just 60 minutes.
机译:一维介孔复合cuo-Co3O4 /n-TiO2纳米纤维(Cucont NFS)已通过原位溶液静电纺丝技术制造。在我们的方法中,聚乙烯基吡咯烷酮(PVP)和聚乙烯乙二醇(PEG)均用作双聚合物载体基质,用于制造电纺cucont NFS。 PVP链有助于均匀的复合纳米纤维的电纺纺丝,而PEG负责中源性,这通过N2吸附分析证实。除Cucont NFS外,还制造了其他纳米纤维样品(TIO2 NFS,NTIO2 NFS,CUO/N-TIO2 NFS,CO3O4/N-TIO2 NFS)。 HR-TEM和XPS分析已经证实了NF的形态和组成。从解剖酶TiO2 NFS到复合Cucont NFS(1.57 eV)的带隙能量的红色转移表明形成了可见光响应。 Cucont NFS中的氧空位导致降低E〜 -H〜+重组。 Cucont NFS中光致发光光谱和高光电流响应的降低使CUO成为低成本的cocatalyst。复合Cucont NFS被视为有效的光催化剂,可在可见光中快速降解混合染料,这是一个示例性的移动。确切地说,在短短60分钟内,在pH 10中实现100%混合染料(30 mg/L)降解。

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