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首页> 外文期刊>ACS Omega >Hierarchically Grown NiO-Decorated Polyaniline-Reduced Graphene Oxide Composite for Ultrafast Sunlight-Driven Photocatalysis
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Hierarchically Grown NiO-Decorated Polyaniline-Reduced Graphene Oxide Composite for Ultrafast Sunlight-Driven Photocatalysis

机译:分层生长的NiO装饰的聚苯胺还原的氧化石墨烯复合材料,用于超快阳光驱动的光催化

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Polymers and transition-metal oxides have gained great interest as a photocatalyst in environmental remediation. They could be modified with each other in order to improve their activity. Here, a sunlight-responsive hierarchically structured ternary composite of nickel oxide, polyaniline, and reduced graphene oxide (NiO@PANI/RGO) has been synthesized and employed as a catalyst for dye [methylene blue (MB)] degradation. PANI/GO synthesized by interfacial polymerization acts as a matrix for the growth of NiO using a microemulsion solvothermal method, ensuing an in situ reduction of graphene oxide during the formation of a hierarchical NiO@PANI/RGO composite. Morphological studies of the as-synthesized NiO@PANI/RGO composite reveal fine NiO (10 nm) nanoparticles intercalated between the uniformly grown PANI spines (50–60 nm) over the RGO surface. The optical band gap of ~1.9 eV calculated from the UV–vis spectrum illustrates the extended light absorption range for the NiO@PANI/RGO photocatalyst. The efficiency of 98% MB degradation within 11 min with the degradation rate constant 0.086 min–1 for NiO@PANI/RGO has surpassed any other report on metal oxide/graphene-based ternary composites. Overall, this work could pave the way for the fabrication of futuristic hierarchical structured ternary nanocomposites as an efficient photocatalyst and facilitate their application in the environmental protection issues.
机译:聚合物和过渡金属氧化物作为光催化剂在环境修复中引起了极大的兴趣。它们可以相互修改以改善其活动性。在此,已经合成了氧化镍,聚苯胺和还原的氧化石墨烯(NiO @ PANI / RGO)的阳光响应的分层结构三元复合物,并将其用作染料[亚甲基蓝(MB)]降解的催化剂。通过界面聚合合成的PANI / GO用作微乳液溶剂热法生长NiO的基质,从而在分层NiO @ PANI / RGO复合材料的形成过程中原位还原了氧化石墨烯。刚合成的NiO @ PANI / RGO复合材料的形态学研究表明,细小的NiO(10 nm)纳米颗粒插在RGO表面均匀生长的PANI脊柱(50-60 nm)之间。由紫外可见光谱计算得出的〜1.9 eV的光学带隙说明了NiO @ PANI / RGO光催化剂的扩展光吸收范围。 NiO @ PANI / RGO在11分钟内降解98%MB的效率(降解速率常数为0.086 min-1)已超过任何其他有关金属氧化物/石墨烯基三元复合材料的报道。总的来说,这项工作可以为未来的分层结构的三元纳米复合材料的制备铺平道路,该复合材料可以作为一种有效的光催化剂,并促进其在环境保护方面的应用。

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