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首页> 外文期刊>Scientific reports. >A two-step synthesis of nanosheet-covered fibers based on α -Fe 2 O 3 /NiO composites towards enhanced acetone sensing
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A two-step synthesis of nanosheet-covered fibers based on α -Fe 2 O 3 /NiO composites towards enhanced acetone sensing

机译:基于α-Fe 2 O 3 / NiO复合材料的两步合成纳米片覆盖的纤维,用于增强丙酮感测

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A novel hierarchical heterostructures based on α-Fe2O3/NiO nanosheet-covered fibers were synthesized using a simple two-step process named the electrospinning and hydrothermal techniques. A high density of α-Fe2O3 nanosheets were uniformly and epitaxially deposited on a NiO nanofibers. The crystallinity, morphological structure and surface composition of nanostructured based on α-Fe2O3/NiO composites were investigated by XRD, SEM, TEM, EDX, XPS and BET analysis. The extremely branched α-Fe2O3/NiO nanosheet-covered fibers delivered an extremely porous atmosphere with huge specific surface area essential for superior gas sensors. Different nanostructured based on α-Fe2O3/NiO composites were also explored by adjusting the volume ratio of the precursors. The as-prepared samples based on α-Fe2O3/NiO nanocomposite sensors display apparently enhanced sensing characteristics, including higher sensing response, quick response with recovery speed and better selectivity towards acetone gas at lower operating temperature as compared to bare NiO nanofibers. The sensing response of S-2 based α-Fe2O3/NiO nanosheet-covered fibers were 18.24 to 100?ppm acetone gas at 169?°C, which was about 6.9 times higher than that of bare NiO nanofibers. The upgraded gas sensing performance of composites based on α-Fe2O3/NiO nanosheet-covered fibers might be ascribed to the exclusive morphologies with large surface area, p-n heterojunctions and the synergetic performance of α-Fe2O3 and NiO.
机译:使用称为电纺丝和水热技术的简单两步过程,合成了基于α-Fe2O3/ NiO纳米片覆盖纤维的新型分层异质结构。高密度的α-Fe2O3纳米片均匀地外延沉积在NiO纳米纤维上。通过XRD,SEM,TEM,EDX,XPS和BET分析研究了基于α-Fe2O3/ NiO复合材料的纳米结构的结晶度,形貌结构和表面组成。极支化的α-Fe2O3/ NiO纳米片覆盖的纤维提供了极为多孔的气氛,具有巨大的比表面积,是卓越的气体传感器必不可少的。通过调节前驱体的体积比,还探索了基于α-Fe2O3/ NiO复合材料的不同纳米结构。与裸露的NiO纳米纤维相比,基于α-Fe2O3/ NiO纳米复合传感器的样品制备显示出明显增强的传感特性,包括更高的传感响应,更快的恢复速度响应以及更低的工作温度下对丙酮气体的选择性。覆盖有S-2的α-Fe2O3/ NiO纳米片的纤维在169°C下的传感响应为18.24至100?ppm的丙酮气体,比裸露的NiO纳米纤维高6.9倍。基于α-Fe2O3/ NiO纳米片包覆纤维的复合材料气敏性能的提高可能归因于大表面积,p-n异质结以及α-Fe2O3和NiO的协同性能的独特形貌。

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