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首页> 外文期刊>ACS applied materials & interfaces >Oxygen-Plasma-Assisted Enhanced Acetone-Sensing Properties of ZnO Nanofibers by Electrospinning
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Oxygen-Plasma-Assisted Enhanced Acetone-Sensing Properties of ZnO Nanofibers by Electrospinning

机译:通过静电纺丝通过氧等离子体辅助增强ZnO纳米纤维的丙酮感应性能

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摘要

In this Article, ZnO nanofibers were prepared by electrospinning. The as-prepared ZnO electrospun fibers were treated with plasma. The morphology, structure, and element content of the ZnO nanofibers greatly changed after treatment with different plasmas. The test results indicated that the acetone-sensing performance was remarkably improved for oxygen-plasma-assisted ZnO nanofibers. Furthermore, the density function theory (DFT) calculation results revealed that the acetone adsorption energy of ZnO nanofibers treated with oxygen plasma was 2 times greater than that of untreated ZnO nanofibers, and the electrons transferred between ZnO nanofibers and acetone molecules produced a more remarkable change in electronic structure for the oxygen-plasma-treated ZnO nanofibers. Our work demonstrates that the oxygen plasma treatment method can help improve the acetone-sensing performance of ZnO nanofibers.
机译:在本文中,通过静电纺丝制备ZnO纳米纤维。 用等离子体处理制备的ZnO电纺纤维。 用不同的等离子体处理后ZnO纳米纤维的形态,结构和元素含量大大改变。 测试结果表明,对氧等离子体辅助ZnO纳米纤维显着改善了丙酮感应性能。 此外,密度函数理论(DFT)计算结果表明,用氧等离子体处理的ZnO纳米纤维的丙酮吸附能量比未处理的ZnO纳米纤维的丙酮吸附能量大2倍,并且在ZnO纳米纤维和丙酮分子之间传递的电子产生了更显着的变化 在氧等离子体处理的ZnO纳米纤维的电子结构中。 我们的作品表明,氧等离子体处理方法可以有助于提高ZnO纳米纤维的丙酮感应性能。

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