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Micro- and nano-scale hollow TiO_2 fibers by coaxial electrospinning: Preparation and gas sensing

机译:同轴电纺微纳米级中空TiO_2纤维的制备与气敏

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We report the preparation of micro- and nano-scale hollow TiO_2 fibers using a coaxial electrospinning technique and their gas sensing properties in terms of CO. The diameter of hollow TiO_2 fibers can be controlled from 200 nm to several micrometers by changing the viscosity of electrospinning solutions. Lower viscosities produce slim hollow nanofibers. In contrast, fat hollow microfibers are obtained in the case of higher viscosities. A simple mathematical expression is presented to predict the change in diameter of hollow TiO_2 fibers as a function of viscosity. The successful control over the diameter of hollow TiO_2 fibers is expected to bring extensive applications. To test a potential use of hollow TiO_2 fibers in chemical gas sensors, their sensing properties to CO are investigated at room temperature.
机译:我们报告了使用同轴电纺技术制备的微米级和纳米级中空TiO_2纤维及其对CO的气敏特性。通过改变电纺的粘度,可将中空TiO_2纤维的直径控制在200 nm至几微米之间解决方案。较低的粘度会产生细长的中空纳米纤维。相反,在较高粘度的情况下获得脂肪中空微纤维。提出了一个简单的数学表达式来预测中空TiO_2纤维的直径随粘度的变化。成功地控制中空TiO_2纤维的直径有望带来广泛的应用。为了测试中空TiO_2纤维在化学气体传感器中的潜在用途,在室温下研究了它们对CO的传感特性。

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