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首页> 外文期刊>Journal of materials science >A facile microwave synthesis of rGO, ZrO_2 and rGO-ZrO_2 nanocomposite and their room temperature gas sensing properties
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A facile microwave synthesis of rGO, ZrO_2 and rGO-ZrO_2 nanocomposite and their room temperature gas sensing properties

机译:简便的微波合成rGO,ZrO_2和rGO-ZrO_2纳米复合材料及其室温气体传感特性

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摘要

Microwave irradiation technique provides a simple and quick synthesis route for nanomaterials at controlled experimental conditions. In this view, nanostructures of rGO, ZrO2, and rGO-ZrO2 composite were synthesized using microwave synthesis technique. Herein, we experimented the preparation of rGO using optimized conditions using convection mode at 373 K in a commercial microwave oven. Structural properties revealed the formation of mixed phases of the orthorhombic and rhombohedral crystal structure of ZrO2. The preferential plane orientation was found to be in c-axis (002) for rGO-ZrO2 nanocomposite, which revealed the predominance of rGO in the nanocomposite. Morphology of the prepared nanostructures exhibited agglomerated sheets, denser nanograins and randomly aggregated nanosheets for rGO, ZrO2, and mixed nanocomposite respectively. Room temperature gas sensing properties of the prepared nanostructures were investigated and reported. rGO showed responses of 5.3 and 5.2 towards 200 ppm of trimethylamine (TMA) and methanol. ZrO2 nanostructure showed a response of 35 towards 200 ppm of ammonia with response-recovery times of 91 and 6 s.
机译:微波辐射技术在受控的实验条件下为纳米材料提供了一种简单,快速的合成途径。因此,使用微波合成技术合成了rGO,ZrO2和rGO-ZrO2复合材料的纳米结构。在本文中,我们使用对流模式在373 K的商用微波炉中优化条件下,对rGO的制备进行了实验。结构性质揭示了ZrO2的正交和菱面体晶体结构的混合相的形成。发现rGO-ZrO2纳米复合材料的优先平面取向为c轴(002),这揭示了rGO在纳米复合材料中的优势。制备的纳米结构的形态分别表现为rGO,ZrO2和混合纳米复合材料的团聚片,致密纳米颗粒和随机聚集的纳米片。研究并报道了制备的纳米结构在室温下的气敏特性。 rGO对200 ppm三甲胺(TMA)和甲醇的响应分别为5.3和5.2。 ZrO2纳米结构对200 ppm的氨水显示35的响应,响应恢复时间为91和6 s。

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