首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >1T/2H-MoS2 engineered by in-situ ethylene glycol intercalation for improved toluene sensing response at room temperature
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1T/2H-MoS2 engineered by in-situ ethylene glycol intercalation for improved toluene sensing response at room temperature

机译:1T / 2H-MOS2通过原位乙二醇插入工程,用于改善室温的甲苯传感响应

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Molybdenum sulfide (MoS2) was engineered by intercalation of ethylene glycol to form 2H (semiconductor) and 1T (metallic) phases. MoS2 was successfully synthesized under solvothermal conditions with different solvents. Water, ethylene glycol (EG), and a mixture of water and EG were used as the solvent. The obtained samples were denoted as MoS2 (W), MoS2 (EG), and MoS2 (EG:W), respectively. The use of ethylene glycol as a solvent expands the (0 0 2) lattice spacing which indicated the expansion of interlayer spacing by intercalation of EG through solvothermal reaction. The MoS2 intercalated with EG possessed higher 1T phase compared to MoS2 without any intercalation. The obtained MoS2 was applied for room temperature toluene sensing with different relative humidity (RH, 20, 40, 60, 80%). The increase of relative humidity could continuously increase the base resistance and also the sensing response of MoS2 (W) and MoS2 (EG:W). For MoS2 (EG), 60% relative humidity showed the optimum condition for sensing applications. The all MoS2 (W), MoS2 (EG), and MoS2 (EG:W) had good sensing performance at 60% RH with sensing ability (Delta R/R-air%) in 100 ppm toluene around 12.50, 14.53, 16.29%, respectively. 1T-MoS2 is taking a major contribution on the sensing properties of MoS2. (C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:通过将乙二醇插入乙二醇以形成2H(半导体)和1T(金属)相的钼(MOS2)工程化。 MOS2在具有不同溶剂的溶剂热条件下成功地合成。水,乙二醇(例如)和水的混合物和例如用作溶剂。所得样品分别表示为MOS2(W),MOS2(例如)和MOS2(例如:W)。用乙二醇作为溶剂膨胀(0 0 2)晶格间隔,表示通过例如通过溶剂热反应的插入嵌入中间间隔的膨胀。与MOS2相比,MOS2与例如具有更高的1T相位的而没有任何插入。通过不同的相对湿度(RH,20,40,60,80%)施加所获得的MOS2以进行室温甲苯感测。相对湿度的增加可以连续增加基础电阻以及MOS2(W)和MOS2的感测响应(例如:W)。对于MOS2(例如),60%的相对湿度显示出感测应用的最佳条件。所有MOS2(W),MOS2(例如)和MOS2(例如:W)在60%RH下具有良好的感测性能,具有100ppm甲苯的感测能力(Delta r / R-Air%)约为12.50,14.53,16.29% , 分别。 1T-MOS2对MOS2的感测性能进行了主要贡献。 (c)2020日本粉末科技会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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