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首页> 外文期刊>Applied Surface Science >Hydrothermal synthesis and controlled growth of hierarchical 3D flower- like MoS_2 nanospheres assisted with CTAB and their NO_2 gas sensing properties
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Hydrothermal synthesis and controlled growth of hierarchical 3D flower- like MoS_2 nanospheres assisted with CTAB and their NO_2 gas sensing properties

机译:CTAB辅助的水热合成和分层3D花状MoS_2纳米球的可控生长及其NO_2气敏特性

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Hierarchical 3D flower-like MoS2 nanospheres with the diameter of about 300 nm were successfully synthesized via a facile hydrothermal process assisted with CTAB. And we found that CTAB played a vital role on the formation of MoS2 architectures. As the concentration of CTAB increasing, MoS2 nanopowders with sheet-like, flower-like, large size spherical morphologies were synthesized. And particle sizes of synthesized powders also increased. The optimum concentration of CTAB for the well-defined 3D hierarchical spherical morphology of MoS2 was 6 g/L. In addition, a feasible formation mechanism of the morphology evolution was put forward in detail on the basis of the experimental results. The gas-sensing properties of flower-like MoS2 nanospheres were tested. The result indicated that the sensor exhibited high response and selectivity towards NO2, which may be related to the open and well-defined structures and the abundant micro reaction rooms assembled by ultrathin nanosheets.
机译:通过CTAB辅助的水热法成功地合成了直径约300 nm的分层3D花状MoS2纳米球。我们发现CTAB在MoS2体系结构的形成中起着至关重要的作用。随着CTAB浓度的增加,合成了具有片状,花状,大尺寸球形形态的MoS2纳米粉。并且合成粉末的粒度也增加。对于明确定义的MoS2 3D分层球形形态,CTAB的最佳浓度为6 g / L。此外,在实验结果的基础上,详细提出了可行的形态演化机理。测试了花状MoS2纳米球的气敏特性。结果表明该传感器对NO2表现出较高的响应度和选择性,这可能与超薄纳米片组装的开放,轮廓分明的结构以及丰富的微反应室有关。

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