首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Fabrication of C-doped WO3 nanoparticle cluster arrays from PS-b-P4VP for room temperature H-2 sensing
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Fabrication of C-doped WO3 nanoparticle cluster arrays from PS-b-P4VP for room temperature H-2 sensing

机译:从PS-b-P4VP制备C掺杂的WO3纳米粒子簇阵列用于室温H-2感测

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摘要

C-doped WO3 based room temperature hydrogen sensors including nanoparticle cluster arrays and nanorods were successfully prepared by a PS-b-P4VP template based method. AFM, TEM and XPS are used to characterize the structure and composition of the samples. Analyses indicate that the C-doped WO3 nanoparticle cluster arrays are arranged in a beautiful hexagonal configuration and they are interconnected by a superthin carbon film. The cluster with sizes in the range of 12-15 nm is composed of several 4-6 nm nanocrystallites. An improved room temperature hydrogen response is found on C doped WO3 nanoparticle cluster arrays, whose response sensitivity (S), response time and recovery time are 114, 162 s and 108 s, respectively. Three aspects are used to analyze the reasons for the improved room temperature hydrogen response; the study indicates the great potential of the block copolymer based method to prepare excellent WO3 based room temperature H-2 sensors.
机译:通过基于PS-b-P4VP模板的方法成功制备了C掺杂的基于WO3的室温氢传感器,包括纳米粒子簇阵列和纳米棒。 AFM,TEM和XPS用于表征样品的结构和组成。分析表明,C掺杂的WO3纳米粒子簇阵列以美丽的六边形配置排列,并通过超薄碳膜相互连接。尺寸在12-15 nm范围内的簇由几个4-6 nm纳米微晶组成。在掺C的WO3纳米颗粒簇阵列上发现了改善的室温氢响应,其响应灵敏度(S),响应时间和恢复时间分别为114、162 s和108 s。从三个方面分析了室温氢响应改善的原因。该研究表明,基于嵌段共聚物的方法具有制备基于WO3的室温H-2传感器的巨大潜力。

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