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Electrospun zinc oxide nanospheres for ultrasensitive room-temperature gas sensors

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【作者】 钟福如张永才王琳琳周杰

【Author】 ZHONG Fu-ru;ZHANG Yong-cai;WANG Lin-lin;ZHOU Jie;College of Information Science and Technology, Shihezi University;

【机构】 College of Information Science and Technology, Shihezi University

【摘要】 Zinc oxide(ZnO) nanospheres with excellent sensing ability towards formaldehyde were successfully synthesized using a single-capillary electrospinning method. Structural and electrical characteristics of the as-synthesized ZnO nanospheres were systematically investigated. The scanning electron microscope(SEM) images clearly display a novel structure of ZnO with pores distributed on the surface of the nanospheres. The results demonstrate that the ZnO nanospheres possess excellent formaldehyde gas-sensing properties. At room temperature, the response of ZnO nanospheres to formaldehyde with concentration of 100 ppm is determined to be 126.3. In addition, the ZnO nanosphere sensors exhibit short response time of 30 s and short recovery time of 2 s. These excellent gas-sensing properties make the ZnO nanospheres a promising material for the application in environmental monitoring devices.

【Abstract】 Zinc oxide(ZnO) nanospheres with excellent sensing ability towards formaldehyde were successfully synthesized using a single-capillary electrospinning method. Structural and electrical characteristics of the as-synthesized ZnO nanospheres were systematically investigated. The scanning electron microscope(SEM) images clearly display a novel structure of ZnO with pores distributed on the surface of the nanospheres. The results demonstrate that the ZnO nanospheres possess excellent formaldehyde gas-sensing properties. At room temperature, the response of ZnO nanospheres to formaldehyde with concentration of 100 ppm is determined to be 126.3. In addition, the ZnO nanosphere sensors exhibit short response time of 30 s and short recovery time of 2 s. These excellent gas-sensing properties make the ZnO nanospheres a promising material for the application in environmental monitoring devices.

【关键词】 formaldehydesystematicallyporesclearlygasescalcinationcrystallinecapillaryZincspheres
【基金】 supported by the National Natural Science Foundation of China(No.61662063);the High Level Talent Research Project of Shihezi University(No.RCZX201530)
  • 【文献出处】 Optoelectronics Letters ,光电子快报(英文版) , 编辑部邮箱 ,2018年04期
  • 【分类号】TB383.1;TP212
  • 【被引频次】3
  • 【下载频次】50
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