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Room Temperature Ammonia Gas Sensor Based on Polyacrylonitrile/Silver@Polyaniline Nanofibers

机译:基于聚丙烯腈/银@聚苯胺纳米纤维的室温氨气传感器

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摘要

Polyacrylonitrile/ silver@polyaniline (PAN/Ag@PANI) composite nanofibers were prepared via electrospinning and photo-assisted technique. PAN nanofibers fabricated using electrospinning acted as templates, and then Ag@PANI compound were synthesized by in-situ polymerization method assisted with photo and grew onto the surface of PAN nanofibers. The obtained PAN/Ag@PANI composite nanofibers were tested as ammonia sensors at room temperature towards low detection range (400 ppb-200 ppm), and their response values were compared to that of PAN/PANI composite nanofibers produced with the same technique. The results show that the PAN/Ag@PANI composite nanofibers presented higher response values, ideal recovery time, repeatability and selectivity. But with the increase of Ag in the composite nanofibers, the response values did not improve, because Ag acted as a dopant when its content was not very high, and if there was too much Ag existed in the sensors, the electrical conductivity depended more on the silver.
机译:通过静电纺丝和光辅助技术制备了聚丙烯腈/银@聚苯胺(PAN / Ag @ PANI)复合纳米纤维。以静电纺丝法制备的PAN纳米纤维为模板,然后在光辅助下通过原位聚合法合成Ag @ PANI化合物,并在PAN纳米纤维的表面生长。将所得的PAN / Ag @ PANI复合纳米纤维作为氨传感器在室温下朝低检测范围(400 ppb-200 ppm)进行测试,并将其响应值与采用相同技术生产的PAN / PANI复合纳米纤维进行比较。结果表明,PAN / Ag @ PANI复合纳米纤维具有更高的响应值,理想的恢复时间,可重复性和选择性。但是随着复合纳米纤维中Ag的增加,响应值并没有提高,因为当Ag含量不是很高时,Ag会作为掺杂剂,如果传感器中的Ag过多,则电导率更多地取决于银。

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