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首页> 外文期刊>ACS Omega >Fabrication and Optimization of Conductive Paper Based on Screen-Printed Polyaniline/Graphene Patterns for Nerve Agent Detection
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Fabrication and Optimization of Conductive Paper Based on Screen-Printed Polyaniline/Graphene Patterns for Nerve Agent Detection

机译:基于丝网印刷的聚苯胺/石墨烯图案的导电纸的制备与优化

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In this work, a high-performance sensor capable of effectively detecting nerve gas, a type of chemical warfare agent, was realized by conductive paper with polyaniline (PANI) nanofiber and graphene sheet. To realize the high-performance nerve gas sensor, dimethyl methylphosphonate (DMMP) was used as a model of nerve gas, and the conductive paper sensor was used to detect DMMP at a concentration of parts per billion within a few seconds. Improvements in electrical properties and sensor performance of conductive papers were realized by the addition of optimized amounts of graphene (0.14 wt %) and polyethylene oxide (13.1 wt %). In addition, poly(vinylbutyral-co-vinyl alcohol-co-vinyl acetate) (P(VB-co-VA-co-VAc)) copolymer significantly improved the intermolecular forces between PANI nanofiber, graphene sheet, and cellulosic paper. Conductive patterns containing PANI nanofiber/graphene cofillers were fabricated into sensor electrodes of various sizes and shapes by screen printing. The prepared conductive papers were exposed under DMMP at various concentrations of at least 3 to at most 30?000 ppb. The conductive paper sensor containing PANI nanofiber/graphene cofillers exhibited a minimum detectable level of 3 ppb, a response time of 2 s, and a recovery time of 35 s, and the sensor realized a high life cycle. Furthermore, the conductive paper sensor demonstrated excellent selectivity to selectively detect DMMP from other harmful substances, such as methanol and chloroform. It is expected that the conductive paper sensor will be a very useful means to protect the safety of people when it is widely spread.
机译:在这项工作中,通过具有聚苯胺(PANI)纳米纤维的导电纸和石墨烯片,实现了一种能够有效检测一种化学战剂神经毒气的高性能传感器。为了实现高性能的神经气体传感器,使用了甲基膦酸二甲酯(DMMP)作为神经气体的模型,并使用导电纸传感器在几秒钟内以十亿分之几的浓度检测DMMP。通过添加优化量的石墨烯(0.14 wt%)和聚环氧乙烷(13.1 wt%),可以实现导电纸的电性能和传感器性能的改善。另外,聚乙烯醇缩丁醛-共-乙烯醇-共-乙酸乙烯酯(P(VB-co-VA-co-VAc))共聚物显着提高了PANI纳米纤维,石墨烯片和纤维素纸之间的分子间力。通过丝网印刷将包含PANI纳米纤维/石墨烯共填充剂的导电图案制成各种尺寸和形状的传感器电极。将制得的导电纸在DMMP下以至少3到30,000ppb的各种浓度暴露。包含PANI纳米纤维/石墨烯共填充剂的导电纸传感器的最低可检测水平为3 ppb,响应时间为2 s,恢复时间为35 s,该传感器实现了高使用寿命。此外,导电纸传感器具有出色的选择性,可以选择性地从其他有害物质(例如甲醇和氯仿)中检测DMMP。可以预期,导电纸传感器在广泛传播时将是保护人们安全的非常有用的手段。

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