Highly sensitive room temperature organic vapor sensor based on polybenzoxazine-derived carbon aerogel thin film composite

作者:Thubsuang Uthen; Sukanan Darunee; Sahasithiwat Somboon; Wongkasemjit Sujitra; Chaisuwan Thanyalak*
来源:Materials Science and Engineering B-Solid State Materials for Advanced Technology, 2015, 200: 67-77.
DOI:10.1016/j.mseb.2015.06.010

摘要

Gas sensing composites were fabricated using polybenzoxazine-based activated carbon aerogel as a conductive filler. The activated carbon aerogel is a nano-porous material, which has high pore volume of 0.57 cm(3)/g and surface area of 917 m(2)/g. The activated carbon aerogel/polybutadiene composite displayed good response of 11.2 and 6.7 to toluene and n-hexane, respectively, compared to those of graphite/polybutadiene composite. The activated carbon aerogel/polybutadiene composite also showed high sensitivity of 3.09 x 10(2) ppm(-1) to toluene. However, the sensitivity of activated carbon aerogel/polybutadiene composite drastically decreased to 1.99 ppm(-1) and zero when exposed to acetone and water, respectively. Contrarily, when polyvinyl alcohol was used as a matrix, the sensitivity was about 4.19 ppm(-1) to water. While the composite was found to be not sensitive to toluene. The activated carbon aerogel/polybutadiene composite also showed good recovery as the electrical resistance came back to the original value within minutes when exposed to nitrogen gas.

  • 出版日期2015-10