Kang Min-A, Ji Seulgi, Kim Seongjun, Park Chong-Yun, Myung Sung, Song Wooseok, Lee Sun Sook, Lim Jongsun, An Ki-Seok
Thin Film Materials Research Center, Korea Research Institute of Chemical Technology Daejeon 305-600 Republic of Korea
Department of Energy Science, Sungkyunkwan University Suwon Gyeonggi-do 440-746 Republic of Korea.
RSC Adv. 2018 Mar 27;8(22):11991-11996. doi: 10.1039/c8ra01184b. eCollection 2018 Mar 26.
Highly sensitive and wearable chemical sensors for the detection of toxic gas molecules are given significant attention for a variety of applications in human health care and environmental safety. Herein, we demonstrated fiber-type gas sensors based on graphene oxide functionalized with organic molecules such as heptafluorobutylamine (HFBA), 1-(2-methoxyphenyl)piperazine (MPP), and 4-(2-keto-1-benzimidazolinyl)piperidine (KBIP) by assembling functionalized graphene oxide (FGO) on a single yarn fabric. These gas sensors of FGO on yarn exhibited extraordinarily higher sensitivity upon exposure to gas molecules than chemically reduced graphene oxide due to many active functional groups on the GO surface. Furthermore, the mechanical stability and chemical durability of the resulting gas sensors are well-maintained. Based on these results, we expected that our sensors with high sensitive and wearability will provide a good premise for wearable chemical sensors-based multidisciplinary applications.
用于检测有毒气体分子的高灵敏度可穿戴化学传感器在人类医疗保健和环境安全的各种应用中受到了广泛关注。在此,我们通过在单纱织物上组装功能化氧化石墨烯(FGO),展示了基于用七氟丁胺(HFBA)、1-(2-甲氧基苯基)哌嗪(MPP)和4-(2-酮-1-苯并咪唑啉基)哌啶(KBIP)等有机分子功能化的氧化石墨烯的纤维型气体传感器。由于氧化石墨烯表面存在许多活性官能团,这些纱线上的FGO气体传感器在暴露于气体分子时表现出比化学还原氧化石墨烯更高的灵敏度。此外,所得气体传感器的机械稳定性和化学耐久性得到了很好的保持。基于这些结果,我们期望我们的高灵敏度和可穿戴传感器将为基于可穿戴化学传感器的多学科应用提供良好的前提条件。