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Nanofiber-net-binary structured membranes for highly sensitive detection of trace HCl gas

机译:Nanofiber-net-binary结构化膜为高度敏感的检测微量盐酸气体

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This work describes the detection of trace hydrogen chloride (HCl) gas through analyses of the resonance frequency signal from quartz crystal microbalance (QCM) sensors coated with polyaniline (PANI) functionalized polyamide 6 (PA 6) (PANI-PA 6) nanofiber-net-binary (NNB) structured membranes. The PA 6 NNB substrate comprising nanofibers and spider-web-like nano-nets fabricated by a versatile electro-spinning/netting (ESN) process offered an ideal interface for the uniform PANI functionalization and enhanced sensing performance. Benefiting from the large specific surface area, high porosity, and strong adhesive force to the QCM electrode of the PANI-PA 6 NNB membranes, the developed HCl-selective sensors exhibited a rapid response, good reproducibility and stability, and low detection limit (7 ppb) at room temperature. Additionally, the PANI-PA 6 NNB sensing membranes presented visible color changes upon cycled exposure to HCl and ammonia, suggesting their potential application in the development of colorimetric sensors. The PANI-PA 6 NNB coated QCM sensors are considered to be a promising candidate for trace HCl gas detection in practical applications.
机译:本工作描述的检测跟踪通过分析氯化氢气体(HCl)从石英谐振频率信号水晶微量天平(药物)传感器覆盖着聚苯胺(PANI)功能化聚酰胺6 (PA结构化的膜。由纳米纤维和spider-web-like多功能nano-nets捏造电子纺线/网(ESN)提供了一个过程统一的PANI的理想接口功能化和增强传感的性能。表面积、高孔隙度和强力胶力的药物电极PANI-PA 6 NNB膜,发达HCl-selective传感器展示一个快速反应,重现性好与稳定,和较低的检出限(7磅)室温。传感膜呈现可见的颜色变化在骑车接触盐酸和氨水,表明他们的潜在应用比色传感器的发展。6 NNB涂层药物传感器被认为是有前途的候选人为微量盐酸气体检测在实际的应用程序。

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