State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai 201620, China.
Nanoscale. 2012 Dec 7;4(23):7585-92. doi: 10.1039/c2nr32730a.
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.
本文通过分析涂有多酸掺杂聚酰亚胺功能化聚酰胺 6(PA6)纳米纤维网-二元(NNB)结构膜的石英晶体微天平(QCM)传感器的共振频率信号,描述了痕量氯化氢(HCl)气体的检测。由一种通用的电纺丝/网(ESN)工艺制造的 PA6 NNB 基底包含纳米纤维和蜘蛛网状纳米网,为均匀的聚酰亚胺功能化和增强的传感性能提供了理想的界面。受益于聚酸掺杂聚酰胺 6 NNB 膜的大比表面积、高孔隙率和对 QCM 电极的强粘附力,所开发的 HCl 选择性传感器在室温下表现出快速响应、良好的重现性和稳定性以及低检测限(7ppb)。此外,PANI-PA6 NNB 传感膜在循环暴露于 HCl 和氨时呈现出可见的颜色变化,表明它们在开发比色传感器方面具有潜在的应用。PANI-PA6 NNB 涂覆的 QCM 传感器被认为是实际应用中痕量 HCl 气体检测的有前途的候选者。