Thornton Breland T E, Harrison Andrew, Pham Amanda L, Castano Carlos E, Tang Christina
Chemical and Life Science Engineering and Mechanical and Nuclear Engineering, Virginia Commonwealth University, 601 West Main Street, Richmond, Virginia 23284, United States.
ACS Omega. 2018 Mar 28;3(3):3587-3591. doi: 10.1021/acsomega.8b00054. eCollection 2018 Mar 31.
Hydrogen chloride (HCl) gas is a hazardous byproduct of industrial processes. Colorimetric approaches to facilitate portable and remote detection are especially desirable. We graft polyaniline to the surface of electrospun nylon nanofibers to minimize mass transfer. Using the resulting nanofibers, we demonstrate colorimetric detection of HCl at sub-ppm levels. We investigated the reusability of the fibers and observed a twofold increase in the limit of detection with multiple uses because of dedoping of the PANi indicated by elemental analysis. The limit of detection using visual detection was compared to spectrophotometric analysis. The Δ from CIE LAB color space analysis via diffuse reflectance spectroscopy enhances the limit of detection by ∼fivefold when compared to visual detection. This analysis is a promising approach for remote detection using simple commercial digital cameras to achieve low limits of detection.
氯化氢(HCl)气体是工业过程中产生的有害副产物。促进便携式和远程检测的比色法尤其令人期待。我们将聚苯胺接枝到电纺尼龙纳米纤维表面以最小化传质。使用所得的纳米纤维,我们展示了在亚ppm水平下对HCl的比色检测。我们研究了纤维的可重复使用性,并观察到由于元素分析表明聚苯胺去掺杂,多次使用后检测限提高了两倍。将目视检测的检测限与分光光度分析进行了比较。与目视检测相比,通过漫反射光谱法进行的CIE LAB颜色空间分析的Δ将检测限提高了约五倍。这种分析是一种很有前景的远程检测方法,使用简单的商用数码相机即可实现低检测限。