Graduate School of Environmental Engineering, The University of Kitakyushu, 1-1 Hibikino, Kitakyushu 808-0135, Japan.
Anal Chem. 2010 Mar 15;82(6):2228-36. doi: 10.1021/ac901813q.
Quartz crystal microbalance (QCM) gas sensors based on the alternate adsorption of TiO(2) and polyacrilic acid (PAA) were developed for the sensitive detection of amine odors. Individual TiO(2) gel layers could be regularly assembled with a thickness of approximately 0.3 nm by the gas-phase surface sol-gel process (GSSG). The thickness of the poly(acrylic acid) (PAA) layer is dependent on its molecular weight, showing different thicknesses of approximately 0.4 nm for PAA(25) (Mw 250,000) and 0.6-0.8 nm for PAA(400) (Mw 4,000,000). The QCM sensors showed a linear response to ammonia in the concentration range 0.3-15 ppm, depending on the deposition cycle of the alternate TiO(2)/PAA layer. The ammonia binding is based on the acid-base interaction to the free carboxylic acid groups of PAA and the limit of detection (LOD) of the 20-cycle TiO(2)/PAA(400) film was estimated to be 0.1 ppm when exposed to ammonia. The sensor response was very fast and stable in a wide relative humidity (rH) range of 30-70%, showing almost the same frequency changes at a given concentration of ammonia. Sensitivity to n-butylamine and ammonia was higher than to pyridine, which is owing to the difference of molecular weight and basicity of the amine analytes. The alternate TiO(2)/PAA(400) films have a highly effective ability to capture amine odors, and the ambient ammonia concentration of 15 ppm could be condensed up to approximately 20,000 ppm inside the films.
基于 TiO(2)和聚丙烯酸 (PAA) 交替吸附的石英晶体微天平 (QCM) 气体传感器被开发用于灵敏检测胺气味。通过气相表面溶胶-凝胶工艺 (GSSG),可以将单个 TiO(2) 凝胶层规则地组装在一起,厚度约为 0.3nm。聚丙烯酸 (PAA) 层的厚度取决于其分子量,PAA(25)(Mw 250,000)的厚度约为 0.4nm,PAA(400)(Mw 4,000,000)的厚度约为 0.6-0.8nm。QCM 传感器对 0.3-15ppm 浓度范围内的氨表现出线性响应,这取决于交替 TiO(2)/PAA 层的沉积循环。氨的结合基于与 PAA 中游离羧酸基团的酸碱相互作用,并且当暴露于氨时,20 个循环的 TiO(2)/PAA(400) 膜的检测限 (LOD) 估计为 0.1ppm。在相对湿度 (rH) 为 30-70%的宽范围内,传感器响应非常快且稳定,在给定浓度的氨下显示出几乎相同的频率变化。对正丁胺和氨的灵敏度高于吡啶,这是由于胺分析物的分子量和碱性的差异。交替的 TiO(2)/PAA(400) 薄膜具有高效捕获胺气味的能力,环境中 15ppm 的氨可以在薄膜内浓缩至约 20,000ppm。