Department of Chemistry, University of Alberta , Edmonton, AB, T6G 2G2 Canada.
ACS Appl Mater Interfaces. 2013 Nov 27;5(22):11977-83. doi: 10.1021/am403745k. Epub 2013 Nov 5.
Poly(N-isopropylacrylamide)-co-acrylic acid (pNIPAm-co-AAc) microgel-based thin films and etalons were fabricated via "painting" a pNIPAm-co-AAc microgel monolayer on a Au-coated substrate, followed by the deposition of another Au overlayer. Herein, in situ observation of how the pH and ionic strength (I.S.) of the painting solution influenced microgel deposition and, ultimately, the optical homogeneity and pH sensitivity of the etalon was carried out. It was shown that microgels closely pack on the Au substrate when they are deposited at pH 3.0, leading to a good optical homogeneity. Additionally, increasing the painting solution I.S. leads to a slight decrease in microgel packing density on the substrate, but enhances the ability of the microgel layer to swell, exhibiting thicker polymer layers when immersed in pH 3.0 solutions. When painting at pH 7.5, the optical homogeneity of the etalon is improved at the expense of swellability, exaggerated high I.S. We also determined the device's sensitivity to pH changes and found a maximum sensitivity when the microgels were deposited at pH 7.5 with an I.S. of 10 mM.
聚(N-异丙基丙烯酰胺)-共-丙烯酸(pNIPAm-co-AAc)微凝胶基薄膜和光学标准具通过在涂有 Au 的基底上“绘制”pNIPAm-co-AAc 微凝胶单层,然后沉积另一层 Au 覆盖层来制造。在这里,对涂覆溶液的 pH 值和离子强度(I.S.)如何影响微凝胶沉积以及最终影响标准具的光学均匀性和 pH 敏感性进行了原位观察。结果表明,当在 pH 3.0 下沉积时,微凝胶在 Au 基底上紧密堆积,从而具有良好的光学均匀性。此外,增加涂覆溶液的 I.S.会导致微凝胶在基底上的堆积密度略有降低,但会增强微凝胶层的溶胀能力,当浸入 pH 3.0 溶液中时会显示出更厚的聚合物层。当在 pH 7.5 下进行涂覆时,牺牲溶胀性可以改善标准具的光学均匀性,夸大高 I.S.。我们还确定了该器件对 pH 值变化的敏感性,并发现当微凝胶在 pH 7.5 下沉积且 I.S.为 10 mM 时,灵敏度最大。