State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, PR China.
ACS Appl Mater Interfaces. 2013 Mar;5(6):1990-6. doi: 10.1021/am302804b. Epub 2013 Feb 28.
Novel opal hydrogels with water-tunable photonic bandgap (PBG) exhibiting responses to external stimuli were self-assembled from polystyrene-co-poly(N,N-dimethylacrylamide) (PS-co-PDMAA) microspheres. The polymeric microspheres with narrow size distribution were successfully prepared in water, consisting of two regions. The inner region is rich in PS which is hard and hydrophobic; the outer region is rich in PDMAA which is soft and hydrophilic. The self-assembly of the PS-co-PDMAA hydrogel microspheres is ready induced by centrifugation and resulted in highly ordered three-dimensional (3D) photonic colloidal crystals (PCCs). With an increase of the amount of water, the PBG of the opal hydrogels shifted from the visible to near-infrared region of the electromagnetic spectrum. The maximum shift of diffraction peak positions could be larger than 500 nm with narrow full width at half maximum (FWHM) in the range of 20 to 40 nm only. The change in color was visible to the naked eye. The remarkable sensitivity to water of the lattice spacing of the opal hydrogels was repeatable after centrifugation. These observations are attributed to a reproducible degree of hydration of the hydrophilic outer region of the polymeric microspheres. Furthermore, the diffraction of the opal hydrogels was particularly sensitive to the presence of thiocyanate (SCN(-)) ions. The interaction between SCN(-) ions and DMAA repeat units is argued to block hydrogen bonds between DMAA and water molecules. Our PS-co-PDMAA opal hydrogels could be a practical system for diffraction-based detections.
新型蛋白石水凝胶具有可调节的光子带隙 (PBG),对外部刺激有响应,是由聚苯乙烯-共-聚 (N,N-二甲基丙烯酰胺) (PS-co-PDMAA) 微球自组装而成。具有较窄粒径分布的聚合物微球在水中成功制备,由两个区域组成。内部区域富含 PS,PS 具有坚硬和疏水性;外部区域富含 PDMAA,PDMAA 具有柔软和亲水性。PS-co-PDMAA 水凝胶微球的自组装通过离心诱导,形成高度有序的三维 (3D) 光子胶体晶体 (PCC)。随着水的增加,蛋白石水凝胶的 PBG 从可见光谱转移到近红外光谱区域。在 20 到 40nm 范围内,最大的衍射峰位置偏移可以大于 500nm,且半峰全宽 (FWHM) 很窄,只有 20 到 40nm。颜色的变化肉眼可见。蛋白石水凝胶晶格间距对水的显著敏感性在离心后可重复。这些观察结果归因于聚合物微球亲水区重复的可再现水合程度。此外,蛋白石水凝胶的衍射对硫氰酸根 (SCN(-)) 离子的存在特别敏感。SCN(-)离子和 DMAA 重复单元之间的相互作用被认为阻止了 DMAA 和水分子之间的氢键。我们的 PS-co-PDMAA 蛋白石水凝胶可能是一种基于衍射的检测的实用系统。