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Ultrathin Photonic Polymer Gel Films Templated by Non-Close-Packed Monolayer Colloidal Crystals to Enhance Colorimetric Sensing

机译:通过非封闭式单层胶体晶体模拟超薄光子聚合物凝胶膜,增强比色感测

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摘要

Responsive polymer-based sensors have attracted considerable attention due to their ability to detect the presence of analytes and convert the detected signal into a physical and/or chemical change. High responsiveness, fast response speed, good linearity, strong stability, and small hysteresis are ideal, but to gain these properties at the same time remains challenging. This paper presents a facile and efficient method to improve the photonic sensing properties of polymeric gels by using non-close-packed monolayer colloidal crystals (ncp MCCs) as the template. Poly-(2-vinyl pyridine) (P2VP), a weak electrolyte, was selected to form the pH-responsive gel material, which was deposited onto ncp MCCs obtained by controlled O2 plasma etching of close-packed (cp) MCCs. The resultant ultrathin photonic polymer gel film (UPPGF) exhibited significant improvement in responsiveness and linearity towards pH sensing compared to those prepared using cp MCCs template, achieving fast visualized monitoring of pH changes with excellent cyclic stability and small hysteresis loop. The responsiveness and linearity were found to depend on the volume and filling fraction of the polymer gel. Based on a simple geometric model, we established that the volume increased first and then decreased with the decrease of template size, but the filling fraction increased all the time, which was verified by microscopy observations. Therefore, the responsiveness and linearity of UPPGF to pH can be improved by simply adjusting the etching time of oxygen plasma. The well-designed UPPGF is reliable for visualized monitoring of analytes and their concentrations, and can easily be combined in sensor arrays for more accurate detection.
机译:响应基于聚合物的传感器已经引起了相当多的关注,因为它们以检测分析物的存在和检测到的信号转换成一个物理和/或化学变化的能力。高响应速度,响应速度快,线性度好,稳定性强,小的滞后是理想的,但同时仍充满挑战,以获得这些属性。本文提出了一种容易和有效的方法,通过使用非密堆积单层胶体晶体(NCP的MCC)为模板,以提高聚合物凝胶的光子传感特性。聚 - (2-乙烯基吡啶)(P2VP),弱电解质,选择以形成所述pH响应性凝胶材料,将其沉积到NCP的MCC由控制O 2等离子体密堆积(CP)的MCC的蚀刻获得。感测的那些相比用cp的MCC模板制备,实现快速可视化监控的具有优异的循环稳定性和小磁滞回线的pH变化超薄光子聚合物凝胶膜(UPPGF)将所得的表现出在朝向PH值的响应和线性显著改善。响应和线性被发现依赖于聚合物凝胶的体积和填充率。基于一个简单的几何模型,我们建立了体积先增加再与模板尺寸的减小而减小,但填充率增加了所有的时间,这是通过显微镜观察验证。因此,UPPGF对pH响应性和线性度可通过简单地调节氧气等离子体的蚀刻时间加以改进。精心设计的UPPGF是可靠可视化的分析物监测和它们的浓度,并且可以容易地在传感器阵列用于更精确的检测进行组合。

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