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Ultrathin polymer gel-infiltrated monolayer colloidal crystal films for rapid colorimetric chemical sensing

机译:超薄聚合物凝胶渗透的单层胶体晶体膜,用于快速比色化学传感

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摘要

A new optical motif compatible with an ultrathin polymer gel film for chemical sensing was fabricated by infiltrating polymer gel into an inactive scaffold of monolayer colloidal crystals. The composite film, denoted as PG-MCC, features submicron thickness and presents thin film interference with only one reflectance peak in the visible region because of appropriate optical thickness. Consequently, the film exhibits distinct reflective color, which can be easily tuned by adjusting the fabrication parameters. In this study, PG-MCC was demonstrated as a pH sensor by using a weak polyelectrolyte poly-(2-vinyl pyridine) (P2VP). The pH-induced swelling and deswelling of P2VP gel led to a substantial thickness change and hence a reflectance peak shift of PG-MCC. Highly reversible, linear, reliable and very fast responses to pH variations were exhibited. Moreover, a colorimetric readout was readily achieved, making it promising for continuous monitoring of environmental analytes by the naked eye.
机译:通过将聚合物凝胶渗透到单层胶体晶体的惰性支架中,制造了一种与用于化学传感的超薄聚合物凝胶膜兼容的新光学图案。复合膜(称为PG-MCC)具有亚微米厚度,并且由于具有适当的光学厚度,因此在可见光区域仅具有一个反射峰的情况下呈现出薄膜干涉。因此,该膜表现出明显的反射色,可以通过调节制造参数轻松地对其进行调节。在这项研究中,使用弱聚电解质聚(2-乙烯基吡啶)(P2VP)证明PG-MCC作为pH传感器。 pH诱导的P2VP凝胶溶胀和消肿导致厚度的显着变化,从而导致PG-MCC的反射峰移动。展示了对pH变化的高度可逆,线性,可靠和非常快速的响应。而且,比色读数很容易实现,因此有希望用肉眼连续监测环境分析物。

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