Lova Paola, Manfredi Giovanni, Bastianini Chiara, Mennucci Carlo, Buatier de Mongeot Francesco, Servida Alberto, Comoretto Davide
ACS Appl Mater Interfaces. 2019 May 8;11(18):16872-16880. doi: 10.1021/acsami.9b03946. Epub 2019 Apr 23.
The lack of cost-effective systems for the assessment of air pollutants is a concern for health and safety in urban and industrial areas. The use of polymer thin films as label-free colorimetric sensors featuring specific interactions with pollutants would then represent a paradigm shift in environmental monitoring and packaging technologies, allowing to assess air quality, formation of byproducts in closed environment, and the barrier properties of the polymers. To this end, all-polymer distributed Bragg reflectors represent a promising approach toward a reliable and cost-effective transduction of chemical stimuli and effective colorimetric label-free selective detectors. We show selectivity attained by specific interactions between the polymer and analytes. Such interactions drive the analyte intercalation through the polymer structure and its kinetics, converting it in a dynamic optical response which is at the basis of the Flory-Huggins photonic sensors. The multivariate analyses of the response kinetics also allow distinguishing binary mixtures. Additionally, we demonstrate that such optical responses can be used to esteem the diffusion coefficients of small molecules within polymer media via simple UV-vis spectroscopy retrieving data comparable to those obtained with state-of-the-art gravimetric procedures. Last, we assess the figures of merit of the sensors in terms of lower detection limit, sensitivity, and reversibility, demonstrating that such devices can pave the way to an innovative, simple, and low-cost detection method integrable to in situ assessment of barrier polymers used for the encapsulation of optoelectronic devices, food packaging, and goods storage in general.
缺乏用于评估空气污染物的经济高效系统是城市和工业区健康与安全方面的一个问题。使用聚合物薄膜作为与污染物具有特定相互作用的无标记比色传感器,将代表环境监测和包装技术的范式转变,从而能够评估空气质量、封闭环境中副产物的形成以及聚合物的阻隔性能。为此,全聚合物分布式布拉格反射器是实现可靠且经济高效的化学刺激转换以及有效的无标记比色选择性探测器的一种有前景的方法。我们展示了聚合物与分析物之间通过特定相互作用实现的选择性。这种相互作用驱动分析物通过聚合物结构进行插层及其动力学过程,将其转化为一种动态光学响应,这是弗洛里 - 哈金斯光子传感器的基础。对响应动力学的多变量分析还能够区分二元混合物。此外,我们证明这种光学响应可通过简单的紫外 - 可见光谱用于估算小分子在聚合物介质中的扩散系数,所获取的数据与通过最先进的重量法获得的数据相当。最后,我们从检测下限、灵敏度和可逆性方面评估了传感器的性能指标,表明此类设备可为一种创新、简单且低成本的检测方法铺平道路,该方法可集成到用于封装光电器件、食品包装以及一般货物存储的阻隔聚合物的原位评估中。