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首页> 外文期刊>ACS applied materials & interfaces >Stimuli-Responsive Microarray Films for Real-Time Sensing of Surrounding Media, Temperature, and Solution Properties via Diffraction Patterns
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Stimuli-Responsive Microarray Films for Real-Time Sensing of Surrounding Media, Temperature, and Solution Properties via Diffraction Patterns

机译:通过衍射图案实时检测刺激响应微阵列膜,用于围绕介质,温度和溶液性能

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Stimuli-responsive polymers have attracted increasing attention over the years due to their ability to alter physiochemical properties upon external stimuli. However, many stimuli-responsive polymer-based sensors require specialized and expensive equipment, which limits their applications. Here an inexpensive and portable sensing platform of novel microarray films made of stimuli-responsive polymers is introduced for the real-time sensing of various environmental changes. When illuminated by laser light, microarray films generate diffraction patterns that can reflect and magnify variations of the periodical microstructure induced by surrounding invisible parameters in real time. Stimuli-responsive polyelectrolyte complexes are structured into micropillar arrays to monitor the pH variation and the presence of calcium ions based on reversible swelling/shrinking behaviors of the polymers. A pH hysteretic effect of the selected polyelectrolyte pair is determined and explained. Furthermore, polycaprolactone microchamber arrays are fabricated and display a thermal-driven structural change, which is exploited for photonic threshold temperature detection. Experimentally observed diffraction patterns are additionally compared with rigorous coupled-wave analysis simulations that prove that induced diffraction pattern alterations are solely caused by geometrical microstructure changes. Microarray-based diffraction patterns are a novel sensing platform with versatile sensing capabilities that will likely pave the way for the use of microarray structures as photonic sensors.
机译:由于它们在外部刺激上改变了物理化学性质的能力,刺激响应性聚合物在多年上引起了越来越长的关注。然而,许多刺激响应性聚合物的传感器需要专门的和昂贵的设备,这限制了它们的应用。这里引入了由刺激响应聚合物制成的新型微阵列薄膜的廉价和便携式感测平台,用于各种环境变化的实时感测。当由激光照射时,微阵列膜产生衍射图案,其可以实时地通过周围的无形参数来反映和放大周期性微观结构的变化。刺激响应性聚电解质配合物被构造成微米阵列,以根据聚合物的可逆溶胀/收缩行为来监测pH变异和钙离子的存在。确定并解释所选聚电解质对的pH滞后效果。此外,制造了多己内酯微芯片阵列并显示出热驱动的结构变化,这被利用用于光子阈值温度检测。另外观察到实验观察到的衍射图案与严格的耦合波分析模拟,证明诱导衍射图案改变仅由几何微结构变化引起。基于微阵列的衍射图案是一种新颖的传感平台,具有多功能的传感能力,可能会为使用微阵列结构作为光子传感器铺平道路。

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