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Photonic Crystal Structures with Tunable Structure Color as Colorimetric Sensors

机译:具有可调结构颜色的光子晶体结构作为比色传感器

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摘要

Colorimetric sensing, which transduces environmental changes into visible color changes, provides a simple yet powerful detection mechanism that is well-suited to the development of low-cost and low-power sensors. A new approach in colorimetric sensing exploits the structural color of photonic crystals (PCs) to create environmentally-influenced color-changeable materials. PCs are composed of periodic dielectrics or metallo-dielectric nanostructures that affect the propagation of electromagnetic waves (EM) by defining the allowed and forbidden photonic bands. Simultaneously, an amazing variety of naturally occurring biological systems exhibit iridescent color due to the presence of PC structures throughout multi-dimensional space. In particular, some kinds of the structural colors in living organisms can be reversibly changed in reaction to external stimuli. Based on the lessons learned from natural photonic structures, some specific examples of PCs-based colorimetric sensors are presented in detail to demonstrate their unprecedented potential in practical applications, such as the detections of temperature, pH, ionic species, solvents, vapor, humidity, pressure and biomolecules. The combination of the nanofabrication technique, useful design methodologies inspired by biological systems and colorimetric sensing will lead to substantial developments in low-cost, miniaturized and widely deployable optical sensors.
机译:比色传感将环境变化转换为可见的颜色变化,提供了一种简单而强大的检测机制,非常适合于低成本和低功耗传感器的开发。比色传感的一种新方法利用光子晶体(PCs)的结构颜色来创建受环境影响的变色材料。 PC由周期性电介质或金属电介质纳米结构组成,这些结构通过定义允许和禁止的光子带影响电磁波(EM)的传播。同时,由于整个多维空间中都存在PC结构,令人惊奇的各种自然生物系统都呈现出虹彩。特别地,活生物体中的某些结构颜色可以响应于外部刺激而可逆地改变。根据从自然光子结构中学到的经验,详细介绍了一些基于PC的比色传感器的特定示例,以展示其在实际应用中的空前潜力,例如温度,pH,离子物种,溶剂,蒸汽,湿度,压力和生物分子。纳米制造技术,受生物系统和比色传感启发的有用设计方法的结合将导致低成本,小型化和可广泛部署的光学传感器的实质性发展。

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