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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Biochemical-to-optical signal transduction by pH sensitive organic-inorganic hybrid Bragg stacks with a full color display
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Biochemical-to-optical signal transduction by pH sensitive organic-inorganic hybrid Bragg stacks with a full color display

机译:pH敏感的有机-无机杂化布拉格堆叠具有全彩显示的生化信号到光信号的传递

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摘要

A synthetic route to attain environment-sensitive thin-film Bragg stacks (BSs) that behave as a kind of visual signal transducer is shown. Herein, organic-inorganic hybrid BSs are fabricated by alternating thin layers of poly(N,N'-dlmethylaminoethyl methacrylate) (PDMAEMA) and titanium dioxide through spin-coating, a facile, reproducible and cost-efficient approach. The BSs display bright non-bleaching structural color over the entire visible region, which arises from periodic modulation of the refractive index. Tailoring of optical properties is achieved by regulation of slab periodicity and/or introduction of planar defects. Since alteration of hydrogen ion concentration can cause the swelling transition of the responsive polymeric layer, PDMAEMA, color changes of the as-prepared BSs could be initiated by different pH values of aqueous media. Therefore, transformation of chemical signals into optical effects is obtained for analytical applications. The platform furnishes us an opportunity to realize biochemical-to-optical signal transduction by coupling it with a highly specific enzymatic reaction, glucose oxidation reaction catalyzed by the enzyme glucose oxidase. A dramatic photonic bandgap shift, more than 200 nm, makes it direct and convenient to differentiate the reflective color using the naked eyes. Besides, the intriguing characteristics make the Bragg stacks eminently suitable for other applications, such as environmental monitoring and medical diagnostics.
机译:显示了一种合成途径,该途径可实现对环境敏感的薄膜布拉格堆叠(BSs),其行为类似于一种视觉信号换能器。在本文中,有机-无机混合BS是通过一种简便,可复制且具有成本效益的方法,通过旋转涂覆交替涂覆聚甲基丙烯酸N(N,N'-二甲基氨基乙基甲基酯)(PDMAEMA)和二氧化钛的薄层而制成的。 BS在整个可见光区域显示明亮的非漂白结构色,这是由折射率的周期性调制引起的。通过调节平板周期和/或引入平面缺陷来实现光学性能的定制。由于氢离子浓度的变化会引起响应性聚合物层PDMAEMA的溶胀转变,因此所制备的BS的颜色变化可能是由水性介质的不同pH值引发的。因此,获得了将化学信号转换成光学效果以用于分析应用的功能。该平台为我们提供了一个机会,可通过将其与高度特异性的酶促反应(葡萄糖氧化酶催化的葡萄糖氧化反应)偶联来实现生化信号到光信号的转导。超过200 nm的惊人的光子带隙位移使直接和方便地用裸眼区分反射色成为可能。此外,令人着迷的特性使布拉格堆栈非常适合其他应用,例如环境监测和医学诊断。

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