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Motion-Based pH Sensing Based on the Cartridge-Case-like Micromotor

机译:基于盒式微电机的基于运动的pH传感

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摘要

In this paper, we report a novel cartridge-case-like micromotor. The micromotor, which is fabricated by the template synthesis method, consists of a gelatin shell with platinum nanoparticles decorating its inner surface. Intriguingly, the resulting cartridge-case-like structure exhibits a pH dependent "open and close" feature, which originates from the pH responsiveness of the gelatin material. On the basis of the catalytic activity of the platinum nanoparticle inside the gelatin shell, the resulting cartridge case-like structure is capable of moving autonomously in the aqueous solution containing the hydrogen peroxide fuel. More interestingly, we find out that the micromotor can be utilized as a motion-based pH sensor over the whole pH range. The moving velocity of the micromotor increases monotonically with the increase of pH of the analyte solution. Three different factors are considered to be responsible for the proportional relation between the motion speed and pH of the analyte solution: the peroxidase-like and oxidase-like catalytic behavior of the platinum nanoparticle at low and high pH, the volumetric decomposition of the hydrogen peroxide under the basic condition and the pH-dependent catalytic activity of the platinum nanoparticle caused by the swelling/deswelling behavior of the gelatin material. The current work highlights the impact of the material properties on the motion behavior of a micromotor, thus paving the way toward its application in the motion-based sensing field.
机译:在本文中,我们报告了一种新型的盒式微电机。通过模板合成方法制造的微电机由明胶壳和内表面装饰有铂纳米粒子组成。有趣的是,所得的盒-盒状结构表现出pH依赖性的“打开和关闭”特征,其源于明胶材料的pH响应性。基于明胶壳内部的铂纳米颗粒的催化活性,所得的盒状盒状结构能够在含有过氧化氢燃料的水溶液中自主移动。更有趣的是,我们发现微电机可以在整个pH范围内用作基于运动的pH传感器。微型电动机的移动速度随分析物溶液pH值的增加而单调增加。分析物溶液的运动速度和pH之间的比例关系被认为是三个不同的因素:铂纳米颗粒在低和高pH下的过氧化物酶样和氧化酶样催化行为,过氧化氢的体积分解在碱性条件下以及由明胶材料的溶胀/溶胀行为引起的铂纳米颗粒的pH依赖性催化活性。当前的工作突出了材料特性对微电机运动行为的影响,从而为在基于运动的传感领域中的应用铺平了道路。

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