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Efficient Bio-Photoelectrochemical Reaction at a TiO_2 Nanowire Array-Based Triphase Interface

机译:基于TiO_2纳米线阵列的三相界面的高效生物光电化学反应

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摘要

Herein, a high-performance photoelectrochemical (PEC) bioassay system based on the PEC and oxidase-catalytic coupled reactions at an air-liquid-solid triphase joint interface is reported. The triphase joint interface is constructed by immobilizing oxidases on the top of hydrophobic TiO_2 nanowire arrays grown on transparent fluorine-doped tin oxide substrates. Such triphase reaction systems allow sufficient oxygen to constantly and rapidly transport to the reaction zone from the air phase directly, which greatly enhances and stabilizes the oxidasecatalytic reaction, leading to a ≈100-fold wider linear detection range and a higher detection accuracy compared with conventional liquid-solid diphase systems. Moreover, the single crystal nanowire arrays, possessing rapid photogenerated charge transport abilities, give the triphase PEC bioassay system a 32 times lower detection limit and a 12.8 times higher sensitivity compared with that of a randomly packed nanoparticle-based system. The design principle proposed here can be generalized to develop high-performance PEC bioassay systems for accurate analyte determination, given the availability, for a variety of oxidases.
机译:这里,报道了基于PEC和氧化酶 - 催化偶联反应的高性能光电化学(PEC)生物测定系在空气 - 固体三血管关节界面处的氧化酶催化偶联反应。通过在透明氟掺杂的氧化锡基材上生长的疏水性TiO_2纳米线阵列顶部固定氧化酶来构建三相接头界面。此类三相反应系统允许足够的氧气直接从空气相快速地运输到反应区,这大大增强和稳定了氧化催化反应,导致较宽的线性检测范围和更高的检测精度与常规相比液体固体二溴系统。此外,具有快速上光电荷输送能力的单晶纳米线阵列,使得三酶PEC生物测定系统具有32倍的检测极限,与随机包装的纳米粒子基系统相比,灵敏度较高的12.8倍。这里提出的设计原理可以广泛地开发高性能PEC生物测定系统,以便为各种氧化酶提供准确的分析物测定。

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  • 来源
    《Solar RRL》 |2020年第8期|1900185.1-1900185.6|共6页
  • 作者单位

    College of Chemistry Chemical Engineering and Materials Science Collaborative Innovation Center for New Type Urbanization and Social Governance of Jiangsu Province Soochow University Jiangsu 215123 P. R. China;

    College of Chemistry Chemical Engineering and Materials Science Collaborative Innovation Center for New Type Urbanization and Social Governance of Jiangsu Province Soochow University Jiangsu 215123 P. R. China;

    College of Chemistry Chemical Engineering and Materials Science Collaborative Innovation Center for New Type Urbanization and Social Governance of Jiangsu Province Soochow University Jiangsu 215123 P. R. China;

    College of Chemistry Chemical Engineering and Materials Science Collaborative Innovation Center for New Type Urbanization and Social Governance of Jiangsu Province Soochow University Jiangsu 215123 P. R. China;

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