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Bulk/Surface Defects Engineered TiO2 Nanotube Photonic Crystals Coupled with Plasmonic Gold Nanoparticles for Effective in Vivo Near-Infrared Light Photoelectrochemical Detection

机译:散装/表面缺损工程化TiO2纳米管光子晶体与等离子体金纳米颗粒耦合,用于有效的体内近红外光光电子化学检测

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摘要

Photoelectrochemical (PEC) techniques are of fundamental and practical importance, and they have been widely used for solar energy conversion and experimental protection. Besides these important applications, an emerging and fast developing PEC application of PEC bioanalysis is receiving more attention from both academic and clinic communities. However, the typical PEC biosensing is still limited under illumination of ultraviolet and visible (UV/vis) light, which hampers its in vivo detection in deep tissues. Expanding the optical absorption wavelength of photoelectrodes from the UV/vis light region into the near-infrared (NIR) light region is highly desirable due to its deep tissue penetrability and minimal invasiveness for organisms, but the exploration of a facile strategy to implement efficient NIR absorption with biocompatible materials is still a big challenge. Herein, under the guidance of theorical calculations, we propose a strategy through modulation of bulk/surface defects and decoration of Au nanoparticles on TiO2 nanotube photonic crystals to implement efficient NIR response and thus successfully realize sensitive and selective PEC detection of antibiotics in real bio- and experimental-samples under NIR illumination. In addition, we first implement the in vivo PEC detection under illumination of NIR light. We have faith that this new NIR photoelectric responsive strategy will provide a broad platform for detection of life-related biomolecules in deep tissues or even in vivo for real-time measurement and shed light on the intrinsic connections between biomarkers and clinical diseases.
机译:光电化学(PEC)技术具有基础和实用的重要性,它们已广泛用于太阳能转换和实验保护。除了这些重要的应用外,PEC生物分析的新兴和快速发展的PEC应用是从学术和诊所社区获得更多的关注。然而,典型的PEC生物溶解在紫外线和可见(UV / VIS)光的照明下仍然有限,其妨碍其在深层组织中的体内检测。由于其深层组织渗透性和生物体的最小侵入性,从UV / Vis光区域扩展到近红外(NIR)光区域中的光电极的光学电极光电波长是非常理想的,而是探索实施效率的促进策略用生物相容性材料吸收仍然是一个很大的挑战。在本文中,在理论计算的指导下,我们通过调制TiO2纳米管光子晶体的块状/表面缺陷和装饰来提出一种策略,以实现高效的NIR反应,从而成功地实现了真实生物中抗生素的敏感和选择性PEC检测和NIR照明下的实验样品。此外,我们首先在NIR光的照明下实现体内PEC检测。我们有信心这一新的NIR光电响应策略将提供广泛的平台,用于检测深层组织中的生命相关的生物分子,甚至在体内进行实时测量和脱落生物标志物与临床疾病的内在联系。

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  • 来源
    《Analytical chemistry》 |2019年第22期|共7页
  • 作者单位

    East China Normal Univ Sch Chem &

    Mol Engn Shanghai Key Lab Green Chem &

    Chem Proc Shanghai 200241 Peoples R China;

    East China Normal Univ Sch Chem &

    Mol Engn Shanghai Key Lab Green Chem &

    Chem Proc Shanghai 200241 Peoples R China;

    Chongqing Univ Inst Struct &

    Funct Chongqing 400030 Peoples R China;

    East China Normal Univ Sch Chem &

    Mol Engn Shanghai Key Lab Green Chem &

    Chem Proc Shanghai 200241 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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