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首页> 外文期刊>RSC Advances >Constructing a TiO2/PDA core/shell nanorod array electrode as a highly sensitive and stable photoelectrochemical glucose biosensor
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Constructing a TiO2/PDA core/shell nanorod array electrode as a highly sensitive and stable photoelectrochemical glucose biosensor

机译:构造TiO2 / PDA芯/壳纳米棒阵列电极作为高敏感且稳定的光电化学葡萄糖生物传感器

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Developing stable PEC glucose biosensors with high sensitivity and low detection limit is highly desirable in the biosensor field. Herein, a highly stable and sensitive enzymatic glucose photoelectrochemical biosensor is rationally designed and fabricated by constructing TiO _(2) /PDA core/shell nanorod arrays. The TiO _(2) nanorod as the core has the advantages of increasing charge transportation towards interfaces and enhancing the absorption of incident sunlight due to its single-crystal nature and one dimensional array structure. The PDA shell not only induces a rapid charge transfer across the interfaces but also stabilizes the biosensor performance by avoiding the decomposition of enzymes induced by the strong oxidizing holes from the TiO _(2) core. A remarkable performance with an ultrahigh sensitivity of 57.72 μA mM ~(?1) cm ~(?2) , a linear range of 0.2–1.0 mM, a glucose detection limit of 0.0285 mM (S/N = 3) and a high sensitivity of 8.75 μA mM ~(?1) cm ~(?2) in a dynamic range of 1.0–6.0 mM were obtained for the glucose detection. This study might provide a strategy for constructing inorganic/organic core/shell structures with a satisfactory PEC performance.
机译:在生物传感器场中,非常需要开发具有高灵敏度和低检测极限的稳定PEC葡萄糖生物传感器。在此,通过构建TiO _(2)/ PDA芯/壳纳米棒阵列,具有高稳定和敏感的酶葡萄糖光电子化学生物传感器是合理的设计和制造的。作为核心的TiO_(2)纳米棒具有增加电荷运输朝向接口的优点,并由于其单晶性质和一维阵列结构而增强入射阳光的吸收。 PDA壳体不仅在接口上引起快速电荷转移,而且还通过避免由TiO _(2)核心的强氧化孔诱导的酶分解来稳定生物传感器性能。具有卓越的性能,超高敏感性为57.72μAmm〜(α1)cm〜(α2),线性范围为0.2-1.0 mm,葡萄糖检测限为0.0285mm(s / n = 3)和高灵敏度获得葡萄糖检测的动态范围内的8.75μAmm〜(α1)cm〜(Δ2)。该研究可以提供具有令人满意的PEC性能的无机/有机核心/壳结构的策略。

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