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基于聚多巴胺生物界面修饰的光敏性 PbSI 晶体负载在介孔 TiO 上作为一种高效信号开启型光电化学生物分析方法用于 Cr(VI)离子的超灵敏检测。

Photo-Sensitive PbSI crystal incorporated polydopamine biointerface coated on nanoporous TiO as an efficient signal-on photoelectrochemical bioassay for ultrasensitive detection of Cr(VI) ions.

机构信息

Chemistry Department, Yasouj University, Yasouj 75918-74831, Iran.

Chemistry Department, Yasouj University, Yasouj 75918-74831, Iran.

出版信息

Biosens Bioelectron. 2019 May 1;132:105-114. doi: 10.1016/j.bios.2019.02.042. Epub 2019 Feb 22.

Abstract

An ultrasensitive Visible light-triggered photoelectrochemical (PEC) sensor was designed based on ideal photoactive lead sulfoiodide (PbSI) as low band gap crystal, which hydrothermally synthesized rapidly at low temperature (160 °C) in hydrochloride acid media followed by its incorporation into polydopamine as reactive photo-biointerface, through a facile in situ electropolymerization method, coated on nanoporous TiO grown by anodization on Ti foil. The structure of as-prepared samples and their photoelectrochemical properties were fully characterized. This unique photo-sensitive PbSI catalyst-based PEC bioassay was constructed for the detection of low-abundant Cr(VI) ion in real samples. Applying central composite design, individual and mutual interaction effects were evaluated to obtain optimized solution pH, applied potential and radiant light wavelength as operational factors influencing the PEC efficiency for Cr(VI) detection. At optimal condition, the proposed sensor due to effective suppress in electron-hole recombinations showed a very low detection limit of 3.0 nM, over a broad linear concentration range of 0.01-80 μM in addition to high sensitivity versus 1.9 μA/μM Cr(VI). Proposed PEC sensor displayed high selectivity, reproducibility and stability as well as improved excitation conversion efficiency, which make it highly applicable using solar energy. The potential applicability of the designed sensor was evaluated in water, tomato juice and hair color.

摘要

基于低带隙晶体理想光活性的碘化铅硫(PbSI),设计了一种超灵敏可见光触发光电化学(PEC)传感器。该传感器在盐酸介质中,于低温(160°C)下快速水热合成,随后通过简便的原位电化学聚合方法,将其掺入聚多巴胺中作为反应性光生物界面,涂覆在钛箔上通过阳极氧化生长的纳米多孔 TiO 上。充分表征了所制备样品的结构及其光电化学性能。这种基于独特光敏 PbSI 催化剂的 PEC 生物分析方法,用于检测实际样品中低丰度的 Cr(VI)离子。应用中心复合设计,评估了单个和相互作用效应,以获得优化的溶液 pH 值、施加电位和辐射光波长作为影响 Cr(VI)检测 PEC 效率的操作因素。在最佳条件下,由于有效抑制了电子-空穴复合,该传感器对 Cr(VI)的检测显示出非常低的检测限为 3.0 nM,在 0.01-80 μM 的宽线性浓度范围内具有高灵敏度,对应 1.9 μA/μM Cr(VI)。所提出的 PEC 传感器表现出高选择性、重现性和稳定性,以及改进的激发转换效率,使其非常适用于太阳能的利用。评估了设计的传感器在水、番茄汁和染发剂中的潜在适用性。

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