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Visible-Light Induced Self-Powered Sensing Platform Based on a Photofuel Cell

机译:基于光燃料电池的可见光感应自供电传感平台

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摘要

A self-powered sensing system possesses the capacity of harvesting energy from the environment and has no requirement for external electrical power supply during the chemical sensing of analytes. Herein, we design an enzyme-free self powered sensing platform based on a photofuel cell (PFC) driven by visible-light, using glucose as a model analyte. The fabricated PFC consists of a Ni(OH)(2)/CdS/TiO2 photoanode and a hemin-graphene (HG) nanocomposite coated cathode in separated chambers. Under visible-light irradiation, glucose in the anodic chamber is facilely oxidized on Ni(OH)(2)/CdS/TiO2 while H2O2 in the cathodic chamber is catalytically reduced by HG, which generates a certain cell output sensitive to the variation of glucose concentration. Thus, a PFC based self-powered sensor is realized for glucose detection. Compared to the existing enzymatic self-powered glucose sensors, our proposed PFC based strategy exhibits much lower detection concentration. Moreover, it avoids the limitation of conventional enzyme immobilized electrodes and has the potential to develop high-performance self-powered sensors with broader analyte species.
机译:自供电的传感系统具有从环境中收集能量的能力,并且在对分析物进行化学传感期间无需外部电源。本文中,我们使用葡萄糖作为模型分析物,设计了一种基于可见光驱动的光燃料电池(PFC)的无酶自供电传感平台。所制造的PFC由Ni(OH)(2)/ CdS / TiO2光电阳极和由血红素石墨烯(HG)纳米复合材料涂覆的阴极组成。在可见光照射下,阳极室中的葡萄糖容易在Ni(OH)(2)/ CdS / TiO2上被氧化,而阴极室中的H2O2被HG催化还原,从而产生对葡萄糖变化敏感的某些细胞输出浓度。因此,实现了基于PFC的自供电传感器用于葡萄糖检测。与现有的酶促自供电葡萄糖传感器相比,我们提出的基于PFC的策略显示出低得多的检测浓度。此外,它避免了常规酶固定电极的局限性,并具有开发具有更广泛分析物种类的高性能自供电传感器的潜力。

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