首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Irreversible evolution of eumelanin redox states detected by an organic electrochemical transistor: en route to bioelectronics and biosensing
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Irreversible evolution of eumelanin redox states detected by an organic electrochemical transistor: en route to bioelectronics and biosensing

机译:有机电化学晶体管检测到的eumelanin氧化还原状态的不可逆转演变:在生物电体和生物传感的途中

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Organic electrochemical transistors (OECTs) are currently emerging as powerful tools for biosensing, bioelectronics and nanomedical applications owing to their ability to operate under liquid phase conditions optimally integrating electronic and biological systems. Herein we disclose the unique potential of OECTs for detecting and investigating the electrical properties of insoluble eumelanin biopolymers. Gate current measurements on fine aqueous suspensions of a synthetic eumelanin sample from 5,6-dihydroxyindole (DHI) revealed a well detectable hysteretic response similar to that of the pure monomer in solution, with the formal concentration of the polymer as low as 10~(-6) M. Induction of the gate current would reflect electron transfer from solid eumelanin to the Pt-electrode sustained by redox active catechol/quinone components of the polymer. A gradual decrease in gate current and areas subtended by hysteretic loops were observed over 5 cycles both in the eumelanin- and DHI-based devices, suggesting evolution of the polymer from a far-from-the-equilibrium redox state toward a more stable electronic arrangement promoted by redox exchange with the gate electrode. OECTs are thus proposed as valuable tools for the efficient heterogeneous-phase sensing of eumelanins and to gauge their peculiar electrical and redox behaviour.
机译:由于它们在最佳地整合电子和生物系统的液相条件下运行的能力,有机电化学晶体管(OECTS)目前正在出现用于生物传感,生物电体和纳米医疗应用的强大工具。在此,我们公开了OET的独特潜力,用于检测和研究不溶性eumelanin生物聚合物的电性能。来自5,6-二羟基吲哚(DHI)的合成欧姆兰蛋白样品的精细含水悬浮液上的栅极电流测量揭示了一种与溶液中纯单体的良好可检测的滞后响应,具有低至10〜10〜( -6)M.栅极电流的诱导将从固体eumelanin反射到通过聚合物的氧化还原活性儿茶酚/醌组分维持的PT电极的电子转移。在eumelaniN和DHI基装置中观察到滞后环术后沟槽电流和区域的逐渐减小,这两次循环在突敏和DHI基装置中,表明聚合物从远从平衡的氧化还原状态朝向更稳定的电子布置的速度用换换与栅电极的氧化还原交换促进。因此,OETS被提出为eumelanins的有效非均相感测的有价值的工具,并衡量其特殊的电气和氧化还原行为。

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