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Electrode interfaces switchable by physical and chemical signals for biosensing, biofuel, and biocomputing applications

机译:电极接口可通过物理和化学信号进行切换,用于生物传感,生物燃料和生物计算应用

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This review outlines advances in designing modified electrodes with switchable properties controlled by various physical and chemical signals. Irradiation of the modified electrode surfaces with various light signals, changing the temperature of the electrolyte solution, application of a magnetic field or electrical potentials, changing the pH of the solutions, and addition of chemical/biochemical substrates were used to change reversibly the electrode activity. The increasing complexity in the signal processing was achieved by integration of the switchable electrode interfaces with biomolecular information processing systems mimicking Boolean logic operations, thus allowing activation and inhibition of electrochemical processes on demand by complex combinations of biochemical signals. The systems reviewed range from simple chemical compositions to complex mixtures modeling biological fluids, where the signal substrates were added at normal physiological and elevated pathological concentrations. The switchable electrode interfaces are considered for future biomedical applications where the electrode properties will be modulated by the biomarker concentrations reflecting physiological conditions.
机译:这篇综述概述了设计具有可切换特性的改性电极的进展,这些特性可通过各种物理和化学信号控制。用各种光信号照射修饰的电极表面,改变电解质溶液的温度,施加磁场或电势,改变溶液的pH值以及添加化学/生化底物可逆地改变电极活性。通过将可切换电极接口与模仿布尔逻辑运算的生物分子信息处理系统集成在一起,可以提高信号处理的复杂性,从而可以通过生物化学信号的复杂组合按需激活和抑制电化学过程。审查的系统范围从简单的化学成分到模拟生物流体的复杂混合物,其中以正常的生理和升高的病理学浓度添加信号底物。可切换的电极界面被考虑用于未来的生物医学应用,其中电极性能将由反映生理状况的生物标志物浓度调节。

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