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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >pH-Controllable Bioelectrocatalysis Based on 'On-Off' Switching Redox Property of Electroactive Probes for Spin-Assembled Layer-by-Layer Films Containing Branched Poly(ethyleneimine)
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pH-Controllable Bioelectrocatalysis Based on 'On-Off' Switching Redox Property of Electroactive Probes for Spin-Assembled Layer-by-Layer Films Containing Branched Poly(ethyleneimine)

机译:pH值可控的基于电活性探针的“开-关”切换氧化还原特性的生物控制,该探针用于自组装组装的含支链聚(乙烯亚胺)的多层膜

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摘要

Weak polybase branched poly(ethyleneimine) (BPEI) and strong polyacid poly(styrenesulfonate) (PSS) were assembled into BPEI/{PSS/BPEI}_n layer-by-layer (LBL) films on electrodes by electrostatic interaction between them with spin-coating approach. The cyclic voltammetric (CV) response of ferrocenedicarboxylic acid (Fc(COOH)2) at BPEI/{PSS/BPEI)_n film electrodes was very sensitive to the pH of the testing solutions. At pH 4.0, the probe showed a well-defined CV peak pair with relatively large peak currents for the films, while, at pH 7.0, the CV response was significantly depressed. By switching the film electrodes in buffers between pH 4.0 and 7.0, the CV peak currents changed periodically between a relatively high value at the "on" state and a very low value at the "off state, indicating that the pH-sensitive "on-off' switching function of the films toward the probe is reversible. A series of comparative experiments indicates that the electrostatic interaction between the films and the probe plays a predominant role in deciding the pH-sensitive behavior of the films. This pH-dependent property of the films could be used to control or modulate the bioelectrocatalysis of glucose by glucose oxidase (GOD) with Fc(COOH)2 as the mediator by changing the surrounding pH. This "smart" bioelectrocatalytic film system may establish a foundation for fabricating novel pH-controllable electrochemical biosensors.
机译:弱多基支化聚亚乙基亚胺(BPEI)和强多元酸聚(苯乙烯磺酸盐)(PSS)通过电极与自旋电极之间的静电相互作用在电极上逐层(LBL)组装成BPEI / {PSS / BPEI} _n薄膜。涂层方法。在BPEI / {PSS / BPEI)_n薄膜电极上二茂铁二羧酸(Fc(COOH)2)的循环伏安(CV)反应对测试溶液的pH值非常敏感。在pH 4.0时,探针显示出清晰的CV峰对,膜的峰值电流相对较大,而在pH 7.0时,CV响应显着降低。通过在缓冲液的pH 4.0和7.0之间切换薄膜电极,CV峰值电流会在“开启”状态下相对较高的值与“关闭”状态下非常低的值之间周期性变化,这表明pH敏感的“开启”状态薄膜朝向探头的“关闭”切换功能是可逆的。一系列比较实验表明,薄膜与探针之间的静电相互作用在决定薄膜的pH敏感行为方面起着主要作用。薄膜的这种pH依赖性特性可用于通过改变周围pH值来控制或调节以Fc(COOH)2为介质的葡萄糖氧化酶(GOD)对葡萄糖的生物电催化作用。这种“智能”生物电催化膜系统可以为制造新型pH可控的电化学生物传感器奠定基础。

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