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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A comparative physical study of two different hydrophilic synthetic latex matrices for the constructuon of a glucose biosensor
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A comparative physical study of two different hydrophilic synthetic latex matrices for the constructuon of a glucose biosensor

机译:两种不同的亲水性合成乳胶基质用于构建葡萄糖生物传感器的比较物理研究

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摘要

Two different biodegradable latex polymers functionalised by hydroxy (1) or gluconamide (2) groups proved to be good immobilisation matries for glucose oxidase. The responses of these biosensors to glucose additions were measured by potentiostatingthe modified eletrodes at 0.6 V/SCE in order to oxidise the hydrogen peroxide generated by the enzymatic oxidation of glucose in the presence of oxygen.The response of such electrodes was evaluated as a function of film thickness, pH and temperature. Rotating disk electrode experiments showed the influence of the enzyme on the structure of both latex films, namely a marked improvement in matrix permeability. The high permeability of the latex 1 based enzyme sensor (bilayer, P_m = 8.10 * 10~(-4) cm s~(-1)) resulted in a high dynamic range. Furthermore, the activation energy for a latex 1 sensor was determined to be 44.55 and 18.03 kJ mol~(-1), respectively depending on the conformation of the enzyme.
机译:两种被羟基(1)或葡糖酰胺(2)官能化的可生物降解的胶乳聚合物被证明是葡萄糖氧化酶的良好固定材料。这些生物传感器对葡萄糖添加的响应通过在0.6 V / SCE上增强修饰电极的电位来测量,以氧化在氧气存在下葡萄糖酶促氧化产生的过氧化氢。将这些电极的响应评估为膜厚,pH和温度。转盘电极实验表明,酶对两种胶乳薄膜的结构都有影响,即基质渗透性显着提高。基于胶乳1的酶传感器的高磁导率(双层,P_m = 8.10 * 10〜(-4)cm s〜(-1))导致较高的动态范围。此外,根据酶的构型,胶乳1传感器的活化能分别确定为44.55和18.03 kJ mol〜(-1)。

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