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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Pyrene-adamantane-β-cyclodextrin: An efficient host-guest system for the biofunctionalization of SWGNT electrodes
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Pyrene-adamantane-β-cyclodextrin: An efficient host-guest system for the biofunctionalization of SWGNT electrodes

机译:yr-金刚烷-β-环糊精:用于SWGNT电极生物功能化的高效宿主系统

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摘要

The design of nanostructured biological architectures based on host-guest interactions between β-cyclodextrin and adamantane was investigated on SWCNT coatings using glucose oxidase (GOX) as biomolecule model. β-Cyclodextrin tagged GOX was immobilized on adamantane functionalized carbon nanotubes, deposited on platinum electrodes. Different functionalization techniques to attach "pyrene adamantane" on nanotubes were studied and compared in terms of the performances of the subsequently constructed glucose biosensors. The best results were obtained by dipping the nanotube deposit into a pyrene-adamantane solution followed by electropolymerization of the adsorbed pyrene monolayer. The constructed biosensor exhibited a good linear response toward glucose concentrations between 2x10~(-7)M and 1.6x10~(-3)M. The maximum current density and glucose sensitivity were 154.9 μA cm~(-2) and 14.4 mA M~(-1) cm~(-2), respectively.
机译:以葡萄糖氧化酶(GOX)为生物分子模型,研究了基于β-环糊精与金刚烷之间客体-客体相互作用的纳米结构生物体系结构的设计。 β-环糊精标记的GOX固定在金刚烷官能化的碳纳米管上,沉积在铂电极上。研究了将“ functional金刚烷”附着在纳米管上的不同功能化技术,并根据随后构建的葡萄糖生物传感器的性能进行了比较。通过将纳米管沉积物浸入a-金刚烷溶液中,然后对吸附的pyr单层进行电聚合,可获得最佳结果。构建的生物传感器对葡萄糖浓度在2x10〜(-7)M和1.6x10〜(-3)M之间表现出良好的线性响应。最大电流密度和葡萄糖敏感性分别为154.9μAcm〜(-2)和14.4 mA M〜(-1)cm〜(-2)。

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