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首页> 外文期刊>Chemistry: A European journal >Chemical and biochemical sensing with modified single walled carbon nanotubes
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Chemical and biochemical sensing with modified single walled carbon nanotubes

机译:用修饰的单壁碳纳米管进行化学和生化传感

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摘要

The nano dimensions, graphitic surface chemistry and electronic properties of single walled carbon nanotubes make such a material an ideal candidate for chemical or biochemical sensing. Carbon nanotubes can be nondestructively oxidized along their sidewalls or ends and subsequently covalently functionalized with colloidal particles or polyamine dendrimers via carboxylate chemistry. Proteins adsorb individually, strongly and noncovalently along nanotube lengths. These nanotube -protein conjugates are readily characterized at the molecular level by atomic force microscopy. Several metalloproteins and enzymes have been bound on both the sidewalls and termini of single walled carbon nanotubes. Though coupling can be controlled, to a degree, through variation of tube oxidative pre-activation chemistry, careful control experiments and observations made by atomic force microscopy suggest that immobilization is strong, physical and does not require covalent bonding. Importantly, in terms of possible device applications, protein attachment appears to occur with retention of native biological structure. Nanotube electrodes exhibit useful voltammetric properties with direct electrical communication possible between a redox-active biomolecule and the delocalized T system of its carbon nanotube support. [References: 36]
机译:单壁碳纳米管的纳米尺寸,石墨表面化学性质和电子性质使这种材料成为化学或生物化学传感的理想候选者。碳纳米管可以沿其侧壁或末端进行非破坏性氧化,然后通过羧酸盐化学作用与胶体颗粒或多胺树枝状聚合物共价官能化。蛋白质沿着纳米管的长度分别,强烈和非共价地吸附。这些纳米管-蛋白质缀合物易于通过原子力显微镜在分子水平上表征。几种金属蛋白和酶已经结合在单壁碳纳米管的侧壁和末端上。尽管可以通过改变管氧化预活化化学方法在一定程度上控制偶联,但仔细的控制实验和原子力显微镜观察表明,固定作用牢固,物理且不需要共价键。重要的是,就可能的装置应用而言,蛋白质附着似乎是在保留天然生物结构的情况下发生的。纳米管电极表现出有用的伏安特性,在氧化还原活性生物分子与其碳纳米管载体的离域T系统之间可能存在直接电连通。 [参考:36]

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