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Multilayer architectures of enzymes on electrodes for sensorial application -influence of the building blocks on the assembly behaviour

机译:电极酶的多层体系结构,用于传感器应用的电极 - 构建块对组装行为的影响

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Proteins can be advantageously combined with electrodes in such a way that direct electron transfer becomes possible. This can be applied for sensorial use of these protein electrodes. One approach to increase the sensitivity can be seen in the arrangement of multiple protein layers on the sensing surface. In this case, however, electrochemical communication has to be ensured. It can be shown that the small redox protein cytochrome c can be assembled in layers on modified gold electrodes resulting in fully electro-active systems. Different second building blocks can be used for the layer-by-layer assembly process. Besides natural and artificial polymers this can also be nanoparticies. These layered systems can be combined with enzymes leading to protein electrodes sensitive for the respective substrate. For the communication between the immobilised protein molecules not only shuttle molecules can be applied, but conditions can be found that direct electron exchange becomes feasible.
机译:蛋白质可以有利地与电极组合,使得可以是直接电子转移的方式。这可以应用于这些蛋白质电极的感觉使用。在感测表面上的多种蛋白质层的布置中可以看到一种增加灵敏度的一种方法。然而,在这种情况下,必须确保电化学通信。可以表明,小氧化还原蛋白细胞色素C可以以改性的金电极上的层组装,得到完全电活性系统。不同的第二构件块可用于逐层组装过程。除了天然和人造聚合物外,这也可以是纳米颗粒。这些分层系统可以与导致对各个基板敏感的蛋白质电极的酶组合。对于固定的蛋白质分子之间的通信不仅可以应用梭分子,而且可以发现条件直接电子交换变得可行。

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