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Synergetic Effects of Combined Nanomaterials for Biosensing Applications

机译:组合纳米材料在生物传感应用中的协同效应

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摘要

Nanomaterials have become essential components for the development of biosensors since such nanosized compounds were shown to clearly increase the analytical performance. The improvements are mainly related to an increased surface area, thus providing an enhanced accessibility for the analyte, the compound to be detected, to the receptor unit, the sensing element. Nanomaterials can also add value to biosensor devices due to their intrinsic physical or chemical properties and can even act as transducers for the signal capture. Among the vast amount of examples where nanomaterials demonstrate their superiority to bulk materials, the combination of different nano-objects with different characteristics can create phenomena which contribute to new or improved signal capture setups. These phenomena and their utility in biosensor devices are summarized in a non-exhaustive way where the principles behind these synergetic effects are emphasized.
机译:纳米材料已成为开发生物传感器的必不可少的组成部分,因为这种纳米级化合物已显示出明显提高了分析性能。改进主要与增加的表面积有关,因此提供了待分析物即要检测的化合物到受体单元即传感元件的增强的可及性。纳米材料由于其固有的物理或化学特性,还可以为生物传感器设备增加价值,甚至可以充当信号捕获的换能器。在大量实例中,纳米材料显示出其对块状材料的优越性,具有不同特性的不同纳米物体的组合会产生现象,这些现象有助于新的或改进的信号捕获设置。这些现象及其在生物传感器设备中的实用性以非穷尽的方式进行了总结,其中强调了这些协同作用背后的原理。

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