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Preparation Modification Characterization and Biosensing Application of Nanoporous Gold Using Electrochemical Techniques

机译:纳米多孔金的电化学制备修饰表征及生物传感应用

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摘要

Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, chemical inertness, physical stability, biocompatibility, easily tunable pores, and plasmonic properties, has attracted much interested in the field of nanotechnology. It has promising applications in the fields of catalysis, bio/chemical sensing, drug delivery, biomolecules separation and purification, fuel cell development, surface-chemistry-driven actuation, and supercapacitor design. Many chemical and electrochemical procedures are known for the preparation of np-Au. Recently, researchers are focusing on easier and controlled ways to tune the pores and ligaments size of np-Au for its use in different applications. Electrochemical methods have good control over fine-tuning pore and ligament sizes. The np-Au electrodes that are prepared using electrochemical techniques are robust and are easier to handle for their use in electrochemical biosensing. Here, we review different electrochemical strategies for the preparation, post-modification, and characterization of np-Au along with the synergistic use of both electrochemistry and np-Au for applications in biosensing.
机译:纳米多孔金(np-Au)由于具有高的表面积/体积比,优异的电导率,化学惰性,物理稳定性,生物相容性,易于调节的孔隙和等离激元性质,因此在纳米技术领域引起了人们的极大兴趣。它在催化,生物/化学传感,药物输送,生物分子分离和纯化,燃料电池开发,表面化学驱动的致动和超级电容器设计等领域具有广阔的应用前景。已知许多化学和电化学程序可用于制备np-Au。最近,研究人员正在关注更容易且可控的方法来调节np-Au的孔和韧带大小,以用于不同的应用。电化学方法可以很好地控制微调的孔和韧带的大小。使用电化学技术制备的np-Au电极坚固耐用,在电化学生物传感中的使用更易于操作。在这里,我们综述了制备,后修饰和表征np-Au的不同电化学策略,以及电化学和np-Au在生物传感中的协同使用。

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