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Design and Electrochemical Study of Platinum-Based Nanomaterials for Sensitive Detection of Nitric Oxide in Biomedical Applications

机译:用于生物医学应用中一氧化氮灵敏检测的铂基纳米材料的设计和电化学研究

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摘要

The extensive physiological and regulatory roles of nitric oxide (NO) have spurred the development of NO sensors, which are of critical importance in neuroscience and various medical applications. The development of electrochemical NO sensors is of significant importance, and has garnered a tremendous amount of attention due to their high sensitivity and selectivity, rapid response, low cost, miniaturization, and the possibility of real-time monitoring. Nanostructured platinum (Pt)-based materials have attracted considerable interest regarding their use in the design of electrochemical sensors for the detection of NO, due to their unique properties and the potential for new and innovative applications. This review focuses primarily on advances and insights into the utilization of nanostructured Pt-based electrode materials, such as nanoporous Pt, Pt and PtAu nanoparticles, PtAu nanoparticle/reduced graphene oxide (rGO), and PtW nanoparticle/rGO-ionic liquid (IL) nanocomposites, for the detection of NO. The design, fabrication, characterization, and integration of electrochemical NO sensing performance, selectivity, and durability are addressed. The attractive electrochemical properties of Pt-based nanomaterials have great potential for increasing the competitiveness of these new sensors and open up new opportunities in the creation of novel NO-sensing technologies for biological and medical applications.
机译:一氧化氮(NO)广泛的生理和调节作用刺激了NO传感器的发展,这在神经科学和各种医学应用中至关重要。电化学NO传感器的开发非常重要,并且由于其高灵敏度和选择性,快速响应,低成本,小型化以及实时监控的可能性而受到了广泛的关注。纳米结构的基于铂(Pt)的材料因其独特的性能以及在新型和创新应用中的潜力,在用于设计用于检测NO的电化学传感器中引起了极大的兴趣。这篇综述主要集中在纳米结构的基于Pt的电极材料的利用方面的进展和见解,例如纳米多孔Pt,Pt和PtAu纳米颗粒,PtAu纳米颗粒/氧化石墨烯(rGO)和PtW纳米颗粒/ rGO离子液体(IL)纳米复合材料,用于检测NO。解决了电化学NO感测性能,选择性和耐久性的设计,制造,表征和集成。铂基纳米材料的诱人的电化学性能具有极大的潜力,可以提高这些新型传感器的竞争力,并为生物和医学应用创造新型的NO传感技术创造了新的机遇。

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