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Nanocarbon-Based Electrochemical Systems for Sensing, Electrocatalysis, and Energy Storage

机译:用于传感,电催化和储能的纳米碳基电化学系统

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摘要

Carbon materials are important for many electrochemical applications due to their tunable electron-transfer and charge-storage properties. Judicious structural manipulation of carbon to modulate its chemical, electronic, and crystalline properties is key to the rational design of many high-performance electrochemical devices. Here we focus on three types of carbon nanomaterials of recent interest in electrochemistry, namely, carbon nanofibers, carbon nanotubes, and graphene. We concentrate on how structural variations in these carbon nanomaterials impact their electrochemical activities. In this review, following a brief overview of the synthesis methods for each class of carbon nanomaterials, we discuss their electrochemical applications for sensing, electrocatalysis, and energy storage, with emphasis on general carbon structure manipulation strategies that impart specific functionalities to suit each application area. Special attention is devoted to articulating how the electronic structure of carbon influences its electrochemical activity. Through the analysis of different electrochemical devices, we find that some of the modification techniques apply to more than one application area; thus structural manipulation methods in one class of electrochemical devices may be extended to other types.
机译:碳材料由于其可调节的电子传输和电荷存储特性,因此对于许多电化学应用非常重要。对碳进行明智的结构操纵以调节其化学,电子和晶体性质,是合理设计许多高性能电化学装置的关键。在这里,我们重点关注电化学领域最近关注的三种类型的碳纳米材料,即碳纳米纤维,碳纳米管和石墨烯。我们专注于这些碳纳米材料的结构变化如何影响其电化学活性。在这篇综述中,在简要概述了每种碳纳米材料的合成方法之后,我们讨论了其在传感,电催化和能量存储方面的电化学应用,重点是赋予特定功能以适合每种应用领域的通用碳结构操纵策略。 。特别注意阐明碳的电子结构如何影响其电化学活性。通过对不同电化学装置的分析,我们发现某些改进技术适用于多个应用领域。因此,在一类电化学装置中的结构操纵方法可以扩展到其他类型。

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