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A Review of Theoretical Studies on Functionalized Graphene for Electrochemical Energy Conversion and Storage Applications

机译:用于电化学能转换和储存应用的官能化石墨烯的理论研究综述

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摘要

Developing new materials with specific properties is of crucial importance for the growing number of energy-related problems. Recently introduced graphene offers an attractive alternative to the commonly used materials for energy conversion and storage applications. However, despite its many extraordinary properties, pristine graphene is chemically inert and interacts weakly with many species of importance in the fields of metalion batteries, supercapacitors, fuel cells, and hydrogen storage. In order to meet the requirements for such applications, defects, such as vacancies, heteroatoms and functional groups, must be introduced on graphene. Density Functional Theory calculations have proven to be very useful not only for the description of materials performance but also for predicting which materials could be efficient for targeted applications. This article reviews the theoretical work done on the functionalized graphene-based materials for electrochemical energy conversion and storage applications.
机译:开发具有特定性质的新材料对于越来越多的能量相关问题至关重要。最近引入的石墨烯提供了一种有吸引力的替代品,用于常用的能量转换和存储应用。然而,尽管有许多非凡的性质,但原始石墨烯是化学惰性的,并且在金属电池,超级电容器,燃料电池和储氢领域中弱较多的重要性。为了满足这些应用的要求,必须在石墨烯上引入缺陷,例如空位,杂原子和官能团等缺陷。密度泛函理论计算证明是非常有用的,不仅用于材料性能的描述,而且还可用于预测目标应用可以有效的材料。本文审查了在官能化石墨烯的基础材料上完成的理论工作,用于电化学能量转换和储存应用。

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