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Surface coordination chemistry of graphene: Understanding the coordination of single transition metal atoms

机译:石墨烯的表面配制化学:了解单个过渡金属原子的协调

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摘要

The recent advances in single-atom applications have shown that it is possible to manipulate the materials' properties by controlling its structure at the atomic level. Immobilization of single transition metal (TM) atom with catalytic, optical, electronic, or magnetic properties onto graphene supports is an outstanding research field. A similarity between graphene surface chemistry and the classical coordination chemistry is expected, and TM anchoring on the graphene can be view as the formation of a coordination complex. The possibility of tuning the electronic and chemical properties of graphene's coordination sites by varying its electron donor-receptor and hard-soft acid-base characteristics transforms graphene in a versatile and rich platform to pave the way for a deeper understanding of the surface coordination chemistry of other 2D materials. In this context, this review is focused on the latest advances on single atom functionalization (SAF) of graphene with transition metal ions, covering the synthesis, characterization, and its effects on graphene's physical and chemical properties. The fundamental aspects of the coordination chemistry, and how it is related to graphene's surface chemistry will be presented to give the basis to discuss the theoretical and experimental progress on graphene's SAF. A parallel between graphene solid-state physics theory and classical coordination chemistry, two areas that hardly influenced each other, will be done using concepts of ligand-field theory, Pearson's hard-soft acid-bases concept, and the molecular orbital theory of transition metal complexes. (C) 2020 Elsevier B.V. All rights reserved.
机译:单个原子应用的最近进步已经表明,通过在原子水平下控制其结构,可以操纵材料的性质。将单个过渡金属(TM)原子固定在石墨烯支撑件上的催化,光学,电子或磁性,是一个杰出的研究领域。预期石墨烯表面化学和经典配位化学之间的相似性,并且石墨烯上的Tm锚固可以视为形成配位复合物的形成。通过改变其电子供体 - 受体和硬酸基部特征来调整石墨烯的配位部位的电子和化学性质的可能性在多功能和丰富的平台中转化石墨烯来铺平道路,以便更深入地了解表面配位化学化学其他2D材料。在这种情况下,本综述专注于具有过渡金属离子的石墨烯的单个原子官能化(SAF)的最新进展,涵盖了合成,表征及其对石墨烯的物理和化学性质的影响。将提出协调化学的基本方面以及如何与石墨烯的表面化学相关,以赋予石墨烯SAF的理论和实验进展的基础。石墨烯固态物理理论与经典协调化学之间的平行,两个区域几乎不影响彼此,将使用配体场理论,Pearson的硬酸基概念和过渡金属的分子轨道理论进行完成复合物。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Coordination chemistry reviews》 |2020年第11期|213469.1-213469.35|共35页
  • 作者单位

    Univ Fed Rio de Janeiro UFRJ Inst Quim SuperNano Lab Quim Coordenacao Superficies & Nano BR-21941909 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro UFRJ Inst Quim SuperNano Lab Quim Coordenacao Superficies & Nano BR-21941909 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro UFRJ Inst Quim SuperNano Lab Quim Coordenacao Superficies & Nano BR-21941909 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro UFRJ Inst Quim SuperNano Lab Quim Coordenacao Superficies & Nano BR-21941909 Rio De Janeiro Brazil;

    Univ Fed Rio de Janeiro UFRJ Inst Quim SuperNano Lab Quim Coordenacao Superficies & Nano BR-21941909 Rio De Janeiro Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Graphene; 2D materials; Transition metals; Coordination chemistry; Single-atom functinalization;

    机译:石墨烯;2D材料;过渡金属;协调化学;单个原子汇流量;

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