论文标题
电化学离子插入:从原子到设备
Electrochemical Ion Insertion: From Atoms to Devices
论文作者
论文摘要
电化学离子插入涉及耦合的离子 - 电子转移反应,客人物种的运输和宿主的氧化还原。宿主通常是具有二维传导平面的各向异性固体,但也可以是具有一维或各向同性传输途径的材料。传统上,这些插入化合物在储能的背景下进行了研究,但在电催化,光电子和计算中也发现了广泛的应用。 Operando,Ultrafast和高分辨率表征方法以及准确的理论模拟方法的最新发展导致了对离子插入化合物的理解。在这篇综述中,我们提出了一个统一的框架,用于了解跨时间和长度范围从原子能到设备水平的插入化合物。我们以石墨,过渡金属二分法,分层的氧化物,氧化氧化物和橄榄石为例,我们以点缺陷,界面反应和相变的方式探索了这些材料中的共同点。我们说明了各种离子插入设备的工作原理的相似性,从电池和电催化剂到电染色体和热晶体管,目的是统一跨学科边界的研究。
Electrochemical ion insertion involves coupled ion-electron transfer reactions, transport of guest species, and redox of the host. The hosts are typically anisotropic solids with two-dimensional conduction planes, but can also be materials with one-dimensional or isotropic transport pathways. These insertion compounds have traditionally been studied in the context of energy storage, but also find extensive applications in electrocatalysis, optoelectronics, and computing. Recent developments in operando, ultrafast, and high-resolution characterization methods, as well as accurate theoretical simulation methods, have led to a renaissance in the understanding of ion-insertion compounds. In this Review, we present a unified framework for understanding insertion compounds across time and length scales ranging from atomic to device levels. Using graphite, transition metal dichalcogenides, layered oxides, oxyhydroxides, and olivines as examples, we explore commonalities in these materials in terms of point defects, interfacial reactions, and phase transformations. We illustrate similarities in the operating principles of various ion-insertion devices ranging from batteries and electrocatalysts to electrochromics and thermal transistors, with the goal of unifying research across disciplinary boundaries.