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Journal ArticleDOI

Stable alkali metal anodes enabled by crystallographic optimization-A review

TLDR
In this article, the authors summarize the recent advances in the crystallographic optimization for dendrite prevention and suppression and highlight the recent progress of crystallographic optimisation for a new generation of rechargeable batteries, including lithium metal batteries, sodium metal batteries and magnesium metal batteries.
Abstract
Alkali metal anodes have been regarded as an ideal candidate for next generation high-energy electrode couples due to their ultrahigh specific capacity and the lowest redox potential. However, their real-world application has been severely hampered by their highly uncontrollable chemical reactivity, which directly dictates metal dendrite growth behavior during cycling, low coulombic efficiency, and even safety concerns. Crystallographic optimization based on metal anode materials provides a fundamental solution for suppressing dendrite growth and enabling a stable metal anode, which has attracted extensive attention. In this perspective, we summarize the recent advances in the crystallographic optimization for dendrite prevention and suppression and highlight the recent progress of crystallographic optimization for a new generation of rechargeable batteries, including lithium metal batteries, sodium metal batteries, potassium metal batteries, zinc metal batteries and magnesium metal batteries. The challenges and prospects for the future development of crystallographic optimization are discussed to shed light on the future research of crystallographic optimization for boosting the performances of rechargeable batteries.

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Bio-inspired and metal-derived superwetting surfaces: Function, stability and applications.

TL;DR: In this paper , a detailed presentation of biomimetic metal-derived superwetting surfaces with unique capabilities was made, along with potential solutions for the long-term mechanical and chemical stability of such surfaces.
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Advance of Prussian Blue-Derived Nanohybrids in Energy Storage: Current Status and Perspective.

TL;DR: In this paper , the advantages and disadvantages of different electrode materials, such as oxides, sulfides, selenides, phosphides, borides, carbides, and other elements, as well as experimental methodologies and electrochemical properties are discussed.
Journal ArticleDOI

Supercapacitors of Nanocrystalline Covalent Organic Frameworks—A Review

TL;DR: In this paper , a review of the application of previously published COF materials in supercapacitors was evaluated including electrode materials and solid-state devices, and essential aspects and potential problems were discussed as the exceptional performance characteristics of COFs are illustrated from a super-capacitor standpoint.
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Conductive Covalent Organic Frameworks Meet Micro-Electrical Energy Storage: Mechanism, Synthesis and Applications—A Review

TL;DR: In this paper , a review of the exploration of covalent organic frameworks (c-COFs) in the field of electrical conductivity is presented, which emphasizes the range and suitability of c-COF in MEESs.
Journal ArticleDOI

Emerging Carbon Nanotube‐based Nanomaterials for Stable and Dendrite‐free Alkali Metal Anodes: Challenges, Strategies, and Perspectives

TL;DR: In this paper , the authors reviewed the recent progress on the application of carbon nanotube-based nanomaterials in stable and dendrite-free alkali metal anodes.
References
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Journal ArticleDOI

Inhomogeneous Electron Gas

TL;DR: In this article, the ground state of an interacting electron gas in an external potential was investigated and it was proved that there exists a universal functional of the density, called F[n(mathrm{r})], independent of the potential of the electron gas.
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A climbing image nudged elastic band method for finding saddle points and minimum energy paths

TL;DR: In this article, a modification of the nudged elastic band method for finding minimum energy paths is presented, where one of the images is made to climb up along the elastic band to converge rigorously on the highest saddle point.
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High-performance lithium battery anodes using silicon nanowires

TL;DR: The theoretical charge capacity for silicon nanowire battery electrodes is achieved and maintained a discharge capacity close to 75% of this maximum, with little fading during cycling.
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Nonaqueous liquid electrolytes for lithium-based rechargeable batteries.

TL;DR: The phytochemical properties of Lithium Hexafluoroarsenate and its Derivatives are as follows: 2.2.1.
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Shape‐Controlled Synthesis of Metal Nanocrystals: Simple Chemistry Meets Complex Physics?

TL;DR: A comprehensive review of current research activities that center on the shape-controlled synthesis of metal nanocrystals, including a brief introduction to nucleation and growth within the context of metal Nanocrystal synthesis, followed by a discussion of the possible shapes that aMetal nanocrystal might take under different conditions.
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