Selective deposition and stable encapsulation of lithium through heterogeneous seeded growth

Kai Yan;Zhenda Lu;Hyun Wook Lee;Feng Xiong;Po Chun Hsu;Yuzhang Li;Jie Zhao;棣文 朱;Yi Cui

Stanford University;SLAC National Accelerator Laboratory

发表时间:2016-3

期 刊:Nature Energy

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=85042060533&partnerID=8YFLogxK

摘要

Lithium metal is an attractive anode material for rechargeable batteries, owing to its high theoretical specific capacity of 3,860mAhg1. Despite extensive research efforts, there are still many fundamental challenges in using lithium metal in lithium-ion batteries. Most notably, critical information such as its nucleation and growth behaviour remains elusive. Here we explore the nucleation pattern of lithium on various metal substrates and unravel a substrate-dependent growth phenomenon that enables selective deposition of lithium metal. With the aid of binary phase diagrams, we find that no nucleation barriers are present for metals exhibiting a definite solubility in lithium, whereas appreciable nucleation barriers exist for metals with negligible solubility. We thereafter design a nanocapsule structure for lithium metal anodes consisting of hollow carbon spheres with nanoparticle seeds inside. During deposition, the lithium metal is found to predominantly grow inside the hollow carbon spheres. Such selective deposition and stable encapsulation of lithium metal eliminate dendrite formation and enable improved cycling, even in corrosive alkyl carbonate electrolytes, with 98% coulombic efficiency for more than 300 cycles.

相关科学

能源学
能源工程和技术
燃料技术
可再生能源、可持续性和环境
材料科学
电子、光学和磁性材料

文献指纹

化合物

Encapsulation

Lithium

Metals

Nucleation

Solubility

Carbon

Anodes

Nanocapsules

Carbonates

Substrates

Caustics

Secondary batteries

Phase diagrams

Dendrites (metallography)

Lithium-ion batteries

Seed

Nanoparticles

Electrolytes

工程与材料科学

Encapsulation

Lithium

Metals

Nucleation

Solubility

Anodes

Nanocapsules

Carbon

Substrates

Secondary batteries

Phase diagrams

Dendrites (metallography)

Carbonates

Lithium-ion batteries

Seed

Nanoparticles

Electrolytes

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
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2016 7.9
2017 28.4 17.765 7.714
2018 43.7 16.918 8.335
2019 71.2 19.635 7.714
2020 68
2021

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