All‐in‐One Structured Lithium‐Metal Battery

Abstract 3D batteries possess apparent advantage in electrochemical ion‐transport kinetics than the conventional‐structured batteries. However, due to the special electrode configuration and fabrication complexity, 3D battery design has inherent issue of mechanical stability and only succeeds in mic...

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Main Authors: Lei Dong, Chang Zhang, Wei Liu
Format: Article
Language:English
Published: Wiley 2022-06-01
Series:Advanced Science
Subjects:
Online Access:https://doi.org/10.1002/advs.202200547
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author Lei Dong
Chang Zhang
Wei Liu
author_facet Lei Dong
Chang Zhang
Wei Liu
author_sort Lei Dong
collection DOAJ
description Abstract 3D batteries possess apparent advantage in electrochemical ion‐transport kinetics than the conventional‐structured batteries. However, due to the special electrode configuration and fabrication complexity, 3D battery design has inherent issue of mechanical stability and only succeeds in microsystems, far from ideal. Herein, a high‐stable, all‐in‐one structured 3D lithium‐metal battery is designed which consists of paralleled microcell arrays. Fast ion‐transport kinetics in full cell level can not only address the key issue of lithium dendrites in anode but also improve electrochemical performance of cathode. As a result, the resultant lithium metal anode acquires long‐term stability of 1000‐cycle life at a high current density of 10 mA cm−2. Also the all‐in‐one structured lithium metal battery has general applicability for various cathodic materials and delivers significantly improved rate and cycling performance, as well as high areal capacity up to 10.4 mAh cm−2.
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spelling doaj.art-a102fb4b1c484c93b7b23f3f3d7a3eb22022-12-22T00:47:20ZengWileyAdvanced Science2198-38442022-06-01917n/an/a10.1002/advs.202200547All‐in‐One Structured Lithium‐Metal BatteryLei Dong0Chang Zhang1Wei Liu2School of Physical Science and Technology ShanghaiTech University Shanghai 201210 ChinaSchool of Physical Science and Technology ShanghaiTech University Shanghai 201210 ChinaSchool of Physical Science and Technology ShanghaiTech University Shanghai 201210 ChinaAbstract 3D batteries possess apparent advantage in electrochemical ion‐transport kinetics than the conventional‐structured batteries. However, due to the special electrode configuration and fabrication complexity, 3D battery design has inherent issue of mechanical stability and only succeeds in microsystems, far from ideal. Herein, a high‐stable, all‐in‐one structured 3D lithium‐metal battery is designed which consists of paralleled microcell arrays. Fast ion‐transport kinetics in full cell level can not only address the key issue of lithium dendrites in anode but also improve electrochemical performance of cathode. As a result, the resultant lithium metal anode acquires long‐term stability of 1000‐cycle life at a high current density of 10 mA cm−2. Also the all‐in‐one structured lithium metal battery has general applicability for various cathodic materials and delivers significantly improved rate and cycling performance, as well as high areal capacity up to 10.4 mAh cm−2.https://doi.org/10.1002/advs.202200547all‐in‐one structurefast ion transport kineticshigh‐performancelithium‐metal batteriesmicrocell arrays
spellingShingle Lei Dong
Chang Zhang
Wei Liu
All‐in‐One Structured Lithium‐Metal Battery
Advanced Science
all‐in‐one structure
fast ion transport kinetics
high‐performance
lithium‐metal batteries
microcell arrays
title All‐in‐One Structured Lithium‐Metal Battery
title_full All‐in‐One Structured Lithium‐Metal Battery
title_fullStr All‐in‐One Structured Lithium‐Metal Battery
title_full_unstemmed All‐in‐One Structured Lithium‐Metal Battery
title_short All‐in‐One Structured Lithium‐Metal Battery
title_sort all in one structured lithium metal battery
topic all‐in‐one structure
fast ion transport kinetics
high‐performance
lithium‐metal batteries
microcell arrays
url https://doi.org/10.1002/advs.202200547
work_keys_str_mv AT leidong allinonestructuredlithiummetalbattery
AT changzhang allinonestructuredlithiummetalbattery
AT weiliu allinonestructuredlithiummetalbattery