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Layered MXene Protected Lithium Metal Anode as an Efficient Polysulfide Blocker for Lithium‐Sulfur Batteries
Author(s) -
Li Wantang,
Zhang Yifang,
Li Huan,
Chen Zijin,
Shang Tongxin,
Wu Zhitan,
Zhang Chen,
Li Jia,
Lv Wei,
Tao Ying,
Yang QuanHong
Publication year - 2020
Publication title -
batteries and supercaps
Language(s) - English
Resource type - Journals
ISSN - 2566-6223
DOI - 10.1002/batt.202000062
Subject(s) - anode , faraday efficiency , materials science , cathode , polysulfide , lithium (medication) , graphene , lithium–sulfur battery , chemical engineering , oxide , plating (geology) , electrochemistry , metal , inorganic chemistry , nanotechnology , metallurgy , chemistry , electrode , electrolyte , medicine , engineering , geophysics , geology , endocrinology
The shuttle effect of lithium polysulfides (LiPSs) from sulfur cathode to lithium (Li) anode is one of the main obstacles for lithium‐sulfur (Li−S) batteries. The severe corrosion of Li metal anode by the dissolved LiPSs bottlenecks the efficient operation of Li−S batteries, however, the anode part has not been received much attention compared to those extensive efforts related to the cathode designs. Herein, we show that the interface between Ti 3 C 2 T x (T=−OH, −F)‐based MXene and reduced graphene oxide (rGO) is able to guide uniform Li nucleation, promoting highly reversible and dendrite‐free Li plating/stripping. Such the Li anode demonstrates excellent cycling stability for more than 1000 hours even under ultra‐high rate (10 mA cm −2 ) and high areal capacity (3 mAh cm −2 ). More importantly, the well‐designed 2D layered structure by coupling the Ti 3 C 2 T x with a graphene scaffold, is highly efficient to block the shuttled polysulfides and inhibit the corrosion of the lithium metal anode. As a result, the Li−S full battery exhibits a stable cycling stability with a high Coulombic efficiency of 99.8 % over 300 cycles. This work suggests the design strategy of Li metal anode especially targeting at the sulfur cathode, and we hope it can provide valuable inspirations for the future design of Li metal anodes for more practical Li−S batteries.