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Metal Sulfide‐Decorated Carbon Sponge as a Highly Efficient Electrocatalyst and Absorbant for Polysulfide in High‐Loading Li 2 S Batteries
Author(s) -
He Jiarui,
Chen Yuanfu,
Manthiram Arumugam
Publication year - 2019
Publication title -
advanced energy materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 10.08
H-Index - 220
eISSN - 1614-6840
pISSN - 1614-6832
DOI - 10.1002/aenm.201900584
Subject(s) - polysulfide , materials science , sulfide , graphene , cathode , electrocatalyst , lithium (medication) , anode , chemical engineering , electrochemistry , carbon fibers , conductivity , inorganic chemistry , nanotechnology , electrode , composite material , composite number , chemistry , metallurgy , medicine , endocrinology , engineering , electrolyte
Owing to its high theoretical specific capacity (1166 mA h g −1 ) and particularly its advantage to be paired with a lithium‐metal‐free anode, lithium sulfide (Li 2 S) is regarded as a much safer cathode for next‐generation advanced lithium–sulfur (Li–S) batteries. However, the low conductivity of Li 2 S and particularly the severe “polysulfide shuttle” of lithium polysulfide (LiPS) dramatically hinder their practical application in Li–S batteries. To address such issues, herein a bifuctional 3D metal sulfide‐decorated carbon sponge (3DTSC), which is constructed by 1D carbon nanowires cross‐linked with 2D graphene nanosheets with high conductivity and polar 0D metal sulfide nanodots with efficient electrocatalytic activity and strong chemical adsorption capability for LiPSs, is presented. Benefiting from the well‐designed multiscale, multidimensional 3D porous nanoarchitecture with high conductivity, and efficient electrocatalytic and absorption ability, the 3DTSC significantly mitigates LiPS shuttle, improves the utilization of Li 2 S, and facilitates the transport of electrons and ions. As a result, even with a high Li 2 S loading of 8 mg cm −2 , the freestanding 3DTSC‐Li 2 S cathode without a polymer binder and metallic current collector delivers outstanding electrochemical performance with a high areal capacity of 8.44 mA h cm −2 .