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Spherical Templating of CoSe<sub>2</sub> Nanoparticle-Decorated MXenes for Lithium–Sulfur Batteries

Wei Ying Lieu, Daliang Fang, Yuanjian Li, Xue Liang Li, Congjian Lin, Anupma Thakur, Brian C. Wyatt, Shengnan Sun, Tanmay Ghosh, Babak Anasori, Man‐Fai Ng, Hui Ying Yang, Zhi Wei Seh

2022Nano Letters53 citationsDOIOpen Access PDF

Abstract

Two-dimensional MXenes produce competitive performances when incorporated into lithium–sulfur batteries (LSBs), solving key problems such as the poor electronic conductivity of sulfur and dissolution of its polysulfide intermediates. However, MXene nanosheets are known to easily aggregate and restack during electrode fabrication, filtration, or water removal, limiting their practical applicability. Furthermore, in complex electrocatalytic reactions like the multistep sulfur reduction process in LSBs, MXene alone is insufficient to ensure an optimal reaction pathway. In this work, we demonstrate for the first time a loose templating of sulfur spheres using Ti3C2Tx MXene nanosheets decorated with polymorphic CoSe2 nanoparticles. This work shows that the templating of sulfur spheres using nanoparticle-decorated MXene nanosheets can prevent nanosheet aggregation and exert a strong electrocatalytic effect, thereby enabling improved reaction kinetics and battery performance. The S@MXene-CoSe2 cathode demonstrated a long cycle life of 1000 cycles and a low capacity decay rate of 0.06% per cycle in LSBs.

Topics & Concepts

NanosheetPolysulfideMXenesSulfurNanoparticleMaterials scienceChemical engineeringNanotechnologyLithium (medication)Lithium–sulfur batteryCathodeBattery (electricity)ElectrodeChemistryElectrochemistryElectrolytePower (physics)PhysicsEndocrinologyEngineeringPhysical chemistryMedicineQuantum mechanicsMetallurgyAdvanced Battery Materials and TechnologiesMXene and MAX Phase MaterialsAdvancements in Battery Materials
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