Litcius/Paper detail

Harnessing the unique properties of MXenes for advanced rechargeable batteries

Deobrat Singh, Vivekanand Shukla, Nabil Khossossi, A. Ainane, Rajeev Ahuja

2020Journal of Physics Energy29 citationsDOIOpen Access PDF

Abstract

Abstract In recent years, two-dimensional MXenes have been emerged as potential electrode materials for rechargeable batteries due to their unique properties such as exceptional safety, significant interlayer spacing, environmental flexibility, large surface area, high electrical conductivity, and excellent thermal stability. This review examined all of the recent advances in the field of MXenes and their composites (hybrid structures), which are found to be useful for the electrochemical applications of advanced rechargeable batteries. The main focus of this review is on metal-ion batteries and lithium–sulfur (Li–S) batteries. It is intended to show that the combination of recent improvements in the synthesis and characterization, greater control of the interlayer distance, and new MXene composites, together serve as an emerging and potential way for energy storage applications.

Topics & Concepts

MXenesMaterials scienceNanotechnologyFlexibility (engineering)Energy storageLithium (medication)SupercapacitorBattery (electricity)Electrochemical energy storageElectrodeElectrochemistryChemistryEndocrinologyMedicineQuantum mechanicsPhysical chemistryMathematicsPower (physics)StatisticsPhysicsMXene and MAX Phase Materials2D Materials and ApplicationsAdvanced Photocatalysis Techniques