CoS@carbon nanofiber as the high-performance anode for potassium-ion storage.

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Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), State Key Laboratory of Superhard Materials, College of Physics, Jilin University Changchun 130012 China.

Published: April 2021

AI Article Synopsis

  • - Potassium-ion batteries are gaining attention as a potential lower-cost alternative to lithium-ion batteries, but face challenges like slow ion mobility and volume expansion that can lead to electrode failure.
  • - To tackle these challenges, researchers developed a micro-structure with CoS nanoparticles embedded in carbon fiber, utilizing an efficient electrospinning process.
  • - The resulting anode demonstrates impressive electrochemical performance, achieving a high potassium storage capacity and fast ion migration due to its unique design that enhances active area and manages volume changes.

Article Abstract

Thanks to their intrinsic merits of low cost and natural abundance, potassium-ion batteries have drawn intense interest and are regarded as a possible replacement for lithium-ion batteries. The larger radius of potassium, however, provides slow mobility, which normally leads to sluggish diffusion of host materials and eventual expansion of volume, typically resulting in electrode failure. To address these issues, we design and synthesize an effective micro-structure with CoS nanoparticles segregated in carbon fiber utilizing a concise electrospinning process. The anode delivers a high K storage capacity of 721 mA h g at 0.1 A g and a remarkable rate performance of 360 mA h g at a high current density of 3 A g. A small charge-transfer resistance and a high pseudocapacitive contribution that benefit fast potassium ion migration are indicated by quantitative analysis. The outstanding electrochemical performance can be attributed to the distinct architecture design facilitating high active electrode-electrolyte area and fast kinetics as well as controlled volume expansion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8698690PMC
http://dx.doi.org/10.1039/d1ra01069gDOI Listing

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