A review on biomass-derived hard carbon materials for sodium-ion batteries

M Thompson, Q Xia, Z Hu, XS Zhao - Materials Advances, 2021 - pubs.rsc.org
This paper presents a review of research progress for biomass-derived hard carbon
materials for sodium-ion storage. It provides an in-depth analysis of hard carbon anode …

Internal structure–Na storage mechanisms–Electrochemical performance relations in carbons

C Bommier, D Mitlin, X Ji - Progress in Materials Science, 2018 - Elsevier
This review focuses on carbon-based sodium ion battery (NIB) negative electrodes,
emphasizing the internal structure–Na storage mechanisms–electrochemical performance …

SEI composition on hard carbon in Na-ion batteries after long cycling: influence of salts (NaPF6, NaTFSI) and additives (FEC, DMCF)

J Fondard, E Irisarri, C Courreges… - Journal of The …, 2020 - iopscience.iop.org
A study of the Solid Electrolyte Interphase (SEI) on hard-carbon (HC) electrodes in sodium
half-cells is presented. Electrochemical performances over> 100 cycles were compared with …

Determination of the solid electrolyte interphase structure grown on a silicon electrode using a fluoroethylene carbonate additive

GM Veith, M Doucet, RL Sacci, B Vacaliuc… - Scientific reports, 2017 - nature.com
In this work we explore how an electrolyte additive (fluorinated ethylene carbonate–FEC)
mediates the thickness and composition of the solid electrolyte interphase formed over a …

Endorsing Na+ storage mechanism in low tortuosity, high plateau capacity hard carbon towards development of high-performance sodium-ion pouch cells

K Bhawana, M Gautam, GK Mishra, N Chakrabarty… - Carbon, 2023 - Elsevier
Understanding the disordered structure of hard carbon and the sodium-ion storage
mechanism is essential for the commercialization of sodium-ion batteries (SIBs). Herein, we …

Long cycle life and high rate sodium-ion chemistry for hard carbon anodes

P Bai, Y He, P Xiong, X Zhao, K Xu, Y Xu - Energy Storage Materials, 2018 - Elsevier
As the most promising anode material for Na-ion batteries, hard carbons suffer both poor
rate capability and cycling stability, which restrict its practical application. These challenges …

Fast and controllable prelithiation of hard carbon anodes for lithium-ion batteries

X Zhang, H Qu, W Ji, D Zheng, T Ding… - … applied materials & …, 2020 - ACS Publications
Hard carbon has been extensively investigated as anode materials for high-energy lithium-
ion batteries owing to its high capacity, long cycle life, good rate capability, and low cost of …

Comparison between Na-ion and Li-ion cells: understanding the critical role of the cathodes stability and the anodes pretreatment on the cells behavior

E de la Llave, V Borgel, KJ Park… - … applied materials & …, 2016 - ACS Publications
The electrochemical behavior of Na-ion and Li-ion full cells was investigated, using hard
carbon as the anode material, and NaNi0. 5Mn0. 5O2 and LiNi0. 5Mn0. 5O2 as the …

A sodium‐ion battery with a low‐cost cross‐linked gel‐polymer electrolyte

H Gao, W Zhou, K Park… - Advanced Energy …, 2016 - Wiley Online Library
The design of a sodium‐ion rechargeable battery with an antimony anode, a Na3V2 (PO4) 3
cathode, and a low‐cost composite gel‐polymer electrolyte based on cross‐linked poly …

Temperature dependent electrochemical performance of graphite anodes for K-ion and Li-ion batteries

RA Adams, A Varma, VG Pol - Journal of Power Sources, 2019 - Elsevier
The electrochemical behavior of graphite anode for potassium-ion batteries (KIBs) is
investigated in detail over varying operating temperatures (0–40° C) with comparisons made …