Unleashing the potential of sodium‐ion batteries: current state and future directions for sustainable energy storage

AN Singh, M Islam, A Meena, M Faizan… - Advanced Functional …, 2023 - Wiley Online Library
Rechargeable sodium‐ion batteries (SIBs) are emerging as a viable alternative to lithium‐
ion battery (LIB) technology, as their raw materials are economical, geographically abundant …

Recent advances of emerging 2D MXene for stable and dendrite‐free metal anodes

C Wei, Y Tao, Y An, Y Tian, Y Zhang… - Advanced Functional …, 2020 - Wiley Online Library
Metal anodes based on a plating/stripping electrochemistry such as metallic Li, Na, K, Zn,
Mg, Ca, Al, and Fe have attracted widespread attention over the past several years because …

Carbon black reborn: Structure and chemistry for renewable energy harnessing

S Khodabakhshi, PF Fulvio, E Andreoli - Carbon, 2020 - Elsevier
Carbon Black (CB) is one of the most abundantly produced carbon nanostructured
materials, and approximately 70% of it is used as pigment and as reinforcing phase in …

Recent advances and perspectives in stable and dendrite-free potassium metal anodes

C Wei, Y Tao, H Fei, Y An, Y Tian, J Feng… - Energy Storage Materials, 2020 - Elsevier
Potassium (K) metal is the “super star” among all the anode materials for potassium-ion
batteries because of its merits such as large abundance (~ 0.0017​ wt%), high theoretical …

2D graphitic carbon nitride as the efficient cathode material for the non-aqueous rechargeable iron-ion battery under an ambient environment

JK Yadav, B Rani, A Dixit - Journal of Power Sources, 2023 - Elsevier
We fabricated non-aqueous rechargeable iron ion batteries under ambient conditions
(without an inert atmosphere or glovebox) using two-dimensional (2D) graphitic-carbon …

Fe‐Ion Bolted VOPO4∙2H2O as an Aqueous Fe‐Ion Battery Electrode

Y Xu, X Wu, SK Sandstrom, JJ Hong, H Jiang… - Advanced …, 2021 - Wiley Online Library
Iron ion batteries using Fe2+ as a charge carrier have yet to be widely explored, and they
lack high‐performing Fe2+ hosting cathode materials to couple with the iron metal anode …

Regulating Interlayer‐Spacing of Vanadium Phosphates for High‐Capacity and Long‐Life Aqueous Iron‐Ion Batteries

C Li, Y Xu, W Deng, Y Zhou, X Guo, Y Chen, R Li - Small, 2024 - Wiley Online Library
Although the research on aqueous batteries employing metal as the anode is still mainly
focused on the aqueous zinc‐ion battery, aqueous iron‐ion batteries are considered as …

[HTML][HTML] Iron metal anode for aqueous rechargeable batteries

Z He, F Xiong, S Tan, X Yao, C Zhang, Q An - Materials Today Advances, 2021 - Elsevier
Iron metal anode satisfies the safety, low-cost, non-toxicity, and energy-dense pursuits
chasing by the battery community, but passivation, parasitic hydrogen evolution reaction …

Aqueous transition-metal ion batteries: Materials and electrochemistry

S Zhu, Q Wang, J Ni - EnergyChem, 2023 - Elsevier
The constant pursuit of alternative energy sources stimulates the rapid exploitation of energy
storage systems. Compared to alkali metal-ion batteries, aqueous transition-metal ion …

Capacity degradation analysis of the rechargeable iron ion batteries using post-mortem analysis and the impedance spectroscopy

JK Yadav, B Rani, A Dixit - Ionics, 2023 - Springer
We fabricated rechargeable iron ion batteries (RIIBs) using mild steel (MS) as a negative
electrode, vanadium penta oxide as a positive electrode, and ferrous perchlorate hydrate in …