Navigating the Carbon Maze: A Roadmap to Effective Carbon Conductive Networks for Lithium‐Ion Batteries

JF Baumgärtner, KV Kravchyk… - Advanced Energy …, 2025‏ - Wiley Online Library
Conductive networks are integral components in Li‐ion battery electrodes, serving the dual
function of providing electrons to the active material while its porosity ensures Li‐ion …

Polyanionic (phosphates, silicates, sulfates) frameworks as electrode materials for rechargeable Li (or Na) batteries

C Masquelier, L Croguennec - Chemical Reviews, 2013‏ - ACS Publications
For more than 20 years, most of the technological achievements for the realization of
positive electrodes for practical rechargeable Li battery systems have been devoted to …

Revealing the intercalation mechanisms of lithium, sodium, and potassium in hard carbon

S Alvin, HS Cahyadi, J Hwang, W Chang… - Advanced Energy …, 2020‏ - Wiley Online Library
Hard carbon is the most promising anode material for sodium‐ion batteries and potassium‐
ion batteries owing to its high stability, widespread availability, low‐cost, and excellent …

Rechargeable iodine batteries: fundamentals, advances, and perspectives

S Yang, X Guo, H Lv, C Han, A Chen, Z Tang, X Li… - ACS …, 2022‏ - ACS Publications
Lattice distortion and structure collapse are two intrinsic issues of intercalative-type
electrodes derived from repeated ion shuttling. In contrast, rechargeable iodine batteries …

Na 3 V 2 (PO 4) 3@ C core–shell nanocomposites for rechargeable sodium-ion batteries

W Duan, Z Zhu, H Li, Z Hu, K Zhang… - Journal of Materials …, 2014‏ - pubs.rsc.org
Na3V2 (PO4) 3 (NVP) is an attractive cathode material for sodium ion batteries due to its
high theoretical energy density and stable three-dimensional (3D) NASICON structure. In …