Sodium manganese-rich layered oxides: Potential candidates as positive electrode for Sodium-ion batteries

E Gonzalo, M Zarrabeitia, NE Drewett… - Energy Storage …, 2021 - Elsevier
Sodium-ion batteries (SIBs) are amongst the most attractive alternatives for stationary
applications and light electromobility due to potentially substantial cost reductions resulting …

Enhanced cathode materials for advanced lithium-ion batteries using nickel-rich and lithium/manganese-rich LiNixMnyCozO2

B Jeevanantham, MK Shobana - Journal of Energy Storage, 2022 - Elsevier
Fossil fuel consumption raises the world's economy by causing severe ecological effects.
Thus, contemplating an energy gadget with environmentally friendly behavior would be a …

Toward greener and sustainable Li-ion cells: an overview of aqueous-based binder systems

PS Salini, SV Gopinadh, A Kalpakasseri… - ACS Sustainable …, 2020 - ACS Publications
Lithium ion (Li-ion) cells have gained considerable attention in the past few years as one of
the most promising energy storage systems for various applications. Binders, an important …

Highly reversible local structural transformation enabled by native vacancies in O2-type Li-rich layered oxides with anion redox activity

H Liu, C Li, W Tong, B Hu - The Journal of Physical Chemistry …, 2023 - ACS Publications
A novel O2-phase Li1. 033Ni0. 2 [□ 0.1 Mn0. 5] O2 cathode with native vacancies (denoted
as “□”) was delicately designed. By a combination of noninvasive 7Li pj-MATPASS NMR …

Water-based LiNi0. 83Co0. 12Mn0. 05O2 electrodes with excellent cycling stability fabricated using unconventional binders

S Radloff, RG Scurtu, M Hölzle… - Journal of The …, 2022 - iopscience.iop.org
Water-based processing of positive Li-ion battery electrodes is becoming increasingly
important to enable green and sustainable electrode production. Although already widely …

Double-helix-superstructure aqueous binder to boost excellent electrochemical performance in Li-rich layered oxide cathode

G Zhang, B Qiu, Y Xia, X Wang, Q Gu, Y Jiang… - Journal of Power …, 2019 - Elsevier
Li-rich layered oxides are highlighted as promising candidates for the next-generation
cathode materials in Li-ion batteries, but suffer from poor cycling stability and voltage fading …

[HTML][HTML] Mitigating water-induced surface degradation in water-based Ni-rich Li-ion battery electrodes

S Radloff, RG Scurtu, G Carbonari, M Hölzle… - Journal of Power …, 2023 - Elsevier
Replacement of the toxic solvent used during manufacturing of cathode electrodes for Li-ion
batteries with water is an essential step on the road towards eco-friendly battery production …

Surface coating of a LiNi x Co y Al 1− x− y O 2 (x> 0.85) cathode with Li 3 PO 4 for applying a water-based hybrid polymer binder during Li-ion battery preparation

T Watanabe, T Yokokawa, M Yamada, S Kurosumi… - RSC …, 2021 - pubs.rsc.org
To produce water-stable Ni-rich lithium nickel cobalt aluminum oxides (LiNixCoyAl1− x−
yO2, x> 0.85, NCAs), the formation of trilithium phosphate (Li3PO4)-coated layers on the …

Applying established water-based binders to aqueous processing of LiNi0. 83Co0. 12Mn0. 05O2 positive electrodes

S Radloff, RG Scurtu, M Hölzle… - Journal of The …, 2021 - iopscience.iop.org
The combination of two different binders: styrene-butadiene rubber (SBR) and polyacrylic
acid (PAA), in combination with carboxymethylcellulose (CMC) has been investigated for …

Polymeric Binders in Modern Metal‐ion Batteries

H Chen, S Zhang, G Liu, C Yan - Functional Polymers for Metal …, 2023 - Wiley Online Library
Polymeric binders are important components in maintaining the structural integrity of
electrodes in energy storage devices. The emergence of alloy‐and conversion‐type …