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- Flow-driven morphology control in the cobalt–oxalate system. Eszter Tóth–Szeles, Gábor Schuszter, Ágota Tóth, Zoltán Kónya, Dezső Horváth
, CrystEngComm
, 2016
, 18
, 2057
- Solvometallurgical recovery of cobalt from lithium-ion battery cathode materials using deep-eutectic solvents. Nand Peeters, Koen Binnemans, Sofía Riaño
, Green Chem.
, 2020
, 22
, 4210
- Recycling of rare earths from NdFeB magnets using a combined leaching/extraction system based on the acidity and thermomorphism of the ionic liquid [Hbet][Tf2N]. David Dupont, Koen Binnemans
, Green Chem.
, 2015
, 17
, 2150
- Nickel–cobalt oxalate as an efficient non-precious electrocatalyst for an improved alkaline oxygen evolution reaction. Sourav Ghosh, Rajkumar Jana, Sagar Ganguli, Harish Reddy Inta, Gouri Tudu, Heramba V. S. R. M. Koppisetti, Ayan Datta, Venkataramanan Mahalingam
, Nanoscale Adv.
, 2021
, 3
, 3770
- Aligned cobalt-based Co@CoO
x
nanostructures for efficient electrocatalytic water oxidation. Jing Qi, Wei Zhang, Rui Cao
, Chem. Commun.
, 2017
, 53
, 9277
- Oxalatocuprate(ii) hexaammincobalt(iii) as a precursor of metastable solid solutions in the Co–Cu system. Varvara Lagunova, Pavel Rubilkin, Evgeny Filatov, Pavel Plyusnin, Natalia Kuratieva, Sergey Korenev
, New J. Chem.
, 2024
, 48
, 1578
- Preparation and application of cobalt oxide nanostructures as electrode materials for electrochemical supercapacitors. Faranak Manteghi, Sayed Habib Kazemi, Masoud Peyvandipour, Ahmad Asghari
, RSC Adv.
, 2015
, 5
, 76458
- Control of morphology and nanostructure of copper and cobalt oxalates: Effect of complexing ions, polymeric additives and molecular weight. Paul Bowen, Ollivier Pujol, Nathalie Jongen, Jacques Lemaître, Alke Fink, Pierre Stadleman, Heinrich Hofmann
, Nanoscale
, 2010
, 2
, 2470
- New open-framework cobalt sulfate-oxalates based on molecular and chain-like building blocks. Kangcai Wang, Daibing Luo, Dingguo Xu, Furong Guo, Lin Liu, Zhien Lin
, Dalton Trans.
, 2014
, 43
, 13476
- Recovery of cobalt from spent lithium ion batteries using sulphuric acid leaching followed by solid–liquid separation and solvent extraction. Feng Wang, Rong Sun, Jun Xu, Zheng Chen, Ming Kang
, RSC Adv.
, 2016
, 6
, 85303