1 |
Y. Yang, E. G. Okonkwo, G. Huang, S. Xu, W. Sun,Y. He, On the sustainability of lithium ion battery industry – a review and perspective, Energy Storage Materials, 36 (2021)186-212. |
미소장 |
2 |
A. Sonoc, J. Jeswiet, A review of lithium supply and demand and a preliminary investigation of a room temperature method to recycle lithium ion batteries to recover lithium and other materials, Procedia CIRP, 15 (2014) 289-293. |
미소장 |
3 |
H. Zou, E. Gratz, D. Apelian,Y. Wang, A novel method to recycle mixed cathode materials for lithium ion batteries, Green Chemistry, 15 (2013) 1183-1191. |
미소장 |
4 |
O. A. Nasser,M. Petranikova, Review of achieved purities after Li-ion batteries hydromet-allurgical treatment and impurities effects on the cathode performance, Batteries, 7 (2021) 60. |
미소장 |
5 |
B. Makuza, Q. Tian, X. Guo, K. Chattopadhyay, D. Yu, Pyrome-tallurgical options for recycling spent lithium-ion batteries: a comprehensive review, Journal of Power Sources, 491 (2021) 229622. |
미소장 |
6 |
J.C.Y. Jung, P.C. Sui, J. Zhang, A review of recycling spent lithium-ion battery cathode amaterials using hydrometallurgical treatments, Journal of Energy Storage, 35(2021) 102217. |
미소장 |
7 |
L. Brückner, J. Frank, T. Elwert, Industrial recycling of lithium-ion batteries-a critical review of metallurgical process routes, Metals, 10 (2020) 1107. |
미소장 |
8 |
L. F. Zhou, D. Yang, T. Du, H. Gong, W. B. Luo, The current process for the recycling of spent lithium ion batteries, Frontiers in Chemistry, 8 (2020) 578044. |
미소장 |
9 |
X. Zheng, Z. Zhu, X. Lin, Y. Zhang, Y. He, H. Cao ,Z. Sun, A mini-review on metal recycling from spent lithium ion batteries, Engineering, 4 (2018) 361-370. |
미소장 |
10 |
C. Padwal, H. D. Pham, S. Jadhav, T. T. Do, J. Nerkar, L. T. M. Hoang, A. Kumar Nanjundan, S. G. Mundree, D. P. Dubal, Deep eutectic solvents: green approach for cathode recycling of Li-ion batteries, Advanced Energy and Sustainability Research, 3 (2021) 2100133. |
미소장 |
11 |
M. K. Tran, M. T. F. Rodrigues, K. Kato, G. Babu, P. M. Ajayan, Deep eutectic solvents for cathode recycling of Li-ion batteries, Nature Energy, 4 (2019) 339-345. |
미소장 |
12 |
B. A. Nuraeni, K. Avarmaa, L. H. Prentice, W. J. Rankin, M. A. Rhamdhani, Carbothermic reduction of LiCoO2 cathode material:thermodynamic analysis, microstructure and mechanisms, Sustainable Materials and Technologies, 34 (2022) e00526. |
미소장 |
13 |
G. Lombardo, B. Ebin, M. R. J. Foreman, B. M. Steenari, M. Petranikova, Chemical transformations in Li-ion battery electrode materials by carbothermic reduction, ACS Sustainable Chemistry & Engineering, 7(2019) 13668-13679. |
미소장 |
14 |
P. Y. Liao, J. G. Duh, H. S. Sheu, Structural and thermal properties of LiNi 0.6-xMgxCo0.25Mn0.15O2 cathode materials, Journal of Power Sources, 183 (2008) 766-770. |
미소장 |
15 |
S. Wu, C.W. Yang, Preparation of LiNi0.8Co0.2O2-based cathode materials for lithium batteries by a co-precipitation method, Journal of Power Sources, 146(2005) 270-274. |
미소장 |
16 |
E. Antolini, M. Ferretti, Synthesis and thermal stability of LiCoO2, Journal of Solid State Chemistry, 117 (1995) 1-7. |
미소장 |