1 |
Effects of Mn(II) on nano silicon@polyaniline electrodes in both half and full cells Chen HH, Xu HY, Zeng YY, Cai JH, Liu LM, Ma TY, Wang F, Qiu XP International Journal of Energy Research, 45(3), 4357, 2021 |
2 |
Heterogeneous aging of large-scale flexible lithium-ion batteries based on micro-heterostructures and simulation Hong YH, Zheng JQ, Deng DR, Wu QH, Shen WF International Journal of Energy Research, 44(14), 12112, 2020 |
3 |
Theoretical simulation of the optimal relation between active material, binder and conductive additive for lithium-ion battery cathodes Miranda D, Goren A, Costa CM, Silva MM, Almeida AM, Lanceros-Mendez S Energy, 172, 68, 2019 |
4 |
Synthesis and improved electrochemical performance of LiMn2- xGdxO4 based cathodes Ram P, Goren A, Ferdov S, Silva MM, Choudhary G, Singhal R, Costa CM, Sharma RK, Lanceros-Mendez S Solid State Ionics, 300, 18, 2017 |
5 |
Capacity and power fade cycle-life model for plug-in hybrid electric vehicle lithium-ion battery cells containing blended spinel and layered-oxide positive electrodes Cordoba-Arenas A, Onori S, Guezennec Y, Rizzoni G Journal of Power Sources, 278, 473, 2015 |
6 |
A control-oriented lithium-ion battery pack model for plug-in hybrid electric vehicle cycle-life studies and system design with consideration of health management Cordoba-Arenas A, Onori S, Rizzoni G Journal of Power Sources, 279, 791, 2015 |
7 |
다이메틸설폭시화물 용매를 사용한 PVC-LMO 비드의 제조와 리튬 이온 흡착 특성 유해나, 이동환, 이민규 Clean Technology, 20(2), 154, 2014 |
8 |
Simulation and analysis of stress in a Li-ion battery with a blended LiMn2O4 and LiNi0.8Co0.15Al0.05O2 cathode Dai YL, Cai L, White RE Journal of Power Sources, 247, 365, 2014 |
9 |
Degradation of lithium ion batteries employing graphite negatives and nickel-cobalt-manganese oxide plus spinel manganese oxide positives: Part 1, aging mechanisms and life estimation Wang J, Purewal J, Liu P, Hicks-Garner J, Soukazian S, Sherman E, Sorenson A, Vu L, Tataria H, Verbrugge MW Journal of Power Sources, 269, 937, 2014 |
10 |
Degradation of lithium ion batteries employing graphite negatives and nickel-cobalt-manganese oxide plus spinel manganese oxide positives: Part 2, chemical-mechanical degradation model Purewal J, Wang J, Graetz J, Soukiazian S, Tataria H, Verbrugge MW Journal of Power Sources, 272, 1154, 2014 |