1 |
Spray pyrolysis of conductor- and binder-free porous FeS2 films for high-performance lithium ion batteries Al Khateeb S, Sparks TD Journal of Materials Science, 54(5), 4089, 2019 |
2 |
Preventing thermal runaway propagation in lithium ion battery packs using a phase change composite material: An experimental study Wilke S, Schweitzer B, Khateeb S, Al-Hallaj S Journal of Power Sources, 340, 51, 2017 |
3 |
Analysis of the structural evolution of the SEI layer in FeF2 thin-film lithium-ion batteries upon cycling using HRTEM and EELS Santos-Ortiz R, Rojhirunsakool T, Jha JK, Al Khateeb S, Banerjee R, Jones KS, Shepherd ND Solid State Ionics, 303, 103, 2017 |
4 |
Fuel Cell Performance of Palladium-Platinum Core-Shell Electrocatalysts Synthesized in Gram-Scale Batches Khateeb S, Guerreo S, Su D, Darling RM, Protsailo LV, Shao MH Journal of the Electrochemical Society, 163(7), F708, 2016 |
5 |
Cycling performance and morphological evolution of pulsed laser-deposited FeF2 thin film cathodes for Li-ion batteries Al Khateeb S, Lind AG, Santos-Ortiz R, Shepherd ND, Jones KS Journal of Materials Science, 50(15), 5174, 2015 |
6 |
Experimental validation of a 0-D numerical model for phase change thermal management systems in lithium-ion batteries Schweitzer B, Wilke S, Khateeb S, Al-Hallaj S Journal of Power Sources, 287, 211, 2015 |
7 |
Effects of Steel Cell Components on Overall Capacity of Pulsed Laser Deposited FeF2 Thin Film Lithium Ion Batteries Al Khateeb S, Lind AG, Santos-Ortiz R, Shepherd ND, Jones KS Journal of the Electrochemical Society, 162(8), A1667, 2015 |
8 |
The influence of gas-diffusion layer properties on elevated temperature operation of polymer-electrolyte fuel cells Darling RM, Khateeb S Journal of Power Sources, 243, 328, 2013 |