1 |
Review of experimental and modelling developments for ceria-based solid oxide fuel cells free from internal short circuits Ling YH, Wang XX, Ma ZK, Wei KW, Wu YJ, Khan M, Zheng KQ, Shen SL, Wang SR Journal of Materials Science, 55(1), 1, 2020 |
2 |
Numerical modeling and parametric analysis of solid oxide fuel cell button cell testing process Zheng KQ, Xie KC, Li L, Shen SL, Wang SR International Journal of Energy Research, 43(7), 2635, 2019 |
3 |
Design of a radial vanadium redox microfluidic fuel cell: A new way to break the size limitation Li L, Bei SY, Liu RR, Xu Q, Zheng KQ, She YY, He Y International Journal of Energy Research, 43(7), 3028, 2019 |
4 |
Role of electrical resistance and geometry of porous electrodes in the performance of microfluidic fuel cells Li L, Bei SY, Xu Q, Zheng KQ, Zheng Y International Journal of Energy Research, 42(3), 1277, 2018 |
5 |
The microstructure effect on ion conduction in composite electrolyte Zheng KQ, Shen SL International Journal of Energy Research, 42(13), 4229, 2018 |
6 |
A new experimental method to estimate the leakage current in the solid oxide fuel cell with a mixed ionic and electronic conducting electrolyte Shen SL, Wang ZX, Liu Y, Zhang Q, Zheng KQ Journal of Power Sources, 406, 88, 2018 |
7 |
A 2D model for solid oxide fuel cell with a mixed ionic and electronic conducting electrolyte Shen SL, Kuang Y, Zheng KQ, Gao QY Solid State Ionics, 315, 44, 2018 |
8 |
Optimal design of current collectors for microfluidic fuel cell with flow-through porous electrodes: Model and experiment Li L, Fan WG, Xuan J, Leung MKH, Zheng KQ, She YY Applied Energy, 206, 413, 2017 |
9 |
Reaction Behavior of Polytetrafluoroethylene/Al Granular Composites Subjected to Planar Shock Wave Guo J, Zhang QM, Zhang LS, Guo XG, Long RR, Xue YJ, Wu Q, Ju YY, Liang HZ, Zheng KQ Propellants Explosives Pyrotechnics, 42(3), 299, 2017 |
10 |
Partial modification of flow-through porous electrodes in microfluidic fuel cell Li L, Zheng KQ, Ni M, Leung MKH, Xuan J Energy, 88, 563, 2015 |