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- P. Tan,L. Shi, W. Shyy, T.S. Zhao.Morphology of the discharge product in non-aqueous lithium-oxygen batteries: furrowed toroid particles correspond to a higher energy efficiency.Energy Technology,2016,4,393–400.
- P. Tan,W. Shyy, T.S. Zhao, X.B. Zhu, Z.H. Wei.A RuO2 nanoparticle-decorated buckypaper cathode for non-aqueous lithium-oxygen batteries.Journal of Materials Chemistry A,2015,3,19042–19049.
- P. Tan,W. Shyy, T.S. Zhao.What is the ideal distribution of electrolyte inside cathode pores of non-aqueous lithium-air batteries.Science Bulletin,2015,60,975–976.
- P. Tan,W. Shyy, T.S. Zhao, Z.H. Wei, L. An.Discharge product morphology versus operating temperature in non-aqueous lithium-air batteries.Journal of Power Sources,2014,278,133–140.
- P. Tan,W. Shyy, Z.H. Wei, L. An, T.S. Zhao.A carbon powder-nanotube composite cathode for non-aqueous lithium-air batteries.Electrochimica Acta,2014,147,1–8.
- P. Tan,W. Shyy, L. An, Z.H. Wei, T.S. Zhao.A gradient porous cathode for non-aqueous lithium-air batteries leading to a high capacity.Electrochemistry Communications,2014,46,111–114.
- P. Tan,Z.H. Wei, W. Shyy, T.S. Zhao.Prediction of the theoretical capacity of non-aqueous lithium-air batteries.Applied Energy,2013,4,275–282.