| (1) Shancheng   Yu, Shoucheng He, Han Chen, Lucun Guo.  Effect   of calcination temperature on oxidation state of cobalt in calcium cobaltite   and relevant performance as intermediate-temperature solid oxide fuel cell   cathodes. Journal of Power Sources, 280, 2015: 581-587 (2)   Hailu Dai, Shoucheng He, Han Chen, Shancheng Yu, Lucun Guo. Performance   enhancement for solid oxide fuel cells using electrolyte surface modification.   Journal of Power Sources, 280, 2015: 406-409 (3) Hailu Dai,   Han Chen, Shoucheng He, Guifan Cai, Lucun Guo.   Improving solid oxide fuel cell performance by a single-step co-firing process. Journal   of Power Sources, 286, 2015: 427-430 (4)Qing   Ni, Han Chen, Lin Ge, Shancheng Yu, Lucun Guo. Investigation of La1-xSmx-ySryCoO3-δ   cathode for intermediate temperature solid oxide fuel cells. Journal of Power   Sources, 349, 2017: 130-137 (5)Yanli   Zhang, Guifan Cai, Yiheng Gu, Lin Ge, Yifeng Zheng, Han Chen, Lucun Guo. Modifying   the electrode-electrolyte interface of anode supported solid oxide. Energy   Conversion and Management, 171, 2018: 1030-1037 (6)Yiheng   Gu, Yanli Zhang, Lin Ge, Yifeng Zheng, Han Chen, Lucun Guo. YSZ   electrolyte support with novel symmetric structure by phase inversion process   for solid oxide fuel cells. Energy   Conversion and Management, 177, 2018: 11-18 (7) Yali   Luo, Xueyan Li, Yanli Zhang, Lin Ge, Han Chen, Lucun Guo. Electrochemical   properties and structural stability of Ga- and Y- codoping in Li7La3Zr2O12   ceramic electrolytes for lithium-ion batteries. Electrochimica Acta, 294,   2019: 217-225 (8) Yiheng   Gu, Yanli Zhang, Yifeng Zheng, Han Chen, Lin Ge, Lucun Guo.  PrBaMn2O5+δ   with praseodymium oxide nano-catalyst as electrode for symmetrical solid   oxide fuel cells. Applied Catalysis B: Environmental, 257(15), 2019: 117868 |