Shujiang Geng
Northeastern University
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Publication
Featured researches published by Shujiang Geng.
ACS Applied Materials & Interfaces | 2018
Gang Chen; Bin Zhu; Hui Deng; Yadan Luo; Wenkang Sun; Hailiang Liu; Wei Zhang; Xunying Wang; Yumin Qian; Xianwei Hu; Shujiang Geng; Jung-Sik Kim
A solid oxide fuel cells performance is largely determined by the ionic-conducting electrolyte. A novel approach is presented for using the semiconductor perovskite La0.25Sr0.75TiO3 (LST) as the electrolyte by creating surface superionic conduction, and the authors show that the LST electrolyte can deliver superior power density, 908.2 mW cm-2 at just 550 °C. The prepared LST materials formed a heterostructure, including an insulating core and a superionic conducting surface layer. The rapid ion transport along the surfaces or grain boundaries was identified as the primary means of oxygen ion conduction. The fuel cell-induced phase transition was observed from the insulating LST to a super O2- conductivity of 0.221 S cm-1 at 550 °C, leading to excellent current and power outputs.
Journal of Power Sources | 2010
Shujiang Geng; Yandong Li; Zhonghe Ma; Linlin Wang; Linna Li; Fuhui Wang
International Journal of Hydrogen Energy | 2012
Shujiang Geng; Qian Wang; Wen Wang; Shenglong Zhu; Fuhui Wang
Journal of Power Sources | 2012
Shujiang Geng; Shaojun Qi; Dong Xiang; Shenglong Zhu; Fuhui Wang
International Journal of Hydrogen Energy | 2018
Gang Chen; Wenkang Sun; Yadan Luo; Hailiang Liu; Shujiang Geng; Kai Yu; Guoqiang Liu
International Journal of Hydrogen Energy | 2017
Shujiang Geng; Qingqing Zhao; Yaohua Li; Jianjia Mu; Gang Chen; Fuhui Wang; Shenglong Zhu
Materials Letters | 2012
Shujiang Geng; Shaojun Qi; Qicheng Zhao; Zhonghe Ma; Shenglong Zhu; Fuhui Wang
Journal of Power Sources | 2013
Shujiang Geng; Yaohua Li; Zhonghe Ma; Shenglong Zhu; Fuhui Wang
Journal of Alloys and Compounds | 2018
Qingqing Zhao; Shujiang Geng; Gang Chen; Fuhui Wang
International Journal of Hydrogen Energy | 2018
Gang Chen; Yadan Luo; Wenkang Sun; Hailiang Liu; Yushi Ding; Ying Li; Shujiang Geng; Kai Yu; Guoqiang Liu