1、Poly(ethylene oxide)-Li10SnP2S12 Composite Polymer Electrolyte Enables High-Performance All-Solid-State Lithium Sulfur Battery;Xue Li,Donghao Wang,Hongchun Wang,Hefeng Yan,Zhengliang Gong,and Yong Yang;ACS Appl Mater Interface;11:22745?22753;June 3, 2019 2、Impact of Structural Transformation on Electrochemical Performances of Li-Rich Cathode Materials: The Case of Li2RuO3;Feng Zheng,Shiyao Zheng,Peng Zhang,Xiaofeng Zhang,Shunqing Wu,Yong Yang,and Zi-zhong Zhu; The Journal of Physical Chemistry C;123:13491-13499;May 15, 2019 3、Stable Cycling Lithium-Sulfur Solid Batteries with Enhanced Li/ Li10GeP2S12 Solid Electrolyte Interface Stability;Ediga Umeshbabu,Bizhu Zheng,Jianping Zhu,Hongchun Wang,Yixiao Li,and Yong Yang;ACS Appl.Mater.Interfaces;11:18436-18447;April 29, 2019 4、In Situ Generated Li2S-C Nanocomposite for High-Capacity and Long-Life All-Solid-State Lithium Sulfur Batteries with Ultrahigh Areal Mass Loading;Hefeng Yan,Hongchun Wang,Donghao Wang,Xue Li,Zhengliang Gong,,and Yong Yang;Nano Letters;19:3280-3287;April 22, 2019 5、Intrinsic Role of Cationic Substitution in Tuning Li/Ni Mixing in High-Ni Layered Oxides;Dawei Wang, Chao Xin, Mingjian Zhang, Jianming Bai, Jiaxin Zheng, Ronghui Kou, Jun Young Peter Ko, Ashfia Huq, Guiming Zhong, Cheng-Jun Sun, Yong Yang, Zonghai Chen, Yinguo Xiao, Khalil Amine, Feng Pan, and Feng Wang; Chemistry of Materials;31:2731-2740; March 2019 6、Identification of the Solid Electrolyte Interface on Si/C Composite Anode with FEC as the additive; Qi Li, Xiangsi Liu, Xiang Han, Yuxuan Xiang, Guiming Zhong,Jian Wang, Bizhu Zheng, Jigang Zhou, and Yong Yang;ACS Applide Materials& Interfaces 1-27; March 21, 2019 7、Comprehensive Understanding of Reduction Mechanisms of Ethylene Sulfite in EC-Based Lithium-Ion Batteries;Fucheng Ren,Wenhua Zuo,Xuerui Yang, Min Lin,Liangfan Xu,Wengao Zhao,Shiyao Zheng,and Yong Yang;The Journal of Physical Chemistry C;123: 5871?5880;February 22, 2019 8、Recent Progress in All-Solid-State Lithium-Sulfur Batteries Using High Li-Ion Conductive Solid Electrolytes; Ediga Umeshbabu, Bizhu Zheng,Yong Yang;Electrochemical Energy Reviews 1-33;February 2019 9、Degradation mechanism of C6/LiNi0.5C00.2Mn0.3O2 Li-ion batteries unraveled by non-destructive and post-mortem methods; Dongjiang Li, Hu Li, Dmitri L. Danilov, Lu Gao, Xiaoxuan Chen, Zhongru Zhang,Jiang Zhou, Rüdiger-A. Eichel, Yong Yang, Peter H.L. Notten; Journal of Power Sources 416: 163-174; February 2019 10、Correlation between long range and local structural changes in Ni-rich layered materials during charge and discharge process;Shiyao Zheng, Chaoyu Hong, Xiaoyun Guan, Yuxuan Xiang, Xiangsi Liu, Gui-Liang Xu,Rui Liu, Guiming Zhong, Feng Zheng, Yixiao Lia, Xiaoyi Zhang, Yang Ren, Zonghai Chen,Khalil Amine, Yong Yang;Journal of Power Sources412: 336-343;February 2019 11、Capacity Fading Induced by Phase Conversion Hysteresis within Alloying Phosphorus Anode; Chengxin Peng , Huixin Chen , Guiming Zhong, Wei Tang , Yuxuan Xiang , Xiangsi Liu , Jinhu Yang, Canzhong Lu, Yong Yang;Nano Energy 58:560-567;Jan 2019 12、Poly(ethylene oxide)-Li10SnP2S12 Composite Polymer Electrolyte Enables High-Performance All-Solid-State Lithium Sulfur Battery;Xue Li,Donghao Wang,Hongchun Wang,Hefeng Yan,Zhengliang Gong,and Yong Yang;ACS Appl Mater Interface;11:22745?22753;June 3, 2019 13、Impact of Structural Transformation on Electrochemical Performances of Li-Rich Cathode Materials: The Case of Li2RuO3;Feng Zheng,Shiyao Zheng,Peng Zhang,Xiaofeng Zhang,Shunqing Wu,Yong Yang,and Zi-zhong Zhu; The Journal of Physical Chemistry C;123:13491?13499;May 15, 2019 14、Stable Cycling Lithium-Sulfur Solid Batteries with Enhanced Li/ Li10GeP2S12 Solid Electrolyte Interface Stability;Ediga Umeshbabu,Bizhu Zheng,Jianping Zhu,Hongchun Wang,Yixiao Li,and Yong Yang;ACS Appl.Mater.Interfaces;11:18436-18447;April 29, 2019 15、In Situ Generated Li2S?C Nanocomposite for High-Capacity and Long-Life All-Solid-State Lithium Sulfur Batteries with Ultrahigh Areal Mass Loading;Hefeng Yan,Hongchun Wang,Donghao Wang,Xue Li,Zhengliang Gong,,and Yong Yang;Nano Letters;19:3280?3287;April 22, 2019 16、Intrinsic Role of Cationic Substitution in Tuning Li/Ni Mixing in High-Ni Layered Oxides;Dawei Wang, Chao Xin, Mingjian Zhang, Jianming Bai, Jiaxin Zheng, Ronghui Kou, Jun Young Peter Ko, Ashfia Huq, Guiming Zhong, Cheng-Jun Sun, Yong Yang, Zonghai Chen, Yinguo Xiao, Khalil Amine, Feng Pan, and Feng Wang; Chemistry of Materials;31:2731-2740; March 2019 17、Identification of the Solid Electrolyte Interface on Si/C Composite Anode with FEC as the additive; Qi Li, Xiangsi Liu, Xiang Han, Yuxuan Xiang, Guiming Zhong,Jian Wang, Bizhu Zheng, Jigang Zhou, and Yong Yang;ACS Applide Materials& Interfaces 1-27; March 21, 2019 18、Comprehensive Understanding of Reduction Mechanisms of Ethylene Sulfite in EC-Based Lithium-Ion Batteries;Fucheng Ren,Wenhua Zuo,Xuerui Yang, Min Lin,Liangfan Xu,Wengao Zhao,Shiyao Zheng,and Yong Yang;The Journal of Physical Chemistry C;123: 5871?5880;February 22, 2019 19、Recent Progress in All-Solid-State Lithium-Sulfur Batteries Using High Li-Ion Conductive Solid Electrolytes; Ediga Umeshbabu, Bizhu Zheng,Yong Yang;Electrochemical Energy Reviews 1-33;February 2019 20、Degradation mechanism of C6/LiNi0.5C00.2Mn0.3O2 Li-ion batteries unraveled by non-destructive and post-mortem methods; Dongjiang Li, Hu Li, Dmitri L. Danilov, Lu Gao, Xiaoxuan Chen, Zhongru Zhang,Jiang Zhou, Rüdiger-A. Eichel, Yong Yang, Peter H.L. Notten; Journal of Power Sources 416: 163-174; February 2019 21、Correlation between long range and local structural changes in Ni-rich layered materials during charge and discharge process;Shiyao Zheng, Chaoyu Hong, Xiaoyun Guan, Yuxuan Xiang, Xiangsi Liu, Gui-Liang Xu,Rui Liu, Guiming Zhong, Feng Zheng, Yixiao Lia, Xiaoyi Zhang, Yang Ren, Zonghai Chen,Khalil Amine, Yong Yang;Journal of Power Sources412: 336-343;February 2019 22、Capacity Fading Induced by Phase Conversion Hysteresis within Alloying Phosphorus Anode; Chengxin Peng , Huixin Chen , Guiming Zhong, Wei Tang , Yuxuan Xiang , Xiangsi Liu , Jinhu Yang, Canzhong Lu, Yong Yang;Nano Energy 58:560-567;Jan 2019
Selected Targets of Current Interest 
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