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Advanced hybrid electrolyte Li-O2 battery realized by dual superlyophobic membrane
Joule, 2019, 3, 1-16.Qiao, Y.; Wang, Q. F.; Mu, X. W.; Deng, H.; He, P.; Yu, J. H.*; Zhou, H. S.*
Advanced hybrid electrolyte Li-O2 battery realized by dual superlyophobic membrane
Protein lysine 43 methylation by EZH1 promotes AML1-ETO transcriptional repression in leukemia
Nature Communications volume 10, Article number: 5051 (2019).Liping Dou, Fei Yan, Jiuxia Pang, Dehua Zheng, Dandan Li , Li Gao, Lijun Wang, Yihan Xu , Jinlong Shi , Qian Wang, Lei Zhou, Na Shen, Puja Singh, Lili Wang, Yonghui Li, Yvchi Gao, Tao Liu, Chongjian Chen, Aref Al-Kali, Mark R. Litzow, Young-In Chi, Ann M. Bode, Chunhui Liu, Haojie Huang, Daihong Liu , Guido Marcucci, Shujun Liu* & Li Yu*
Protein lysine 43 methylation by EZH1 promotes AML1-ETO transcriptional repression in leukemia
Three-Dimensional Tetrathiafulvalene-Based Covalent Organic Frameworks for Tunable Electrical Conductivity
J. Am. Chem. Soc., 2019, 141, 13324.Li, H.; Chang, J. H.; Li, S. S.; Guan, X. Y.; Li, D. H.; Li, C. Y.; Tang, L. X.; Xue, M.; Yan, Y. S.; Valtchev, V.; Qiu, S. L.; Fang, Q. R.*
Three-Dimensional Tetrathiafulvalene-Based Covalent Organic Frameworks for Tunable Electrical Conductivity
Fabricating mechanically robust binder-free structured zeolites by 3D printing coupled with zeolite soldering strategy: a superior configuration for CO2 capture
Advanced Science, 2019, 6, 1901317.Wang, S.; Bai, P.; Sun, M. Z.; Liu, W.; Li, D. D.; Wu, W. Z.; Yan, W. F.; Shang, J.*; Yu, J. H.*
Fabricating mechanically robust binder-free structured zeolites by 3D printing coupled with zeolite soldering strategy: a superior configuration for CO2 capture
Atomic-Scale Insights into Surface Lattice Oxygen Activation at the Spinel/Perovskite interface of Co3O4/La0.3Sr0.7CoO3.
Angew. Chem. Int. Ed. 2019, 58(34), 11720-11725. Xiyang Wang, Ziye Pan, Xuefeng Chu, Keke Huang, Yingge Cong, Rui Cao, Ritimukta Sarangi, Liping Li, Guangshe Li, Shouhua Feng*
Atomic-Scale Insights into Surface Lattice Oxygen Activation at the Spinel/Perovskite interface of Co3O4/La0.3Sr0.7CoO3.
Promoting Subordinate, Efficient Ruthenium Sites with Interstitial Silicon for Pt‐Like Electrocatalytic Activity
Angewandte Chemie International Edition, 2019, 58, 11409-11413. Hui Chen, Xuan Ai, Wang Liu, Zhoubing Xie, Weiqiang Feng, Wei Chen and Xiaoxin Zou*
Promoting Subordinate, Efficient Ruthenium Sites with Interstitial Silicon for Pt‐Like Electrocatalytic Activity