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High-Density Atomic Fe–N4/C in Tubular, Biomass-Derived, Nitrogen-Rich Porous Carbon as Air-Electrodes for Flexible Zn–Air Batteries Journal article
Jiao, Chuanlai, Xu, Zian, Shao, Jingze, Xia, Yu, Tseng, Jochi, Ren, Guangyuan, Zhang, Nianji, Liu, Pengfei, Liu, Chongxuan, Li, Guangshe, Chen, Shi, Chen, Shaoqing, Wang, Hsing Lin. High-Density Atomic Fe–N4/C in Tubular, Biomass-Derived, Nitrogen-Rich Porous Carbon as Air-Electrodes for Flexible Zn–Air Batteries[J]. Advanced Functional Materials, 2023, 33(20), 2213897.
Authors:  Jiao, Chuanlai;  Xu, Zian;  Shao, Jingze;  Xia, Yu;  Tseng, Jochi; et al.
Favorite | TC[WOS]:32 TC[Scopus]:72  IF:18.5/19.6 | Submit date:2023/06/05
Biomass-derived Materials  Flexible Zn–air Batteries  Hierarchical Porous Structures  Single-atom Catalysts  
Mesoscopic scale simulations of heat transport in porous structures Book chapter
出自: Advances in Heat Transfer:Academic Press, 2023, 页码:121-209
Authors:  Yan Su
Favorite | TC[WOS]:2 TC[Scopus]:2 | Submit date:2023/08/03
Mesoscopic Scale  Natural Convection  Nondimensional Lattice Boltzmann Method  Porous Structures  Thermal Diffusion