Luyin Yao
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In situ confined-synthesis of mesoporous FeS2@C superparticles and their enhanced sodium-ion storage properties
* Corresponding authors a State Key Laboratory of Molecular Engineering of Polymers and Department of Macromolecular Science, Fudan University, Shanghai 200433, China E-mail: yangdong@fudan.edu.cn b iChem, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Department of Chemistry, Fudan University, Shanghai 200433, China E-mail: agdong@fudan.edu.cn
In situ confined-synthesis of mesoporous FeS2@C superparticles and their enhanced sodium-ion storage properties
In situ confined-synthesis of mesoporous FeS2@C superparticles and their enhanced sodium-ion storage properties Luyin Yao, Biwei Wang, Yuchi Yang, Xiao Chen, Jian-Hua Hu, Dong Yang and Angang Dong Abstract Mesoporous FeS2@C superparticles chemically converted from Fe3O4 nanoparticle superlattices were used as anode materials for sodium-ion batteries with superior electrochemical performance.
Scalable Assembly of Crystalline Binary Nanocrystal Superparticles and Their Enhanced Magnetic and Electrochemical Properties
Related Content: Visible-Light Driven Overall Conversion of CO2 and H2O to CH4 and O2 on 3D-SiC@2D-MoS2 Heterostructure Journal of the American Chemical Society Wang, Zhang, Zhang, Luo, Shen, Lin, Long, Wu, Fu, Wang, and Li 2018 140 (44), pp 14595–14598 Abstract: A marigold-like SiC@MoS2 nanoflower with a unique Z-scheme structure efficiently achieves the overall conversion of gas phase CO2 with H2O (CO2 (g) + 2H2O (g) = CH4 + 2O2) without any sacrificial reagents under visible light (λ ≥ 420...
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