Title : Opening Magnesium Storage Capability of Two-Dimensional MXene by Intercalation of Cationic Surfactant.

Pub. Date : 2018 Apr 24

PMID : 29543438






5 Functional Relationships(s)
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1 Nevertheless, a previous study showed that multivalent Mg2+ ions cannot reversibly insert into MXene, resulting in a negligible capacity. mxene mucin 7, secreted Homo sapiens
2 Density functional theory simulations verify that intercalated CTA+ cations reduce the diffusion barrier of Mg2+ on the MXene surface, resulting in the significant improvement of the reversible insertion/deinsertion of Mg2+ ions between MXene layers. mxene mucin 7, secreted Homo sapiens
3 Density functional theory simulations verify that intercalated CTA+ cations reduce the diffusion barrier of Mg2+ on the MXene surface, resulting in the significant improvement of the reversible insertion/deinsertion of Mg2+ ions between MXene layers. mxene mucin 7, secreted Homo sapiens
4 Density functional theory simulations verify that intercalated CTA+ cations reduce the diffusion barrier of Mg2+ on the MXene surface, resulting in the significant improvement of the reversible insertion/deinsertion of Mg2+ ions between MXene layers. mxene mucin 7, secreted Homo sapiens
5 Density functional theory simulations verify that intercalated CTA+ cations reduce the diffusion barrier of Mg2+ on the MXene surface, resulting in the significant improvement of the reversible insertion/deinsertion of Mg2+ ions between MXene layers. mxene mucin 7, secreted Homo sapiens