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Effect of hydrothermally doped-Nb on structure and cycling stability of Li(Ni0.96Co0.04)O2

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MOF-derived, N-doped, hierarchically porous carbon sponges as immobilizers to confine selenium as cathodes for Li–Se batteries with superior storage capacity and perfect cycling stability

Linear selenium molecules are highly dispersed in the micropores of MOF-derived, nitrogen-doped carbon sponges, exhibiting outstanding Li–Se electrochemical performance.
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R-Nb2O5 has an ‘idealized’ V2O5 structure and Wadsley–Roth-like structural stability during Li-ion battery cycling

R-Nb2O5 has minimal structure changes with cycling and symmetric cycling profiles. With Wadsley–Roth ‘slabs’ and an ‘idealized’ V2O5 structure, metastable R-Nb2O5 bridges understanding of two well-studied families of Li-ion battery electrodes.
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