2022
DOI: 10.1021/acsanm.2c00975
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Ag Nanoparticle-Decorated Mesocarbon Microbeads for Homogeneous Lithium Deposition toward Stable Hybrid Anodes

Abstract: Transforming conventional Li-ion batteries into lithium-ion/lithium metal hybrid batteries by curtailing the N/P (anode lithiation capacity/cathode delithiation capacity) ratio is an effective approach to improve the energy density. The lower N/P ratio brings more capacity in the form of lithium metal, leading to more serious inhomogeneous plating/stripping of Li and active Li consumption. Therefore, it is of great importance to regulate uniform Li plating/stripping in the low N/P ratio condition for improving… Show more

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Cited by 5 publications
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“…Excellent lithiophilicity is one of the criteria for an ideal Li host and influences the nucleation and early growth of the lithium metal, which plays a decisive role in the formation of subsequent dendrites. , In the traditional 3D current collectors studies, some metal nanoparticles such as Au, Ag, and Zn; metal oxides such as Cu x O, SnO 2 , CoO, Co 3 O 4 , ZnO, V 2 O 5 ; metal nitrides such as Ni x N; organics such as pyridine, pyrrole; polymers such as polydopamine coatings and some functional groups, etc. have been shown to improve the lithiophilicity of LMAs. …”
Section: Lithiophilic Materials and Reaction Mechanism In The Nanoarraymentioning
confidence: 99%
“…Excellent lithiophilicity is one of the criteria for an ideal Li host and influences the nucleation and early growth of the lithium metal, which plays a decisive role in the formation of subsequent dendrites. , In the traditional 3D current collectors studies, some metal nanoparticles such as Au, Ag, and Zn; metal oxides such as Cu x O, SnO 2 , CoO, Co 3 O 4 , ZnO, V 2 O 5 ; metal nitrides such as Ni x N; organics such as pyridine, pyrrole; polymers such as polydopamine coatings and some functional groups, etc. have been shown to improve the lithiophilicity of LMAs. …”
Section: Lithiophilic Materials and Reaction Mechanism In The Nanoarraymentioning
confidence: 99%