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Lithium metal is among the most promising anode materials in next-generation energy-storage systems.
Silicon is considered one of the most promising anode materials for next-generation lithium-ion batteries.
Si is one of the most promising anode materials due to its extremely high specific capacity.
Silicon is the most promising anode material for the next-generation lithium-ion batteries (LIBs).
Silicon is one of the most promising anode candidates for the next generation Li-ion batteries.
Silicon has been recognized as the most promising anode material for high-capacity lithium ion batteries.
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Porous structured silicon (p-Si) has been recognized as one of the most promising anodes for Li-ion batteries.
Tin oxide (SnO2) has been considered as one of the most promising anodes for advanced rechargeable batteries due to its advantages such as high energy density, earth abundance and environmental friendly.
In this regard, Li metal is well known to be one of the most promising anodes due to its ultrahigh capacity (3,860 mAh g−1) and the very low standard negative electrochemical potential (−3.040 V).
Among various metal oxides, ZnO has received a particular interest as one of the most promising anodes due to its several obvious advantages, such as its high theoretical capacities of 978 mAh g−1, low-cost, facile preparation, and high chemical stability [5].
Owing to its high theoretical capacity, Si based anode materials have been regarded as the most promising alternative anode materials for lithium-ion batteries.
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