Antimony (Sb)-Based Anodes for Lithium–Ion
Making composites with materials of high porosity to accommodate the stress and strain is also a routinely used method. This
Making composites with materials of high porosity to accommodate the stress and strain is also a routinely used method. This
systematically investigate the impact of oxide formation on changes in the electrochemical performance of antimony nanocrystal-based Na-ion battery negative electrodes, providing insight
The graphite contained in the antimony-containing negative-electrode active material can be used as a load for the antimony-carbon composite material, thereby further improving the...
In this work, a metalloid dual-active Sb–Te alloy is designed as a positive electrode to improve the energy density of LMBs. Moreover, the multistep lithiation mechanisms of
Antimony is a chemical element that could find new life in the cathode of a liquid-metal battery design. Cost is a crucial variable for any
Making composites with materials of high porosity to accommodate the stress and strain is also a routinely used method. This review focuses on antimony and antimony-based
The batteries are based on calcium and antimony metal, along with a calcium-chloride based salt, and operate at high temperatures which provides for facile kinetics and
The quest for sustainable and high-performing energy storage systems has led to a burgeoning interest in advanced electrode materials for rechargeable batteries.
a three-electrode electrochemical cell assembled in an inert ar-gon atmosphere glove box. Electrical contact with the electrodes was established with tungsten wires (99.95%, Alfa Aesar,
The objective of our study is to replace graphite with electrodeposited antimony on Cu and antimony powder on Al current collector to develop high-capacity negative electrode.
Antimony is a chemical element that could find new life in the cathode of a liquid-metal battery design. Cost is a crucial variable for any battery that could serve as a viable
Liquid metal batteries utilizing magnesium as the negative electrode and antimony as the positive electrode offer high energy density and efficiency. This electrode combination
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