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Aprotic Li-CO2 batteries, what’s next?
Aprotic Li-CO2 batteries have attracted significant research interest over the past decade, notable for their energy storage capability and CO2 recyclability.
Zhiwei Zhao, Zhangquan Peng
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Density function theory calculations were carried out to clarify storage states of Lithium (Li) ions in graphene clusters. The adsorption energy, spin polarization, charge distribution, electronic gap, surface curvature, and dipole momentum were calculated for each cluster.
Kheirabadi, Narjes +1 more
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Oxygen electrochemistry in Li‐O2 batteries probed by in situ surface‐enhanced Raman spectroscopy
Surface‐enhanced Raman spectroscopy (SERS), as a nondestructive and ultra‐sensitive single molecular level characterization technique, is a powerful tool to deeply understand the interfacial electrochemistry reaction mechanism involved in energy ...
Jiawei Wang +5 more
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Recent advances in lithium-based batteries using metal organic frameworks as electrode materials
Metal organic frameworks (MOFs) show excellent electrochemical performances due to their ultrahigh porosity, large specific surface area, and easy functionalization.
Yongchao Jiang +11 more
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Intermetallic interphases in lithium metal and lithium ion batteries
A robust electrode–electrolyte interface is the cornerstone for every battery system, as demonstrated in the meandering history of the development of Li‐ion batteries (LIBs).
Ke Sun, Zhangquan Peng
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Lithium-ion batteries are now a widespread technology in automotive applications. Together with the life of the batteries and their performance, safety plays a fundamental role in ensuring the spread of electromobility in our society.
Carla Menale +4 more
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Power Li-ion batteries are one of the core ''three powers'' systems of new energy vehicles, and its accurate batteries modeling and state prediction have become the core technology of the scientific and technological progress in the industry.
Yanxin Xie +5 more
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Uniform migration of lithium (Li) ions between the separator and the lithium anode is critical for achieving good quality Li deposition, which is of much significance for lithium metal battery operation, especially for Li–sulfur (Li–S) batteries ...
Mao Yang +3 more
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Thermal safety and thermal management of batteries
Electrochemical energy storage is one of the critical technologies for energy storage, which is important for high‐efficiency utilization of renewable energy and reducing carbon emissions.
Zhonghao Rao +5 more
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Negative electrodes for Li-ion batteries [PDF]
Graphitized carbons have played a key role in the successful commercialization of Li-ion batteries. The physicochemical properties of carbon cover a wide range; therefore identifying the optimum active electrode material can be time consuming. The significant physical properties of negative electrodes for Li-ion batteries are summarized, and the ...
Kinoshita, Kim, Zaghib, Karim
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