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International team improves efficiency of liquid metal batteries

Climate protection means increasingly turning to renewable energies. But in order to store the energy produced by solar, wind and other regenerative processes, sophisticated systems are required. .

Boston
Massachusetts
United-states
Massachusetts-institute-of-technology
Donald-sadoway
Norbert-weber
Institute-of-fluid-dynamics
Journal-of-energy-chemistry
Fluid-dynamics
Massachusetts-institute
Energy-chemistry
போஸ்டன்

In-situ structural evolution of Zr-doped Na sub 3 /sub V sub 2 /sub (PO sub 4 /sub ) sub 2 /sub F sub 3 /sub coated by N-doped carbon for SIB

In-situ structural evolution of Zr-doped Na sub 3 /sub V sub 2 /sub (PO sub 4 /sub ) sub 2 /sub F sub 3 /sub coated by N-doped carbon for SIB
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China
Yong-wang
Jiangsu
Shanghai
Shuangqiang-chen
Shanghai-municipal-education-commission-innovation-program
Innovative-research-team-of-local-universities
National-natural-science-foundation-of-china
Shanghai-university
Research-center
Shanghai-key-laboratory-of-materials-protection
Journal-of-energy-chemistry

Dead lithium: The culprit of low Coulombic efficiency with LIBs

Loading video. VIDEO: During the subsequent 1st stripping process (Movie S1), the whole outline of Li deposition is almost constant with the morphology after 1st plating. view more  Credit: Journal of Energy Chemistry The target of carbon-neutral and net-zero emissions is the development and utilization of renewable energy. High-energy-density energy storage systems are critical technologies for the integration of renewable energy. Li metal is highly recognized as a promising alternative anode for next-generation rechargeable batteries due to its high theoretical capacity of 3860 mAh g- 1 and ultralow electrode potential of -3.04 V compared to the standard hydrogen electrode. However, Li metal batteries (LMBs) main issue is their low Coulombic efficiency (CE), which limits batteries cycle life. The low CE in LMBs occurs because active Li turns into inactive Li, comprising Li components in the solid-electrolyte interphase (SEI) and SEI-wrapped metallic Li (dead Li

China
Beijing
Qiang-zhang
National-natural-science-foundation-of-china
Municipal-natural-science-foundation
Journal-of-energy-chemistry
Tsinghua-university-initiative-scientific-research-program
National-key-research
Development-program
Tsinghua-university
Elsevier
Beijing-municipal-natural-science-foundation

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