Holt, V. Z. Barsukov and J. E. Doninger 2006. Composite anode materials for high energy density lithium-ion batteries. New Carbon Based Materials for Electrochemical Energy Storage Systems: Batteries, Supercapacitors and Fuel Cells 229: 317-331. doi: 10.1007/1-4020-4812-2_25...
Although lithium-ion batteries are widely used in many different applications, their performance needs to be improved to meet changing demands. This is because silicon oxide (SiO), which is a promising anode material due to its low cost and high capacity, has several drawbacks....
High Energy Density for All-Solid Lithium-Ion Batteries News Feb 28, 2017 by Jeff Shepard FDK Corporation and Fujitsu Laboratories Ltd. today announced that they have jointly developed lithium cobalt pyrophosphate (Li2CoP2O7), which has high energy density, for the cathode material of all-so...
Energy density is the main property of rechargeable batteries that has driven the entire technology forward in past decades. Lithium-ion batteries (LIBs) now surpass other, previously competitive battery types (for example, lead-acid and nickel metal hydride) but still require extensive further ...
Lithium ion batteries (LIBs) represent one of the most promising solutions for environmentally friendly transportation such as electric vehicles. The demand for high energy density, low cost and environmentally friendly batteries makes high-capacity cathode materials very attractive for future LIBs. Layered...
A research group has produced fresh insights about the release of oxygen in lithium-ion batteries, paving the way for more robust and safer high-energy-density batteries. Next-generation batteries that store more energy are critical if society is to achieve the UN’s Sustainable Development Goa...
lithium‐ion batteriesSi anodesIn article number 1802645, Zhan Lin, Jun Lu and co‐workers propose a universal strategy for interweaving hard and soft polymers to construct 3D network binders to enable high areal capacities with excellent cyclability in lithium‐ion batteries. Elastic modules ...
Li–O2 batteries have received considerable attention owing to their high theoretical gravimetric energy densities. However, the sluggish kinetic barrier between gaseous O2 and solid products leads to severe polarized overpotenial. Besides, the gas-open
A joint research team, affiliated with UNIST has unveiled a novel electrolyte additive that could enable a long lifespan and fast chargeability of high-energy-density lithium-ion batteries (LIBs).
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