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Scientists suggest new solution for flexible self-healing zinc-ion batteries

Scientists suggest new solution for flexible self-healing zinc-ion batteries
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Scientists suggest new solution for flexible self-healing zinc-ion batteries

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A New Method to Directly Convert Lignin into Carbon Foams

Researchers Discover Unusual Behavior in Carbon Foam

This study presented a fresh analysis of an atypical carbon phase nucleated on the exterior of iron-loaded graphitic foam after annealing for 15 hours at a temperature of 990 ºC.

Recent progress on three-dimensional nanoarchitecture anode materials by Zhijia Zhang, Yuefang Chen et al

High-performance batteries with high density and low cost are needed for the development of large-scale energy storage fields such as electric vehicles and renewable energy systems. The anode with three-dimensional (3D) nanoarchitecture is one of the most attractive candidates for high-performance lithium-ion batteries (LIBs) and sodium-ion batteries (SIBs) due to its efficient electron/ion transport and high active material mass loading. Although some important breakthroughs have been made in 3D nanoarchitecture anode materials, more improvements are still needed for high cycling stability and high energy density. Herein, the latest research progress of 3D nanoarchitecture anode materials for LIBs and SIBs is reviewed, including nanoporous metal, nanoporous graphene, and their derived foams. Specifically, the storage properties of Li/Na ions, the kinetics of ion/electron transport, and specific chemical interactions are discussed based on the structure design. In addition, the researc

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