Abstract:An ion/electron-conductive nanoshield based on a SWCNT-embedded, dual-doped mesoporous carbon shell (that was derived from the molecularly designed PVIm[DS]) was presented as an exceptional interfacial control strategy for lithium-ion battery cathode materials.
A facile and versatile surface engineering method based on metallic single-walled carbon nanotube (mSWCNT)-enriched, ivy-like conductive nanonets (mSC nanonets) for electrode materials was presented.
A facile and versatile surface engineering method based on metallic single-walled carbon nanotube (mSWCNT)-enriched, ivy-like conductive nanonets (mSC nanonets) for electrode materials was presented.
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