Phosphorus boasts extremely high gravimetric and volumetric capacities but suffers from poor electrochemical stability with significant capacity loss immediately after the first cycle. We propose to circumvent this issue by mixing amorphous red phosphorus with single-walled carbon nanotubes. Employing a non-destructive sublimation-deposition method, we have synthesized composites where the synergetic effect between red phosphorus and single-walled carbon nanotubes allows for a considerable improvement in the electrochemical stability of battery anodes. In contrast to the average 40% loss of capacity after 50 cycles for other phosphorus-carbon composites in the literature, our material shows losses of just 22% under analogous cycling conditions.
Departments of Chemistry and Mechanical Engineering and Materials Science, Smalley Institute for Nanoscale Science and Technology, Rice University, 6100 Main Street, Houston, TX 77005
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Departments of Chemistry and Mechanical Engineering and Materials Science, Smalley Institute for Nanoscale Science and Technology, Rice University, 6100 Main Street, Houston, TX 77005
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Natl Ctr Nano Struct Mat, Council Sci & Ind Res, ZA-0001 Pretoria, South AfricaNatl Ctr Nano Struct Mat, Council Sci & Ind Res, ZA-0001 Pretoria, South Africa
Pillai, Sreejarani K.
Ray, Suprakas Sinha
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Natl Ctr Nano Struct Mat, Council Sci & Ind Res, ZA-0001 Pretoria, South AfricaNatl Ctr Nano Struct Mat, Council Sci & Ind Res, ZA-0001 Pretoria, South Africa
Ray, Suprakas Sinha
Moodley, Mathew
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Natl Ctr Nano Struct Mat, Council Sci & Ind Res, ZA-0001 Pretoria, South AfricaNatl Ctr Nano Struct Mat, Council Sci & Ind Res, ZA-0001 Pretoria, South Africa
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Univ Western Ontario, Fac Engn, Dept Mech & Mat Engn, London, ON N6A 5B9, CanadaUniv Western Ontario, Fac Engn, Dept Mech & Mat Engn, London, ON N6A 5B9, Canada
Arghavan, S.
Singh, A. V.
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Univ Western Ontario, Fac Engn, Dept Mech & Mat Engn, London, ON N6A 5B9, CanadaUniv Western Ontario, Fac Engn, Dept Mech & Mat Engn, London, ON N6A 5B9, Canada