Journal
MATERIALS HORIZONS
Volume 1, Issue 1, Pages 121-124Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c3mh00084b
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Funding
- National Science Foundation [DMR-0304508, DMR-0969301]
- U.S. Department of Energy's National Energy Technology Laboratory [DE-FE0004000]
- CRP Consortium at Carnegie Mellon University
- Astrid and Bruce McWilliams Fellowship
- Direct For Mathematical & Physical Scien
- Division Of Materials Research [969301] Funding Source: National Science Foundation
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Porous nanocarbons with tunable morphology and pore size were prepared via the carbonization of polyacrylonitrile containing block copolymers. Retention of the nanostructure of the precursor upon pyrolysis was studied for both thin-film and bulk materials. Morphology-dependent preservation of the resulting nanostructure was observed in the latter case.
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