Journal
ADVANCED MATERIALS
Volume 21, Issue 27, Pages 2771-+Publisher
WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.200803786
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Funding
- National Institutes of Health [PN2 EY 018230, R21 EB007472]
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Highly sensitive, mechanically robust Al2O3 nanopores are fabricated and characterized. These sensors allow for size control with sub-nanometer precision, chemical modification, and exhibit superior noise performance and increased lifetime over their solid-state counterparts. This new class of nanopore sensor is used in dsDNA studies and finds broad application in bio-nanotechnology.
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