Title : Ultra-sensitive graphene-plasmonic hybrid platform for label-free detection.

Pub. Date : 2013 Sep 20

PMID : 23922275






4 Functional Relationships(s)
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1 The bio-compatible graphene-based SERS platform boosts a high density of hot spots with local SERS enhancement factor over 10(10) . Graphite seryl-tRNA synthetase 2, mitochondrial Homo sapiens
2 The bio-compatible graphene-based SERS platform boosts a high density of hot spots with local SERS enhancement factor over 10(10) . Graphite seryl-tRNA synthetase 2, mitochondrial Homo sapiens
3 We demonstrate that graphene can play a key role in quantitative study of SERS mechanisms, and can also serve as a promising building block in SERS active structures especially for biosensor applications. Graphite seryl-tRNA synthetase 2, mitochondrial Homo sapiens
4 We demonstrate that graphene can play a key role in quantitative study of SERS mechanisms, and can also serve as a promising building block in SERS active structures especially for biosensor applications. Graphite seryl-tRNA synthetase 2, mitochondrial Homo sapiens