Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires

Seyoung Moon, Soon Joon Yoon, Dong Jun Kim, Donghyun Kim, Hosub Lee, Kangtaek Lee

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Surface plasmon resonance (SPR) has provided sensitive and label-free solution to detecting molecular interactions. We investigated the sensitivity enhancement of SPR based on plasmonic coupling in metallic nanostructures and nano-particles to detect DNA hybridization.

Original languageEnglish
Title of host publicationOptical Fabrication and Testing, OFT 2008
PublisherOptical Society of America
ISBN (Print)9781557528612
Publication statusPublished - 2008 Jan 1
EventOptical Fabrication and Testing, OFT 2008 - Rochester, NY, United States
Duration: 2008 Oct 212008 Oct 24

Other

OtherOptical Fabrication and Testing, OFT 2008
CountryUnited States
CityRochester, NY
Period08/10/2108/10/24

Fingerprint

Surface plasmon resonance
surface plasmon resonance
Nanowires
DNA
nanowires
deoxyribonucleic acid
Molecular interactions
sensitivity
molecular interactions
Labels
Nanostructures
augmentation

All Science Journal Classification (ASJC) codes

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

Cite this

Moon, S., Yoon, S. J., Kim, D. J., Kim, D., Lee, H., & Lee, K. (2008). Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires. In Optical Fabrication and Testing, OFT 2008 Optical Society of America.
Moon, Seyoung ; Yoon, Soon Joon ; Kim, Dong Jun ; Kim, Donghyun ; Lee, Hosub ; Lee, Kangtaek. / Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires. Optical Fabrication and Testing, OFT 2008. Optical Society of America, 2008.
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abstract = "Surface plasmon resonance (SPR) has provided sensitive and label-free solution to detecting molecular interactions. We investigated the sensitivity enhancement of SPR based on plasmonic coupling in metallic nanostructures and nano-particles to detect DNA hybridization.",
author = "Seyoung Moon and Yoon, {Soon Joon} and Kim, {Dong Jun} and Donghyun Kim and Hosub Lee and Kangtaek Lee",
year = "2008",
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Moon, S, Yoon, SJ, Kim, DJ, Kim, D, Lee, H & Lee, K 2008, Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires. in Optical Fabrication and Testing, OFT 2008. Optical Society of America, Optical Fabrication and Testing, OFT 2008, Rochester, NY, United States, 08/10/21.

Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires. / Moon, Seyoung; Yoon, Soon Joon; Kim, Dong Jun; Kim, Donghyun; Lee, Hosub; Lee, Kangtaek.

Optical Fabrication and Testing, OFT 2008. Optical Society of America, 2008.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

TY - GEN

T1 - Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires

AU - Moon, Seyoung

AU - Yoon, Soon Joon

AU - Kim, Dong Jun

AU - Kim, Donghyun

AU - Lee, Hosub

AU - Lee, Kangtaek

PY - 2008/1/1

Y1 - 2008/1/1

N2 - Surface plasmon resonance (SPR) has provided sensitive and label-free solution to detecting molecular interactions. We investigated the sensitivity enhancement of SPR based on plasmonic coupling in metallic nanostructures and nano-particles to detect DNA hybridization.

AB - Surface plasmon resonance (SPR) has provided sensitive and label-free solution to detecting molecular interactions. We investigated the sensitivity enhancement of SPR based on plasmonic coupling in metallic nanostructures and nano-particles to detect DNA hybridization.

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M3 - Conference contribution

AN - SCOPUS:84898652832

SN - 9781557528612

BT - Optical Fabrication and Testing, OFT 2008

PB - Optical Society of America

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Moon S, Yoon SJ, Kim DJ, Kim D, Lee H, Lee K. Sensitivity-enhanced plasmonic detection of DNA hybridization using periodic nanowires. In Optical Fabrication and Testing, OFT 2008. Optical Society of America. 2008