Abstract
The optical properties of various nanostructures have been widely adopted for biological detection, from DNA sequencing to nano-scale single molecule biological function measurements. In particular, by employing localized surface plasmon resonance (LSPR), we can expect distinguished sensing performance with high sensitivity and resolution. This indicates that nano-scale detections can be realized by using the shift of resonance wavelength of LSPR in response to the refractive index change. In this paper, we overview various plasmonic nanostructures as potential sensing components. The qualitative descriptions of plasmonic nanostructures are supported by the physical phenomena such as plasmonic hybridization and Fano resonance. We present guidelines for designing specific nanostructures with regard to wavelength range and target sensing materials.
References
61
Referenced
288
10.1021/nn100943d
/ ACS Nano / Sensing of transcription factor through controlled-assembly of metal nanoparticles modified with segmented DNA elements by Tan (2010)10.1021/nl0701612
/ Nano Lett / Sensing characteristics of NIR localized surface plasmon resonances in gold nanorings for application as ultrasensitive biosensors by Larsson (2007)10.1021/nn101994t
/ ACS Nano / Probing the plasmonic near-field of gold nanocrescent antennas by Bukasov (2010)10.1021/nl900513k
/ Nano Lett / A nanocube plasmonic sensor for molecular binding on membrane surfaces by Galush (2009)10.1166/jnn.2011.3680
/ J. Nanosci. Nanotechnol / Label-free detection of leptin antibody-antigen interaction by using LSPR -based optical biosensor by Kim (2011)10.1021/cr068126n
/ Chem. Rev / Nanostructured plasmonic sensors by Stewart (2008)10.1016/j.yofte.2009.02.006
/ Opt. Fiber Technol / Current status of micro-and nano-structured optical fiber sensors by Lee (2009)10.1021/nl902721z
/ Nano Lett / Refractometric sensing using propagating versus localized surface plasmons by Svedendahl (2009)10.1038/nmat2162
/ Nat. Mater / Biosensing with plasmonic nanosensors by Anker (2008)10.1016/j.cplett.2010.01.062
/ Chem. Phys. Lett / Plasmonic coupling in noble metal nanostructures by Jain (2010)10.1002/smll.201001366
/ Small / Beyond the SERS: Raman enhancement of small molecules using nanofluidic channels with localized surface plasmon resonance by Oh (2011)10.1016/j.mee.2007.12.082
/ Microelectron. Eng / Attomole myoglobin Raman detection from plasmonic nanostructures by Das (2008)10.1007/5346_013
/ Surface Plasmon Resonance Based Sensors / Electromagnetic Theory of Surface Plasmons by Homola (2006)10.1016/0250-6874(83)85036-7
/ Sens. Actuat / Surface plasmon resonance for gas detection and biosensing by Liedberg (1983)10.1063/1.442690
/ J. Chem. Phys / Lightning rod effect in surface enhanced Raman scattering by Liao (1982)10.1140/epjb/e2011-10942-3
/ Eur. Phys. J. B / Effect of aspect ratio on the inter-surface plasmonic coupling of tubular gold nanoparticle by Zhu (2011)10.1021/nl8021835
/ Nano Lett / Noble metal nanoparticle pairs: Effect of medium for enhanced nanosensing by Jain (2008)10.1021/nl034372s
/ Nano Lett / Single silver nanoparicles as real-time optical sensors with zeptomole sensitivity by McFarland (2003)10.3390/s90402334
/ Sensors / Detection of biomolecular binding through enhancement of localized surface plasmon resonance (LSPR) by gold nanoparticles by Kim (2009)10.1021/nl070214f
/ Nano Lett / Synthesis and optical properties of silver nanobars and nanorice by Wiley (2007)10.1021/nn1002419
/ ACS Nano / Multipolar plasmon resonances in individual Ag Nanorice by Wei (2010)10.1021/jp027562k
/ J. Phys. Chem. B / Optical properties of short range ordered arrays of nanometer gold disks prepared by colloidal lithography by Hanarp (2003)10.1021/nl9001553
/ Nano Lett / Optical properties of the crescent-shaped nanohole antenna by Wu (2009)10.1126/science.1089171
/ Science / A hybridization model for the plasmon response of complex nanostructures by Prodan (2003)10.1021/nl080271o
/ Nano Lett / Close encounters between two nanoshells by Lassiter (2008)10.1088/0957-4484/21/30/305501
/ Nanotechnology / Dual wavelength sensing based on interacting gold nanodisk trimers by Tripathy (2010)10.1364/OE.18.022271
/ Opt. Express / Gold nanoring trimers: A versatile structure for infrared sensing by Lin (2010)10.1021/nn103172t
/ ACS Nano / Plasmonic oligomers: The role of individual particles in collective behavior by Hentsch (2011)10.1021/nn102041m
/ ACS Nano / Highly sensitive biosensing using arrays of plasmonic Au nanodisks realized by nanoimprint lithography by Lee (2011)10.1021/nl062969c
/ Nano Lett / Plasmon resonances of a gold nanostar by Hao (2007)10.1021/nl100787b
/ Nano Lett / Au double nanopillars with nanogap for plasmonic sensor by Kubo (2011)10.1021/nl103007m
/ Nano Lett / Selective excitation of individual plasmonic hotspots at the tips of single gold nanostars by Hrelescu (2011)10.1021/nl200135r
/ Nano Lett / Substrate-induced Fano resonances of a plasmonic nanocube: A route to increased-sensitivity localized surface plasmon resonance sensors revealed by Zhang (2011)10.1103/PhysRevB.81.075414
/ Phys. Rev. B / Symmetry effects on the optical coupling between plasmonic nanoparticles with applications to hierarchical structures by Gomez (2010)10.1021/nl902621d
/ Nano Lett / Planar metamaterial analogue of electromagnetically induced transparency for plasmonic sensing by Liu (2010)10.1021/nl103120s
/ Nano Lett / Plasmon hybridization in stacked double crescents arrays fabricated by colloidal lithography by Vogel (2011)10.1021/nn100760f
/ ACS Nano / Label-free biosensing based on single gold nanostars as plasmonic transducers by Dondapati (2010)10.1021/nl102991v
/ Nano Lett / Plasmon line shaping using nanocrosses for high sensitivity localized surface Plasmon resonance sensing by Verellen (2011)10.1063/1.3559620
/ Appl. Phys. Lett / Monopole antenna arrays for optical trapping, spectroscopy, and sensing by Cetin (2011)10.1021/nn9015828
/ ACS Nano / High-performance biosensing using arrays of plasmonic nanotubes by McPhillips (2010)10.1038/nmat2546
/ Nat. Mater / Plasmonic nanorod metamaterials for biosensing by Kabashin (2009)10.1126/science.1113355
/ Science / Nanoantennas for light emission by Greffet (2005)10.1080/00107510902745611
/ Contemp. Phys / Optical antennas and plasmonics by Park (2009)10.1021/nl900786u
/ Nano Lett / Unidirectional ultracompact optical nanoantennas by Pakizeh (2009)10.1364/OE.15.013272
/ Opt. Express / Bowtie plasmonic quantum cascade laser antenna by Yu (2007)10.1038/nphoton.2009.187
/ Nat. Photonics / Large single-molecule fluorescence enhancements produced by a bowtie nanoantenna by Kinkhabwala (2009)10.1021/nl103738d
/ Nano Lett / Bright unidirectional fluorescence emission of molecules in a nanoaperture with plasmonic corrugations by Aouani (2011)10.1038/nphoton.2010.34
/ Nat. Photonics / Directional control of light by a nano-optical Yagi-Uda antenna by Kosako (2010)10.1364/OE.16.010858
/ Opt. Express / Enhanced directional excitation and emission of single emitters by a nano-optical Yagi-Uda antenna by Taminiau (2008)10.1016/j.bios.2007.10.020
/ Biosens. Bioelectron / A label-free biosensor based on gold nanoshell monolayers for monitoring biomolecular interactions in diluted whole blood by Wang (2008)10.1021/ac0706527
/ Anal.Chem / Plasmonic detection of a model analyte in serum by a gold nanorod sensor by Marinakos (2007)10.1002/biot.200900195
/ Biotechnol. J / Surface plasmon resonance for high-throught ligand screening of membrane-bound proteins by Maynard (2009)10.3390/s110404030
/ Sensors / Surface plasmon resonance based biosensors for exploring the influence of alkaloids on aggregation of amyloid-β Peptide by Krazinski (2011)10.1021/nl034223+
/ Nano Lett / Biomolecular recognition based on single gold nanoparticle light scattering by Raschke (2003)10.1002/smll.201001673
/ Small / Tailoring plasmonic nanostructures for optimal SERS sensing of small molecules and large microorganisms by Xu (2011)10.1021/ac902008x
/ Anal. Chem / Interference localized surface plasmon resonance nanosensor tailored for the detection of specific biomolecular interactions by Hiep (2010)10.1038/nmat2596
/ Nat. Mater / Nanogap-engineerable Raman-active nanodumbbells for single-molecule detection by Lim (2010)10.1021/ja103240g
/ J. Am. Chem. Soc / Plasmonic nanoparitlce dimers for optical sensing of DNA in complex media by Chen (2010)10.1126/science.1145002
/ Science / Label-free, single molecule detection with optical microcavities by Armani (2007)10.1021/jp062536y
/ J. Phys. Chem. B / Gold and silver nanoparticles in sensing and imaging by Lee (2006)10.1021/ac0258352
/ Anal. Chem / Increased sensitivity of surface plasmon resonance of gold nanoshells compared to that of gold solid colloids in response to environmental changes by Sun (2002)
Dates
Type | When |
---|---|
Created | 13 years, 9 months ago (Nov. 21, 2011, 11:07 a.m.) |
Deposited | 1 year, 3 months ago (May 30, 2024, 5:17 p.m.) |
Indexed | 1 week, 3 days ago (Aug. 23, 2025, 9:31 p.m.) |
Issued | 13 years, 9 months ago (Nov. 21, 2011) |
Published | 13 years, 9 months ago (Nov. 21, 2011) |
Published Online | 13 years, 9 months ago (Nov. 21, 2011) |
@article{Chung_2011, title={Plasmonic Nanostructures for Nano-Scale Bio-Sensing}, volume={11}, ISSN={1424-8220}, url={http://dx.doi.org/10.3390/s111110907}, DOI={10.3390/s111110907}, number={11}, journal={Sensors}, publisher={MDPI AG}, author={Chung, Taerin and Lee, Seung-Yeol and Song, Eui Young and Chun, Honggu and Lee, Byoungho}, year={2011}, month=nov, pages={10907–10929} }