Literature DB >> 20030362

Versatile solution phase triangular silver nanoplates for highly sensitive plasmon resonance sensing.

Denise E Charles1, Damian Aherne, Matthew Gara, Deirdre M Ledwith, Yurii K Gun'ko, John M Kelly, Werner J Blau, Margaret E Brennan-Fournet.   

Abstract

Solution phase triangular silver nanoplates (TSNP) with versatile tunability throughout the visible-NIR wavelengths are presented as highly sensitive localized surface plasmon refractive index sensors. A range of 20 TSNP solutions with edge lengths ranging from 11 to 200 nm and aspect ratios from 2 to 13 have been studied comprehensively using AFM, TEM, and UV-vis-NIR spectroscopy. Studies of the localized surface plasmon resonance (LSPR) peak's sensitivity to refractive index changes are performed using a simple sucrose concentration method whereby the surrounding refractive index can solely be changed without variation in any other parameter. The dependence of the TSNP localized surface plasmon resonance (LSPR) peak wavelength lambda(max) and its bulk refractive index sensitivity on the nanoplate's structure is determined. LSPR sensitivities are observed to increase linearly with lambda(max) up to 800 nm, with the values lying within the upper limit theoretically predicted for optimal sensitivity, notwithstanding any diminution due to ensemble averaging. A nonlinear increase in sensitivity is apparent at wavelengths within the NIR region with values reaching 1096 nm.RIU(-1) at lambda(max) 1093 nm. Theoretical studies performed using a simple aspect ratio dependent approximation method and discrete dipole approximation methods confirm the dependence of the LSPR bulk refractive index sensitivity upon the TSNP aspect ratio measured experimentally. These studies highlight the importance of this key parameter in acquiring such high sensitivities and promote these TSNP sols for sensing applications at appropriate wavelengths for biological samples.

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Year:  2010        PMID: 20030362     DOI: 10.1021/nn9016235

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  10 in total

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Authors:  Aniruddha Ray; Ananya Mukundan; Zhixing Xie; Leshern Karamchand; Xueding Wang; Raoul Kopelman
Journal:  Nanotechnology       Date:  2014-10-17       Impact factor: 3.874

2.  Polarization invariant plasmonic nanostructures for sensing applications.

Authors:  Landobasa Y M Tobing; Geat-Yee Goh; Aaron D Mueller; Lin Ke; Yu Luo; Dao-Hua Zhang
Journal:  Sci Rep       Date:  2017-08-08       Impact factor: 4.379

Review 3.  Thin metal nanostructures: synthesis, properties and applications.

Authors:  Zhanxi Fan; Xiao Huang; Chaoliang Tan; Hua Zhang
Journal:  Chem Sci       Date:  2014-09-23       Impact factor: 9.825

4.  Highly sensitive detection of influenza virus with SERS aptasensor.

Authors:  Vladimir I Kukushkin; Nikita M Ivanov; Anastasia A Novoseltseva; Alexandra S Gambaryan; Igor V Yaminsky; Alexey M Kopylov; Elena G Zavyalova
Journal:  PLoS One       Date:  2019-04-25       Impact factor: 3.240

5.  Tunable LSPR of silver/gold bimetallic nanoframes and their SERS activity for methyl red detection.

Authors:  Xuan Hoa Vu; Nguyen Dac Dien; Thi Thu Ha Pham; Nguyen Van Truong; Nguyen Xuan Ca; Vu Van Thu
Journal:  RSC Adv       Date:  2021-04-20       Impact factor: 3.361

6.  Protection of silver and gold LSPR biosensors in corrosive NaCl environment by short alkanethiol molecules; characterized by extinction spectrum, helium ion microscopy and SERS.

Authors:  Hazuki Haraguchi; Natalie Frese; Armin Gölzhäuser; Hiroyuki Takei
Journal:  RSC Adv       Date:  2019-03-26       Impact factor: 4.036

7.  Double-exponential refractive index sensitivity of metal-semiconductor core-shell nanoparticles: the effects of dual-plasmon resonances and red-shift.

Authors:  Hailong Zhang; Pengfei Cao; Jie Dou; Lin Cheng; Tiaoming Niu; Guanmao Zhang
Journal:  RSC Adv       Date:  2018-01-05       Impact factor: 3.361

8.  Observation of Coalescence Process of Silver Nanospheres During Shape Transformation to Nanoprisms.

Authors:  Pyng Yu; Jane Huang; Jau Tang
Journal:  Nanoscale Res Lett       Date:  2010-09-28       Impact factor: 4.703

9.  Dispersion and shape engineered plasmonic nanosensors.

Authors:  Hyeon-Ho Jeong; Andrew G Mark; Mariana Alarcón-Correa; Insook Kim; Peter Oswald; Tung-Chun Lee; Peer Fischer
Journal:  Nat Commun       Date:  2016-04-19       Impact factor: 14.919

Review 10.  Surface Plasmon Resonance Sensors on Raman and Fluorescence Spectroscopy.

Authors:  Jiangcai Wang; Weihua Lin; En Cao; Xuefeng Xu; Wenjie Liang; Xiaofang Zhang
Journal:  Sensors (Basel)       Date:  2017-11-24       Impact factor: 3.576

  10 in total

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