Detection of Human Immunoglobulin G by Transmission Surface Plasmon Resonance Using the In Situ Gold Nanoparticle Growth Method
Author:
Affiliation:
1. Graduate School of Science and Technology, Niigata University
2. Materials Science and Engineering Program, Faculty of Science, Mahidol University
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
https://www.jstage.jst.go.jp/article/transele/E102.C/2/E102.C_2018OMP0004/_pdf
Reference33 articles.
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2. [2] J. Homola, I. Koudela, and S.S. Yee, “Surface plasmon resonance sensors based on diffraction gratings and prism couplers: sensitivity comparison,” Sens. Actuators B, vol.54, no.1-2, pp.16-24, 1999. 10.1016/s0925-4005(98)00322-0
3. [3] J. Homola, S.S. Yee, and G. Gauglitz, “Surface Plasmon Resonance Sensors: Review,” Sens. Actuators B, vol.54, no.1-2, pp.3-15, 1999. 10.1016/s0925-4005(98)00321-9
4. [4] G. Jiang, A. Baba, H. Ikarashi, R. Xu, J. Locklin, K.R. Kashif, K. Shinbo, K. Kato, F. Kaneko, and R.C. Advincula, “Signal Enhancement and Tuning of Surface Plasmon Resonance: ATR Spectroscopy and Imaging of Hybrid Gold Nanoparticles/Polyelectrolytes Ultrathin Films,” J. Phys. Chem. C, vol.111, pp.18687-18694, 2007.
5. [5] S. Sriwichai, A. Baba, S. Deng, C. Huang, S. Phanichphant, and R.C. Advincula, “Nanostructured Ultrathin Films of Alternating Sexithiophenes and Electropolymerizable Polycarbazole Precursor Layers Investigated by Electrochemical-Surface Plasmon Resonance (EC-SPR) Spectroscopy,” Langmuir, vol.24, no.16, pp.9017-9023, 2008. 10.1021/la800307u
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