Skip to main content
Top
Published in: Optical and Quantum Electronics 6/2019

01-06-2019

Improvement of the performance parameters of the surface plasmon resonance biosensor using Al2O3 and WS2

Authors: Jannati Nabiha Nur, Mohammad Hasibul Hasan Hasib, Fairuj Asrafy, Kamrun Nahar Shushama, Reefat Inum, Md. Masud Rana

Published in: Optical and Quantum Electronics | Issue 6/2019

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Here, proposed Kretschmann configuration based surface plasmon resonance biosensor shows immense improvement in its performance parameters. This highly sensitive biosensor provides a higher value of quality factor and detection accuracy. We presented a five-layer model of a biosensor with two dimensional transition metal di-chalcogenides Tungsten disulfide (WS2) in addition with Al2O3 layer. By using one layer of WS2 with six layers of Al2O3, the highest sensitivity (227.5 °/RIU), detection accuracy (1.1123), and quality factor (28.26 RIU−1) can be achieved. CaF2 as coupling prism has also played a remarkable role in enhancing the performance parameters for its low refractive index.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
go back to reference Albers, W.M., Vikholm-Lundin, I.: Surface plasmon resonance on nanoscale organic films. In: Carrara, S. (eds.) Nano-Bio-Sensing, pp. 83–125. Springer, New York (2011)CrossRef Albers, W.M., Vikholm-Lundin, I.: Surface plasmon resonance on nanoscale organic films. In: Carrara, S. (eds.) Nano-Bio-Sensing, pp. 83–125. Springer, New York (2011)CrossRef
go back to reference Boisdé, G., Alan, H.: Chemical and Biochemical Sensing with Optical Fibers and Waveguides. Artech House Publishers, London (1996) Boisdé, G., Alan, H.: Chemical and Biochemical Sensing with Optical Fibers and Waveguides. Artech House Publishers, London (1996)
go back to reference Heideman, R.G., Kooyman, R.P.H., Jan, G.: Performance of a highly sensitive optical waveguide Mach–Zehnder interferometer immunosensor. Sens. Actuators B Chem 10(3), 209–217 (1993)CrossRef Heideman, R.G., Kooyman, R.P.H., Jan, G.: Performance of a highly sensitive optical waveguide Mach–Zehnder interferometer immunosensor. Sens. Actuators B Chem 10(3), 209–217 (1993)CrossRef
go back to reference Homola, J.: Present and future of surface plasmon resonance biosensors. Anal. Bioanal. Chem. 377(3), 528–539 (2003)CrossRef Homola, J.: Present and future of surface plasmon resonance biosensors. Anal. Bioanal. Chem. 377(3), 528–539 (2003)CrossRef
go back to reference Homola, J., Marek, P.: Surface plasmon resonance (SPR) sensors. In Homola, J. (ed.) Surface Plasmon Resonance Based Sensors. Springer Series Chemical Sensors and Biosensors, vol. 4, pp. 45–67. Springer, Berlin (2006)CrossRef Homola, J., Marek, P.: Surface plasmon resonance (SPR) sensors. In Homola, J. (ed.) Surface Plasmon Resonance Based Sensors. Springer Series Chemical Sensors and Biosensors, vol. 4, pp. 45–67. Springer, Berlin (2006)CrossRef
go back to reference Kretschmann, E., Raether, H.: Radiative decay of non radiative surface plasmons excited by light. Z. für Naturforschung A 23(12), 2135–2136 (1968)ADSCrossRef Kretschmann, E., Raether, H.: Radiative decay of non radiative surface plasmons excited by light. Z. für Naturforschung A 23(12), 2135–2136 (1968)ADSCrossRef
go back to reference Lin, Z., Jiang, L., Leiming, W., Guo, J., Dai, X., Xiang, Y., Fan, D.: Tuning and sensitivity enhancement of surface plasmon resonance biosensor with graphene covered Au–MoS2–Au Films. IEEE Photonics J. 8(6), 1–8 (2016)CrossRef Lin, Z., Jiang, L., Leiming, W., Guo, J., Dai, X., Xiang, Y., Fan, D.: Tuning and sensitivity enhancement of surface plasmon resonance biosensor with graphene covered Au–MoS2–Au Films. IEEE Photonics J. 8(6), 1–8 (2016)CrossRef
go back to reference Matsubara, K., Kawata, S., Minami, S.: A compact surface plasmon resonance sensor for measurement of water in process. Appl. Spectrosc. 42(8), 1375–1379 (1988)ADSCrossRef Matsubara, K., Kawata, S., Minami, S.: A compact surface plasmon resonance sensor for measurement of water in process. Appl. Spectrosc. 42(8), 1375–1379 (1988)ADSCrossRef
go back to reference Mishra, A.K., Mishra, S.K., Verma, R.K.: An SPR-based sensor with an extremely large dynamic range of refractive index measurements in the visible region. J. Phys. D Appl. Phys. 48(43), 435502 (2015)ADSCrossRef Mishra, A.K., Mishra, S.K., Verma, R.K.: An SPR-based sensor with an extremely large dynamic range of refractive index measurements in the visible region. J. Phys. D Appl. Phys. 48(43), 435502 (2015)ADSCrossRef
go back to reference Otto, A.: Excitation of nonradiative surface plasma waves in silver by the method of frustrated total reflection. Z. für Phys. A Hadrons Nucl. 216(4), 398–410 (1968)CrossRef Otto, A.: Excitation of nonradiative surface plasma waves in silver by the method of frustrated total reflection. Z. für Phys. A Hadrons Nucl. 216(4), 398–410 (1968)CrossRef
go back to reference Ouyang, Q., Zeng, S., Jiang, L., Hong, L., Xu, G., Dinh, X.Q., Qian, J., et al.: Sensitivity enhancement of transition metal dichalcogenides/silicon nanostructure-based surface plasmon resonance biosensor. Sci. Rep. 6, 28190 (2016)ADSCrossRef Ouyang, Q., Zeng, S., Jiang, L., Hong, L., Xu, G., Dinh, X.Q., Qian, J., et al.: Sensitivity enhancement of transition metal dichalcogenides/silicon nanostructure-based surface plasmon resonance biosensor. Sci. Rep. 6, 28190 (2016)ADSCrossRef
go back to reference Ouyang, Q., Zeng, S., Jiang, L., Junle, Q., Dinh, X.-Q., Qian, J., He, S., Coquet, P., Yong, K.-T.: Two-dimensional transition metal dichalcogenide enhanced phase-sensitive plasmonic biosensors: theoretical insight. J. Phys. Chem. C 121(11), 6282–6289 (2017)CrossRef Ouyang, Q., Zeng, S., Jiang, L., Junle, Q., Dinh, X.-Q., Qian, J., He, S., Coquet, P., Yong, K.-T.: Two-dimensional transition metal dichalcogenide enhanced phase-sensitive plasmonic biosensors: theoretical insight. J. Phys. Chem. C 121(11), 6282–6289 (2017)CrossRef
go back to reference Pal, S., Verma, A., Prajapati, Y.K., Saini, J.P.: Influence of black phosphorous on performance of surface plasmon resonance biosensor. Opt. Quant. Electron. 49(12), 403 (2017)CrossRef Pal, S., Verma, A., Prajapati, Y.K., Saini, J.P.: Influence of black phosphorous on performance of surface plasmon resonance biosensor. Opt. Quant. Electron. 49(12), 403 (2017)CrossRef
go back to reference Pei, R., Cui, X., Yang, X., Wang, E.: Real-time immunoassay of antibody activity in serum by surface plasmon resonance biosensor. Talanta 53(3), 481–488 (2000)CrossRef Pei, R., Cui, X., Yang, X., Wang, E.: Real-time immunoassay of antibody activity in serum by surface plasmon resonance biosensor. Talanta 53(3), 481–488 (2000)CrossRef
go back to reference Pumera, M.: Graphene in biosensing. Mater. Today 14(7–8), 308–315 (2011)CrossRef Pumera, M.: Graphene in biosensing. Mater. Today 14(7–8), 308–315 (2011)CrossRef
go back to reference Rahman, M.S., Hasan, M.R., Rikta, K.A., Anower, M.S.: A novel graphene coated surface plasmon resonance biosensor with tungsten disulfide (WS 2) for sensing DNA hybridization. Opt. Mater. 75, 567–573 (2018)ADSCrossRef Rahman, M.S., Hasan, M.R., Rikta, K.A., Anower, M.S.: A novel graphene coated surface plasmon resonance biosensor with tungsten disulfide (WS 2) for sensing DNA hybridization. Opt. Mater. 75, 567–573 (2018)ADSCrossRef
go back to reference Rowe-Taitt, C.A., Hazzard, J.W., Hoffman, K.E., Cras, J.J., Golden, J.P., Ligler, F.S.: Simultaneous detection of six biohazardous agents using a planar waveguide array biosensor. Biosens. Bioelectron. 15(11–12), 579–589 (2000)CrossRef Rowe-Taitt, C.A., Hazzard, J.W., Hoffman, K.E., Cras, J.J., Golden, J.P., Ligler, F.S.: Simultaneous detection of six biohazardous agents using a planar waveguide array biosensor. Biosens. Bioelectron. 15(11–12), 579–589 (2000)CrossRef
go back to reference Sharma, N.K.: Performances of different metals in optical fibre-based surface plasmon resonance sensor. Pramana 78(3), 417–427 (2012)ADSCrossRef Sharma, N.K.: Performances of different metals in optical fibre-based surface plasmon resonance sensor. Pramana 78(3), 417–427 (2012)ADSCrossRef
go back to reference Shushama, K.N., Rana, M.M., Inum, R., Hossain, M.B.: Graphene coated fiber optic surface plasmon resonance biosensor for the DNA hybridization detection: simulation analysis. Opt. Commun. 383, 186–190 (2017a)ADSCrossRef Shushama, K.N., Rana, M.M., Inum, R., Hossain, M.B.: Graphene coated fiber optic surface plasmon resonance biosensor for the DNA hybridization detection: simulation analysis. Opt. Commun. 383, 186–190 (2017a)ADSCrossRef
go back to reference Shushama, K.N., Rana, M.M., Inum, R., Hossain, M.B.: Sensitivity enhancement of graphene coated surface plasmon resonance biosensor. Opt. Quant. Electron. 11, 381 (2017b)CrossRef Shushama, K.N., Rana, M.M., Inum, R., Hossain, M.B.: Sensitivity enhancement of graphene coated surface plasmon resonance biosensor. Opt. Quant. Electron. 11, 381 (2017b)CrossRef
go back to reference Stewart, M.E., Anderton, C.R., Thompson, L.B., Maria, J., Gray, S.K., Rogers, J.A., Nuzzo, R.G.: Nanostructured plasmonic sensors. Chem. Rev. 108(2), 494–521 (2008)CrossRef Stewart, M.E., Anderton, C.R., Thompson, L.B., Maria, J., Gray, S.K., Rogers, J.A., Nuzzo, R.G.: Nanostructured plasmonic sensors. Chem. Rev. 108(2), 494–521 (2008)CrossRef
go back to reference Tumolo, T., Angnes, L., Baptista, M.S.: Determination of the refractive index increment (dn/dc) of molecule and macromolecule solutions by surface plasmon resonance. Anal. Biochem. 333(2), 273–279 (2004)CrossRef Tumolo, T., Angnes, L., Baptista, M.S.: Determination of the refractive index increment (dn/dc) of molecule and macromolecule solutions by surface plasmon resonance. Anal. Biochem. 333(2), 273–279 (2004)CrossRef
go back to reference Verma, A., Prakash, A., Tripathi, R.: Sensitivity enhancement of surface plasmon resonance biosensor using graphene and air gap. Optics Communications 357, 106–112 (2015)ADSCrossRef Verma, A., Prakash, A., Tripathi, R.: Sensitivity enhancement of surface plasmon resonance biosensor using graphene and air gap. Optics Communications 357, 106–112 (2015)ADSCrossRef
go back to reference Wang, G., Arwin, H., Jansson, R.: An optical gas sensor based on ellipsometric readout. IEEE Sens. J. 3(6), 739–743 (2003)ADSCrossRef Wang, G., Arwin, H., Jansson, R.: An optical gas sensor based on ellipsometric readout. IEEE Sens. J. 3(6), 739–743 (2003)ADSCrossRef
go back to reference Wolfbeis, O.S.: Fiber Optic Chemical Sensors and Biosensors, vol. 1. CRC, Boca Raton (1991) Wolfbeis, O.S.: Fiber Optic Chemical Sensors and Biosensors, vol. 1. CRC, Boca Raton (1991)
go back to reference Wu, L., Chu, H.S., Koh, W.S., Li, E.P.: Highly sensitive graphene biosensors based on surface plasmon resonance. Opt. Express 18(14), 14395–14400 (2010)ADSCrossRef Wu, L., Chu, H.S., Koh, W.S., Li, E.P.: Highly sensitive graphene biosensors based on surface plasmon resonance. Opt. Express 18(14), 14395–14400 (2010)ADSCrossRef
go back to reference Zeng, S., Siyi, H., Xia, J., Anderson, T., Dinh, X.-Q., Meng, X.-M., Coquet, P., Yong, K.-T.: Graphene–MoS2 hybrid nanostructures enhanced surface plasmon resonance biosensors. Sens. Actuators B: Chem. 207, 801–810 (2015)CrossRef Zeng, S., Siyi, H., Xia, J., Anderson, T., Dinh, X.-Q., Meng, X.-M., Coquet, P., Yong, K.-T.: Graphene–MoS2 hybrid nanostructures enhanced surface plasmon resonance biosensors. Sens. Actuators B: Chem. 207, 801–810 (2015)CrossRef
go back to reference Zhao, J., Xiaoyu, Z., Chanda, R. Y., Amanda, J. H., Van Duyne, R. P. (eds.) Localized surface plasmon resonance biosensors, pp. 219–228 (2006) Zhao, J., Xiaoyu, Z., Chanda, R. Y., Amanda, J. H., Van Duyne, R. P. (eds.) Localized surface plasmon resonance biosensors, pp. 219–228 (2006)
Metadata
Title
Improvement of the performance parameters of the surface plasmon resonance biosensor using Al2O3 and WS2
Authors
Jannati Nabiha Nur
Mohammad Hasibul Hasan Hasib
Fairuj Asrafy
Kamrun Nahar Shushama
Reefat Inum
Md. Masud Rana
Publication date
01-06-2019
Publisher
Springer US
Published in
Optical and Quantum Electronics / Issue 6/2019
Print ISSN: 0306-8919
Electronic ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-019-1886-9

Other articles of this Issue 6/2019

Optical and Quantum Electronics 6/2019 Go to the issue