Ultrasensitive biosensors based on waveguide-coupled long-range surface plasmon resonance (WC-LRSPR) for enhanced fluorescence spectroscopy.

Journal: RSC advances
Published Date:

Abstract

We investigated the coupling phenomenon between plasmonic resonance and waveguide modes through theoretical and experimental parametric analyses on the bimetallic waveguide-coupled long-range surface plasmon resonance (Bi-WCLRSPR) structure. The calculation results indicated that the multi-plasmonic coupling gives rise to the enhanced depth-to-width ratio of the reflection dip compared to that of LRSPR excited using a single set of Ag and Teflon. The optimized thickness of Ag(40 nm)/Teflon(700 nm)/Ag(5 nm)/Au(5 nm) was obtained and generated the highest plasmon intensity enhancement, which was 2.38 folds in comparison to the conventional bimetallic surface plasmon resonance (SPR) configuration (Ag/Au). 17β-Estradiol was used in the fluorescence enhancement experiment by the reflection geometry-based system, wherein the excitation light source was on the side of a WC-LRSPR chip opposite to that of the light detection unit. The phenomenon of surface plasmon-couple emission (SPCE) depends on the number of 17β-estradiol molecule promoters from female sex steroid hormones, which demonstrated a limit of detection (LOD) of 2 pg mL and 1.47-fold fluorescence improvement as compared to the non-coated material on the surface of pristine glass. This enhanced WC-LRSPR can readily find application in fluorescence escalation needed in cases where a weak fluorescence signal is predicted, such as the small volume of liquid containing fluorescent dyes in biological diagnosis.

Authors

  • Nhu Hoa Thi Tran
    Faculty of Materials Science, University of Science HoChiMinh City Vietnam ttnhoa@hcmus.edu.vn.
  • Viet-Duc Phung
    Future Materials and Devices Laboratory, Duy Tan University Ho Chi Minh City 700000 Vietnam.
  • Hanh Kieu Thi Ta
    Faculty of Materials Science, University of Science HoChiMinh City Vietnam ttnhoa@hcmus.edu.vn.
  • Vu Dinh Lam
    Graduate University of Science and Technology, Vietnam Academy of Science and Technology Hanoi Vietnam.
  • Do Hung Manh
    Institute of Materials Science, Vietnam Academy of Science and Technology Hanoi Vietnam.
  • Ngoc Kim Pham
    Faculty of Materials Science, University of Science HoChiMinh City Vietnam ttnhoa@hcmus.edu.vn.
  • Jae Young Kim
    Department of Life Science, Gachon University Seongnam-si Gyeonggi-do 13120 Republic of Korea.
  • Nae Yoon Lee
    Department of BioNano Technology, Gachon University Seongnam-si Gyeonggi-do 13120 Republic of Korea.
  • Bach Thang Phan
    Vietnam National University HoChiMinh City Vietnam.

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