| Literature DB >> 29734729 |
Daniil N Bratashov1, Natalia A Burmistrova2, Sergey D Bondarenko3, Boris N Khlebtsov4,5, Vsevolod S Atkin6, Andrey A Shuvalov7,8, Anastasiya A Zanishevskaya9,10, Yulia S Skibina11, Irina Y Goryacheva12.
Abstract
A sensor based on microstructured waveguides (MWGs) with a hollow core inner surface covered with polyelectrolyte-layer-stabilized gold nanostars was developed for the SERS sensing of dissolved analytes. A polyelectrolyte-layer coating over the inner surface of glass cladding served as a spacer, reducing nonlinear optical effects in the glass near plasmonic hotspots of nanoparticles, as a stabilizing agent for thermodynamically unstable gold nanostars and as an optical coating for the fine-tuning of MWG bandgaps. This approach can be used to construct different kinds of SERS sensors for dissolved analytes, providing conservation, the prevention of coagulation, and the drying of a liquid sample for the time required to record the signal.Entities:
Keywords: SERS; fiber-enhanced Raman scattering; microstructures waveguide
Year: 2018 PMID: 29734729 PMCID: PMC5978111 DOI: 10.3390/ma11050734
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Optical setup for measuring UV-vis-NIR transmission of photonic crystal fibers (PCFs). 1—whitelight source, 2—whitelight source fiber collimator, 3,5—XYZ manual stages, 4—40× objective lens, 6—PCF in the cuvette, 7—10× objective lens, 8—collimator lens, 9—XY manual fiber position adjustment, 10—fiber spectrometer entry fiber.
Figure 2SEM image of constructed HC MWG structures made from soft glass (a) and low-fluorescence glass (b), SEM image of gold nanostars coating (c), and TEM image of its dried suspension (d).
Figure 3Transmission of HC MWGs after adsorption of polyelectrolyte layers (a), after filling it with water and Rhodamine B (b), and after making the SERS substrate on low fluorescence glass fiber (c).
Figure 4The enhanced fluorescence signal of MWGs dependence on a number of polyelectrolyte coating layers. The typical spectra are shown. The signal varies from fiber to fiber.
Figure 5Fiber-enhanced SERS spectrum of ethanol inside the liquid-filled core of the MWG. The approximated polynomial background is shown by a red line.
Figure 6SERS spectra of a 1 mM Rhodamine B solution inside the low fluorescence HC MWG with PEI(PAH/PSS)4/Au stars coating and Rhodamine B mixed 1:1 with the same Au nanostars.