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Hybrid pH-Responsive Au@p4VP Microgels as Platform for Selective SERS Analysis

Contreras-Cáceres, Rafael

Abstract

We present the synthesis a of pH-responsive core@shell hybrid microgel. This colloidal system is formed by a 55 nm Au core individually covered by a polymeric pH-sensitive shell of poly(4-vinylpyridine), that we denote as Au@p4VP. Initially, we control the microgel thickness from 51 to 10 nm, and we confirm the pH- responsive capability of Au@p4VP by DLS measurements, showing a swelling degree, which depends on the pH of the media and the crosslinker density within the polymer network. We also prove the hybrid structure by plotting the UV-vis spectra at different pH values, showing a surface plasmon band displacement in function of pH. Thus, at acidic pH the microgel swells due to the electrostatic repulsion created into the polymer matrix, while at high pH, the microgel structure collapses because of the reduction in the electrostatic repulsion and the increment of the hydrophobic interactions. This capability is exploited to introduce doxorubicin molecules into the microgel network which are detected by surface- enhanced Raman spectroscopy (SERS). After increasing the pH of the solution, the captured molecules are brought in close proximity to the surface of the metallic core, enhancing its detection by SERS.

Full text

Hybrid pH-Responsive Au@p4VP Microgels as Platform for Selective SERS Analysis Rafael Contreras-Caceres,1* Joaquim Clara-Rahola,2 Miguel A. Casado-Rodriguez,1 Marco Lanurenti,3 Christian Kuttner,4 Jorge Rubio-Retama,3 Andreas Fery,4,5 Manuel Lopez-Romero1 1 Department of Organic Chemistry, Universidad de Malaga, 29071 Malaga, Spain 2 I2TiC Multidisciplinary Research Group, Open University of Catalonia, 08035 Barcelona, Spain 3 Department of Physical Chemistry II, Complutense University of Madrid, Spain 4 Department of Nanostructured Materials, Leibniz-Institut fr Polymerforschung Dresden e.V., 01069 Dresden, Germany 5 Physical Chemistry of Polymeric Materials, Technische Universität Dresden, 01069 Dresden, Germany *[email protected]s We present the synthesis a of pH-responsive core@shell hybrid microgel. This colloidal system is formed by a 55 nm Au core individually covered by a polymeric pH-sensitive shell of poly(4-vinylpyridine), that we denote as Au@p4VP. Initially, we control the microgel thickness from 51 to 10 nm, and we confirm the pHresponsive capability of Au@p4VP by DLS measurements, showing a swelling degree, which depends on the pH of the media and the crosslinker density within the polymer network. We also prove the hybrid structure by plotting the UV-vis spectra at different pH values, showing a surface plasmon band displacement in function of pH. Thus, at acidic pH the microgel swells due to the electrostatic repulsion created into the polymer matrix, while at high pH, the microgel structure collapses because of the reduction in the electrostatic repulsion and the increment of the hydrophobic interactions. This capability is exploited to introduce doxorubicin molecules into the microgel network which are detected by surfaceenhanced Raman spectroscopy (SERS). After increasing the pH of the solution, the captured molecules are brought in close proximity to the surface of the metallic core, enhancing its detection by SERS. Figure 1. TEM images of the Au@p4VP system (left), DLS measurement at different crosslinking densities (middle), and UV-vis spectra at several pH values (right). Acknowledgements The financial support of this work was supplied by the Spanish MINECO grants CTQ2013-48418P and MAT2013-45168-R [1] Clara-Rahola et al. Langmuir. Under review 200 nm 1,5 2,0 2,5 3,0 3,5 4,0 4,5 5,0 5,5 6,0 6,5 100 200 300 400 500 600 700 DH/nm pH 1 % BA 3% BA 6% BA 475 500 525 550 575 600 625 650 0,5 0,6 0,7 0,8 0,9 1,0 6 Norm Absorbance Wavelength /nm pH 3 pH 6 pH 3 Collapsed State Swollen State