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Raman and ATR FT-IR investigations of innovative silica nanocontaniers loaded with a biocide for stone conservation treatments

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arxiv 1911.12153 v1 pith:7FRKPH6T submitted 2019-11-27 physics.app-ph cond-mat.mtrl-sci

Raman and ATR FT-IR investigations of innovative silica nanocontaniers loaded with a biocide for stone conservation treatments

classification physics.app-ph cond-mat.mtrl-sci
keywords biocidestoneft-irgeometryloadedloadingnanosystemsraman
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In the last years, significant research efforts have been devoted to the reduction of environmental impact of biocides and to the improvement of their effectiveness over time against degradation of stone artifacts. This work reports the spectroscopic characterization of two silica nanosystems, with different geometry and structure, loaded with a biologically-active compound, the 2-mercaptobenzothizole (MBT), for controlled antifouling release on the surface of outdoor stone artefacts. We have combined FT-IR spectroscopy in ATR mode and Raman spectroscopy to investigate the biocide loading mechanism in both nanosystems from the physical and chemical point of view. These techniques demonstrate that the geometry of confinement influences the loading of the nanoparticles and their interaction with the confining medium, with possible consequences in the biocide release rate. Moreover we have seen that the biocide interacts with the surfactant (cetrimonium bromide, CTAB) and tends to dimerize.

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