We present, for the first time, portable defocusing micro-Spatially Offset Raman Spectroscopy (micro-SORS). Micro-SORS is a concept permitting the analysis of thin, highly turbid stratified layers beyond the reach of conventional Raman microscopy. The technique is applicable to the analysis of painted layers in cultural heritage (panels, canvases and mural paintings, painted statues and decorated objects in general) as well as in many other areas including polymer, biological and biomedical applications, catalytic and forensics sciences where highly turbid stratified layers are present and where invasive analysis is undesirable or impossible. So far the technique has been demonstrated only on benchtop Raman microscopes precluding the non-in...
We applied micro-scale Spatially Offset Raman Spectroscopy (micro-SORS) to perform the analysis of t...
Microspatially offset Raman spectroscopy (micro-SORS) has been proposed as a valuable approach to sa...
Obtaining molecular information deeper within optically turbid samples is valuable in many applicati...
A recently developed variant of spatially offset Raman spectroscopy (SORS) for the non-invasive anal...
Nowadays, the research in conservation science is focused on developing advanced portable analytical...
The study compares and contrasts conventional confocal Raman microscopy/spectroscopy (CRM) with a re...
A recently developed micrometer-scale spatially offset Raman spectroscopy (m-SORS) method provides a...
We present a new concept of fluorescence suppression in Raman microscopy based on micro-spatially of...
Defocusing micro-spatially offset Raman spectroscopy (micro-SORS) is a recently developed technique ...
none9noThis study proposes a non-invasive analytical method to study the molecular diffusion of a ch...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
The study presents the application of combined micro-Spatially Offset Raman Spectroscopy (micro-SORS...
Spectral depth-profiling of optically turbid samples is of high interest to a broad range of applica...
In this paper, we demonstrate the ability of portable Raman spectroscopy and benchtop spatially offs...
We applied micro-scale Spatially Offset Raman Spectroscopy (micro-SORS) to perform the analysis of t...
Microspatially offset Raman spectroscopy (micro-SORS) has been proposed as a valuable approach to sa...
Obtaining molecular information deeper within optically turbid samples is valuable in many applicati...
A recently developed variant of spatially offset Raman spectroscopy (SORS) for the non-invasive anal...
Nowadays, the research in conservation science is focused on developing advanced portable analytical...
The study compares and contrasts conventional confocal Raman microscopy/spectroscopy (CRM) with a re...
A recently developed micrometer-scale spatially offset Raman spectroscopy (m-SORS) method provides a...
We present a new concept of fluorescence suppression in Raman microscopy based on micro-spatially of...
Defocusing micro-spatially offset Raman spectroscopy (micro-SORS) is a recently developed technique ...
none9noThis study proposes a non-invasive analytical method to study the molecular diffusion of a ch...
This is the author accepted manuscript. The final version is available from Springer Nature via the ...
The study presents the application of combined micro-Spatially Offset Raman Spectroscopy (micro-SORS...
Spectral depth-profiling of optically turbid samples is of high interest to a broad range of applica...
In this paper, we demonstrate the ability of portable Raman spectroscopy and benchtop spatially offs...
We applied micro-scale Spatially Offset Raman Spectroscopy (micro-SORS) to perform the analysis of t...
Microspatially offset Raman spectroscopy (micro-SORS) has been proposed as a valuable approach to sa...
Obtaining molecular information deeper within optically turbid samples is valuable in many applicati...