Visualization of gold/silver nanostars in wood by surface enhanced Raman spectroscopy

Geers, C.; Rodríguez-Lorenzo, L.; Placencia Peña, M.I; Brodard, P.; Volkmer, Thomas; Rothen-Rutishauser, B.; Petri-Fink, A. (2014). Visualization of gold/silver nanostars in wood by surface enhanced Raman spectroscopy In: 45th IRG Annual Meeting. Las Vegas, USA. 11.-15.05.2014.

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Nanotechnology is a fast growing up-to-date technology and ventures expeditiously in the wood preservative market. However, there is still a huge lack of understanding about the interaction and incorporation of nanoparticles (NSs) in wood. Surface-enhanced Raman scattering (SERS) offers unique advantages as an analytical tool with a high selectivity and sensitivity without matrix interference. Here, we design and fabricate SERS-tagged silver/gold nanostars (NSs), coated with a silica shell encapsulating nile blue A (NBA), as potential platforms for SERS imaging. These NSs can be pressure-impregnated in different wood types (pine and beech) due their optimal size (< 100 nm), allowing for their rapid and accurate identification and localization in the wood samples. For comparison and visualization of the NSs, the samples were coated with a carbon layer for analysis in a scanning electron microscope (SEM). We demonstrate that SERS provides advantages over SEM. The NSs can be visualised by SERS without coating of the samples. In addition, no vacuum is needed to image the NSs, and the excitation laser line (633 nm) used applies a lower energy for detection of NSs than the electron beam of the SEM. These facts lead to a much decreased formation of artefacts during NSs detection in wood. This quick and easy method can be used for fast analysis of new nanoparticle-based wood preservative systems, which leads to a better understanding of impregnation processes, providing an essential step in finding fundamentally new wood preservatives.

Item Type:

Conference or Workshop Item (Paper)

Division/Institute:

School of Architecture, Wood and Civil Engineering
School of Architecture, Wood and Civil Engineering > Institute for Materials and Wood Technology
School of Architecture, Wood and Civil Engineering > AHB Teaching

Name:

Geers, C.;
Rodríguez-Lorenzo, L.;
Placencia Peña, M.I;
Brodard, P.;
Volkmer, Thomas;
Rothen-Rutishauser, B. and
Petri-Fink, A.

Subjects:

Q Science > QD Chemistry
T Technology > TH Building construction

Submitter:

Service Account

Date Deposited:

18 Feb 2020 09:10

Last Modified:

18 Feb 2020 09:10

Related URLs:

Uncontrolled Keywords:

Nanoparticle Wood preservative Impregnation SERS

URI:

https://arbor.bfh.ch/id/eprint/7219

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