Connecting science with industry: lessons learned transferring a novel plasmonic mercury sensor from the bench to the field
Author:
Affiliation:
1. CTO Picoyune LLC, Berkeley, CA, USA
2. CEO Picoyune LLC, Berkeley, CA, USA
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Public Health, Environmental and Occupational Health,Pollution,Health (social science)
Link
https://www.degruyter.com/document/doi/10.1515/reveh-2015-0051/pdf
Reference12 articles.
1. UNEP. Minamata Convention on Mercury [Internet]. UNEP. 2013. Available at: www.mercuryconvention.org.
2. UNEP. Global Atmospheric Mercury Assessment: Sources, Emissions and Transport [Internet]. [cited 2011 Nov 12]. Available at: http://www.unep.org/chemicalsandwaste/Mercury/ReportsandPublications/GlobalMercuryAssessment/tabid/1060889/Default.aspx.
3. Eustis S, El-Sayed MA. Why gold nanoparticles are more precious than pretty gold: noble metal surface plasmon resonance and its enhancement of the radiative and nonradiative properties of nanocrystals of different shapes. Chem Soc Rev 2006;35(3):209–17.10.1039/B514191E
4. Liz-Marzán LM. Nanometals. Reactions 2004;17:18.
5. Levlin M, Niemi HEM, Hautojärvi P, Ikävalko E, Laitinen T. Mercury adsorption on gold surfaces employed in the sampling and determination of vaporous mercury: a scanning tunneling microscopy study. Fresenius J Anal Chem 1996;355(1):2–9.
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