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Published on 21 March 2017
Please find here below some example of publications from Nanosafety Platform researchers


Airborne Engineered Nanomaterials in the Workplace—a Review of Release and Worker Exposure during Nanomaterial Production and Handling Processes, Yaobo Ding, Thomas A.J. Kuhlbusch, Martie Van Tongeren, Araceli Sanchez Jimenez, Ilse Tuinman, Rui Chen, Inigo Larraza Alvarez, Urszula Mikolajczyk, Carmen Nickel, Jessica Meyer, Heinz Kaminski, Wendel Wohlleben, Burkhard Stahlmecke, Simon Clavaguera, Michael Riediker, Journal of Hazardous Materials, 2017, 322, 17-28 

SERENADE: safer and ecodesign research and education applied to nanomaterial development, the new generation of materials safer by design, J.Y. Bottero, C. de Garidel, A. Masion, TH. Deutsch, G. Brochard, M. Carrière, N. Gontard, H. Wortham, T. Rabilloud, B. Salles, M. Dubosson, B. Cathala, D. Boutry, A. Ereskovsky, C. Auplat, L. Charlet, T. Heulin, E. Frejafon and S. Lanone, The Royal Societyof Chemistry, Environmental Science Nano, 2017


Measurement Methods for Nanoparticles in Indoor and Outdoor Air, Christof Asbach, Simon Clavaguera, Ana Maria Todea, The Handbook of Environmental Chemistry, 2015, 423, 1-31

Influence of paints formulations on nanoparticles release during their life cycle, Brice Fiorentino, Luana Golanski, Arnaud Guiot, Jean-François Damlencourt, Delphine Boutry, Journal of Nanoparticle Research, 17:149, 2015

Review of nanomaterial aging and transformations through the life cycle of nano-enhanced products, Denise M. Mitrano, Sylvie Motellier, Simon Clavaguera, Bernd Nowack, Environment International, Volume 77, Pages 132–147, 2015


Strategy for the lowering and the assessment of exposure to nanoparticles at workspace - Case of study concerning the potential emission of nanoparticles of Lead in an epitaxy laboratory, Sébastien Artous, Eric Zimmermann, Paul-Antoine Douissard, Dominique Locatelli, Sylvie Motellier and Samir Derrough, Journal of Physics: Conference Series, Volume 617, conference 1, 2014​

Formulation effects on the release of silica dioxide nanoparticles from paint debris to water. Zuin S., Massari A., Ferrari A., Golanski L., Science of the Total Environment 2014, 476-477

Elemental recoveries for metal oxide nanoparticles analysed by direct injection ICP-MS : influence of particle size, agglomeration state and sample matrix, S. Motellier et al., Journal of Analytical Atomic Spectrometry, 29, pp 2294, 2014

Strategies, methods and tools for managing nanorisks in construction, J M López de Ipiña, C Vaquero, D Boutry, J F Damlencourt, P Neofytou, M Pilou, E Jankowska, I Larraza, R Pina, S Fernández, Journal of Physics: Conference Series, Volume 617, conference 1, 2014


Direct quantification of TiO2 nanoparticles in suspension by grazing-incidence X-ray fluorescence spectrometry: Influence of substrate pre-treatment in the deposition processS. Motellier, S. Derrough, D. Locatelli, M. Amdaoud, K. Lhaute Spectrochimica Acta Part B 88, 1–9, 2013


Release-ability of nano fillers from different nanomaterials (toward the acceptability of nanoproduct). L. Golanski et al., Journal of Nanoparticle Research, 14 (7), pp. 1-9, 2012