| Zugriffsnummer | 47580 |
| Dokumenttyp | Zeitschriftenartikel |
| Peer Review | mit Peer Review |
| Sprache | Englisch |
| Titel | Versailles project on advanced materials and standards (VAMAS) interlaboratory study on measuring the number concentration of colloidal gold nanoparticles |
| Autor(in); Institution |
Minelli, Caterina; Chemical & Biological Sciences Department, National Physical Laboratory,Teddington, UK
Wywijas, Magdalena; Chemical & Biological Sciences Department, National Physical Laboratory,Teddington, UK
Bartczak, Dorota; National Measurement Laboratory, Teddington, UK
Cuello-Nuñez, Susana; National Measurement Laboratory, Teddington, UK
Goenaga Infante, Heidi; National Measurement Laboratory, Teddington, UK
Murphy, Karen E.; National Institute of Standards and Technology, Gaithersburg, Maryland, USA
Johnson, Monique E.; National Institute of Standards and Technology, Gaithersburg, Maryland, USA
Montoro Bustos, Antonio R.; National Institute of Standards and Technology, Gaithersburg, Maryland, USA
Strenge, Ingo H.; National Institute of Standards and Technology, Gaithersburg, Maryland, USA
Faure, Bertrand; Xenocs SAS, Grenoble, FRANCE
Høghøj, Peter; Xenocs SAS, Grenoble, FRANCE
Tong, Vivian; Chemical & Biological Sciences Department, National Physical Laboratory,Teddington, UK
Burr, Loïc; CSEM SA, Landquart, SWITZERLAND
Norling, Karin; Chalmers University of Technology, Gothenburg, SWEDEN
Höök, Fredrik; Chalmers University of Technology, Gothenburg, SWEDEN
Roesslein, Matthias; Empa, Swiss Federal Laboratories for Material Science and Technology, Gallen, SWITZERLAND
Kocic, Jovana; ETH Zurich, Zurich, SWITZERLAND
Hendriks, Lyndsey; ETH Zurich, Zurich, SWITZERLAND
Kestens, Vikram; European Commission, Joint Research Centre (JRC), Geel, BELGIUM
Ramaye, Yannic; European Commission, Joint Research Centre (JRC), Geel, BELGIUM
Contreras Lopez, Maria C.; European Commission, Joint Research Centre (JRC), Geel, BELGIUM
Auclair, Guy; European Commission, Joint Research Centre (JRC), Geel, BELGIUM
Mehn, Dora; European Commission, Joint Research Centre (JRC), Ispra, ITALY
Gilliland, Douglas; European Commission, Joint Research Centre (JRC), Ispra, ITALY
Potthoff, Annegret; Fraunhofer Institute for Ceramic Technologies and Systems IKTS, Dresden, GERMANY
Oelschlägel, Kathrin; Fraunhofer Institute for Ceramic Technologies and Systems IKTS, Dresden, GERMANY
Tentschert, Jutta; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Jungnickel, Harald; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Krause, Benjamin C.; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Hachenberger, Yves U.; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Reichardt, Philipp; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Luch, Andreas; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Whittaker, Thomas E.; Department of Materials, Department of Bioengineering and Institute of Biomedical Engineering, Imperial College London, London, UK
Stevens, Molly M.; Department of Materials, Department of Bioengineering and Institute of Biomedical Engineering, Imperial College London, London, UK
Gupta, Shalini; Indian Institute of Technology Delhi, New Delhi, INDIA
Singh, Akash; Indian Institute of Technology Delhi, New Delhi, INDIA
Lin, Fang-hsin; Centre for Measurement Standards, Industrial Technology Research Institute, Taiwan, REPUBLIC OF CHINA
Liu, Yi-Hung; Centre for Measurement Standards, Industrial Technology Research Institute, Taiwan, REPUBLIC OF CHINA
Costa, Anna Luisa; Institute of Science and Technology for Ceramics, Faenza, ITALY
Baldisserri, Carlo; Institute of Science and Technology for Ceramics, Faenza, ITALY
Jawad, Rid; Karolinska Institutet, Stockholm, SWEDEN
Andaloussi, Samir E. L.; Karolinska Institutet, Stockholm, SWEDEN
Holme, Margaret N.; The German Federal Institute for Risk Assessment, Berlin, GERMANY
Lee, Tae Geol; Korea Research Institute of Standards and Science (KRISS), Yuseong-gu, Daejeon, KOREA
Kwak, Minjeong; Korea Research Institute of Standards and Science (KRISS), Yuseong-gu, Daejeon, KOREA
Kim, Jaeseok; Korea Research Institute of Standards and Science (KRISS), Yuseong-gu, Daejeon, KOREA
Ziebel, Johanna; Luxembourg Institute of Science and Technology, Belvaux, LUXEMBOURG
Guignard, Cedric; Luxembourg Institute of Science and Technology, Belvaux, LUXEMBOURG
Cambier, Sebastien; Luxembourg Institute of Science and Technology, Belvaux, LUXEMBOURG
Contal, Servane; Luxembourg Institute of Science and Technology, Belvaux, LUXEMBOURG
Gutleb, Arno C.; Luxembourg Institute of Science and Technology, Belvaux, LUXEMBOURG
Tatarkiewicz, Jan “Kuba”; MANTA Instruments, Inc., San Diego, CA, USA
Jankiewicz, Bartłomiej J.; Military University of Technology, Warsaw, POLAND
Bartosewicz, Bartosz; Military University of Technology, Warsaw, POLAND
Wu, Xiaochun; National Center for Nanoscience and Technology (NCNST), Beijing , People's REPUBLIC OF CHINA
Fagan, Jeffrey A.; National Institute of Standards and Technology, Gaithersburg, Maryland, USA
Elje, Elisabeth; NILU Norwegian Institute for Air Research, Kjeller, NORWAY
Rundén-Pran, Elise; NILU Norwegian Institute for Air Research, Kjeller, NORWAY
Dusinska, Maria; NILU Norwegian Institute for Air Research, Kjeller, NORWAY
Kaur, Inder Preet; Nottingham Trent University, Notthingham, UK
Price, David; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Nesbitt, Ian; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
O′ Reilly, Sarah; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Peters, Ruud J. B.; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Bucher, Guillaume; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Coleman, Dennis; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Harrison, Angela J.; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Ghanem, Antoine; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Gering, Anne; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
McCarron, Eileen; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Fitzgerald, Niamh; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Cornelis, Geert; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Tuoriniemi, Jani; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Sakai, Midori; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Tsuchida, Hidehisa; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Maguire, Ciarán; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Prina-Mello, Adriele; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Lawlor, Alan J.; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Adams, Jessica; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Schultz, Carolin L.; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Constantin, Doru; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Thi Kim Thanh, Nguyen; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Duc Tung, Le; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Panariello, Luca; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Damilos, Spyridon; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Gavriilidis, Asteri; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Lynch, Iseult; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Fryer, Benjamin; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Carrazco Quevedo, Ana; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Guggenheim, Emily; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Briffa, Sophie; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Valsami-Jones, Eugenia; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Huang, Yuxiong; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Keller, Arturo A.; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Kinnunen, Virva-Tuuli; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Perämäki, Siiri; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Krpetic, Zeljka; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Greenwood, Michael; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
Shard, Alexander G.; National Physical Laboratory (NPL), Chemical & Biological Sciences Department, Teddington, UK
|
| Quelle/Jahr | Nanoscale: 14 (2022), 4690 - 4704 |
| Availability | [online only] |
| ISSN | 2040-3372 (ONLINE) |
| DOI | |
| Verlag | Cambridge: Royal Society of Chemistry |
| Zusammenfassung | We describe the outcome of a large international interlaboratory study of the measurement of particle number concentration of colloidal nanoparticles, project 10 of the technical working area 34, “Nanoparticle Populations” of the Versailles Project on Advanced Materials and Standards (VAMAS). A total of 50 laboratories delivered results for the number concentration of 30 nm gold colloidal nanoparticles measured using particle tracking analysis (PTA), single particle inductively coupled plasma mass spectrometry (spICP-MS), ultraviolet-visible (UV-Vis) light spectroscopy, centrifugal liquid sedimentation (CLS) and small angle X-ray scattering (SAXS). The study provides quantitative data to evaluate the repeatability of these methods and their reproducibility in the measurement of number concentration of model nanoparticle systems following a common measurement protocol. We find that the population-averaging methods of SAXS, CLS and UV-Vis have high measurement repeatability and reproducibility, with between-labs variability of 2.6%, 11% and 1.4% respectively. However, results may be significantly biased for reasons including inaccurate material properties whose values are used to compute the number concentration. Particle-counting method results are less reproducibile than population-averaging methods, with measured between-labs variability of 68% and 46% for PTA and spICP-MS respectively. This study provides the stakeholder community with important comparative data to underpin measurement reproducibility and method validation for number concentration of nanoparticles. |
| Kostenfreier Zugang | Open Access Hybrid |
| Rechteinformation | CC BY-NC 4.0 ; Creative Commons Attribution NonCommercial 4.0 License |
| Themenbereich der Metrologie | Photometrie und Radiometrie |
Zitierung
Minelli, C., Wywijas, M., Bartczak, D., Cuello-Nuñez, S., Goenaga Infante, H., Deumer, J., Gollwitzer, C., Krumrey, M., Murphy, K. E., Johnson, M. E., Montoro Bustos, A. R., Strenge, I. H., Faure, B., Høghøj, P., Tong, V., Burr, L., Norling, K., Höök, F., Roesslein, M., Kocic, J., Hendriks, L., Kestens, V., Ramaye, Y., Contreras Lopez, M. C., Auclair, G., Mehn, D., Gilliland, D., Potthoff, A., Oelschlägel, K., Tentschert, J., Jungnickel, H., Krause, B. C., Hachenberger, Y. U., Reichardt, P., Luch, A., Whittaker, T. E., Stevens, M. M., Gupta, S., Singh, A., Lin, F.-H., Liu, Y.-H., Costa, A. L., Baldisserri, C., Jawad, R., Andaloussi, S. E. L., Holme, M. N., Lee, T. G., Kwak, M., Kim, J., Ziebel, J., Guignard, C., Cambier, S., Contal, S., Gutleb, A. C., Tatarkiewicz, J. “., Jankiewicz, B. J., Bartosewicz, B., Wu, X., Fagan, J. A., Elje, E., Rundén-Pran, E., Dusinska, M., Kaur, I. P., Price, D., Nesbitt, I., O′ Reilly, S., Peters, R. J. B., Bucher, G., Coleman, D., Harrison, A. J., Ghanem, A., Gering, A., McCarron, E., Fitzgerald, N., Cornelis, G., Tuoriniemi, J., Sakai, M., Tsuchida, H., Maguire, C., Prina-Mello, A., Lawlor, A. J., Adams, J., Schultz, C. L., Constantin, D., Thi Kim Thanh, N., Duc Tung, L., Panariello, L., Damilos, S., Gavriilidis, A., Lynch, I., Fryer, B., Carrazco Quevedo, A., Guggenheim, E., Briffa, S., Valsami-Jones, E., Huang, Y., Keller, A. A., Kinnunen, V.-T., Perämäki, S., Krpetic, Z., Greenwood, M., & Shard, A. G. (2022). Versailles project on advanced materials and standards (VAMAS) interlaboratory study on measuring the number concentration of colloidal gold nanoparticles. Nanoscale, 14, 4690–4704. https://doi.org/10.1039/D1NR07775A