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Reference materials and representative test materials to develop nanoparticle characterization methods: the NanoChOp project case.
Roebben G, Kestens V, Varga Z, Charoud-Got J, Ramaye Y, Gollwitzer C, Bartczak D, Geißler D, Noble J, Mazoua S, Meeus N, Corbisier P, Palmai M, Mihály J, Krumrey M, Davies J, Resch-Genger U, Kumarswami N, Minelli C, Sikora A, Goenaga-Infante H. Roebben G, et al. Among authors: bartczak d. Front Chem. 2015 Oct 19;3:56. doi: 10.3389/fchem.2015.00056. eCollection 2015. Front Chem. 2015. PMID: 26539428 Free PMC article.
Number Concentration of Gold Nanoparticles in Suspension: SAXS and spICPMS as Traceable Methods Compared to Laboratory Methods.
Schavkan A, Gollwitzer C, Garcia-Diez R, Krumrey M, Minelli C, Bartczak D, Cuello-Nuñez S, Goenaga-Infante H, Rissler J, Sjöström E, Baur GB, Vasilatou K, Shard AG. Schavkan A, et al. Among authors: bartczak d. Nanomaterials (Basel). 2019 Apr 1;9(4):502. doi: 10.3390/nano9040502. Nanomaterials (Basel). 2019. PMID: 30939772 Free PMC article.
Correction: Schavkan, A., et al. Number Concentration of Gold Nanoparticles in Suspension: SAXS and spICPMS as Traceable Methods Compared to Laboratory Methods. Nanomaterials 2019, 9, 502.
Schavkan A, Gollwitzer C, Garcia-Diez R, Krumrey M, Minelli C, Bartczak D, Cuello-Nuñez S, Goenaga-Infante H, Rissler J, Sjöström E, Baur GB, Vasilatou K, Shard AG. Schavkan A, et al. Among authors: bartczak d. Nanomaterials (Basel). 2019 Jul 24;9(8):1060. doi: 10.3390/nano9081060. Nanomaterials (Basel). 2019. PMID: 31344843 Free PMC article.
Versailles project on advanced materials and standards (VAMAS) interlaboratory study on measuring the number concentration of colloidal gold nanoparticles.
Minelli C, Wywijas M, Bartczak D, Cuello-Nuñez S, Infante HG, Deumer J, Gollwitzer C, Krumrey M, Murphy KE, Johnson ME, Montoro Bustos AR, Strenge IH, Faure B, Høghøj P, Tong V, Burr L, Norling K, Höök F, Roesslein M, Kocic J, Hendriks L, Kestens V, Ramaye Y, Contreras Lopez MC, Auclair G, Mehn D, Gilliland D, Potthoff A, Oelschlägel K, Tentschert J, Jungnickel H, Krause BC, Hachenberger YU, Reichardt P, Luch A, Whittaker TE, Stevens MM, Gupta S, Singh A, Lin FH, Liu YH, Costa AL, Baldisserri C, Jawad R, Andaloussi SEL, Holme MN, Lee TG, Kwak M, Kim J, Ziebel J, Guignard C, Cambier S, Contal S, Gutleb AC, Kuba Tatarkiewicz J, Jankiewicz BJ, Bartosewicz B, Wu X, Fagan JA, Elje E, Rundén-Pran E, Dusinska M, Kaur IP, Price D, Nesbitt I, O Reilly S, Peters RJB, Bucher G, Coleman D, Harrison AJ, Ghanem A, Gering A, McCarron E, Fitzgerald N, Cornelis G, Tuoriniemi J, Sakai M, Tsuchida H, Maguire C, Prina-Mello A, Lawlor AJ, Adams J, Schultz CL, Constantin D, Thanh NTK, Tung LD, Panariello L, Damilos S, Gavriilidis A, Lynch I, Fryer B, Carrazco Quevedo A, Guggenheim E, Briffa S, Valsami-Jones E, Huang Y, Keller AA, Kinnunen VT, Perämäki S, Krpetic Z, Greenwood M, Shard AG. Minelli C, et al. Among authors: bartczak d. Nanoscale. 2022 Mar 24;14(12):4690-4704. doi: 10.1039/d1nr07775a. Nanoscale. 2022. PMID: 35262538
35 results