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Versailles Project on Advanced Materials and Standards Interlaboratory Study on Measuring the Thickness and Chemistry of Nanoparticle Coatings Using XPS and LEIS.

J Phys Chem C Nanomater Interfaces. 2016-12; 
BelseyNatalie A,CantDavid J H,MinelliCaterina,AraujoJoyce R,BockBernd,BrünerPhilipp,CastnerDavid G,CecconeGiacomo,CounsellJonathan D P,DietrichPaul M,EngelhardMark H,FearnSarah,GalhardoCarlos E,KalbeHenryk,Won KimJeong,Lartundo-RojasLuis,LuftmanHenry S,NunneyTim S,PseinerJohannes,SmithEmily F,SpampinatoValentina,SturmJacobus M,ThomasAndrew G,TreacyJon P W,VeithLothar,WagstaffeMichael,WangHai,WangMeiling,WangYung-Chen,WernerWolfgang,YangLi,ShardAlexand
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摘要

We report the results of a VAMAS (Versailles Project on Advanced Materials and Standards) inter-laboratory study on the measurement of the shell thickness and chemistry of nanoparticle coatings. Peptide-coated gold particles were supplied to laboratories in two forms: a colloidal suspension in pure water and; particles dried onto a silicon wafer. Participants prepared and analyzed these samples using either X-ray photoelectron spectroscopy (XPS) or low energy ion scattering (LEIS). Careful data analysis revealed some significant sources of discrepancy, particularly for XPS. Degradation during transportation, storage or sample preparation resulted in a variability in thickness of 53 %. The calculation method... More

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