C1s精细图谱参考(图4.13~图4.19)

图4.13 污染碳C1s分峰

图4.14 PET(芳香环结构)C1 s分峰

图4.15 金刚石和石墨碳C1 s谱峰对比

图4.16 石墨和金刚石碳D-param eter

图4.17 石墨烯C1 s分峰拟合

图4.18 氧化石墨烯C1 s分峰拟合(https://www.daowen.com)

图4.19 碳酸盐中C1 s分峰拟合
推荐资料
吸附碳参考:
[1]Barr T L,Seal S.Nature of the use of adventitious carbon as a binding energy standard[J].Journal of Vacuum Science&Technology A,1995(13):1239-1246.
[2]Swift P.Adventitious carbon—the panacea for energy referencing[J].Surface and Interface Analysis,1982(4):47-51.
[3]Miller D J,Biesinger MC,McIntyre N S.Interactions of CO2 and CO at fractional atmosphere pressures with iron and iron oxide surfaces:one possiblemechanism for surface contamination[J].Surface and Interface Analysis,2002(33):299-305.
[4]Piao H,McIntyre N S.Adventitious carbon growth on aluminium and gold-aluminium alloy surfaces[J].Surface and Interface Analysis,2002(33):591-594.
聚合物数据库:
[1]Beamson G,Briggs D.High Resolution XPS of Organic Polymers The Scienta ESCA300 Database[M].John Wiley&Sons,1992.
[2]Kratos Polymer Handbook.http://www.kratos.com/EApps/polybook2a.pdf.
[3]Crist B V.Handbook ofmonochromatic XPS spectra,polymers and polymers damaged by X-rays[M].Wiley,2000.