o1s结合能铁蛋白偏高是什么原因因

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O的电子结合能
XPS_Database O1s 的电子结合能: Energy (eV) Element 524.5 O1s 528.1 O1s 528.2 O1s 528.3 O1s 528.3 O1s 528.3 O1s 528.6 O1s 528.7 O1s 528.7 O1s 528.8 O1s 528.8 O1s 528.8 O1s 528.9 O1s 528.9 O1s 529 O1
s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.1 O1s 529.2 O1s 529.2 O1s 529.2 O1s Chemical bonding fluoration avec F2-HF sur fibre C320.00A O2- anion in LaNiO3 Ba O ds Li2O après bombardement par l'argon Li2O immergé ds DEC et bomb par l'argon 80min Li2Oap immersion ds DEC(LiPF6) et bomb par argon La2O3 PbO ( ? ) O2- oxo- species Sm2O3 Eu2O3 La2O3 (oxide) Gd2O3 LaOOH (oxide) CdO CeO2 TiO2 ( d ) CdO CeO2 Nd2O3 Dy2O3 Ho2O3 Rb Sr no double bonded in case of Na3PO4 associated with the titanate oxygen, (SrTiO3 surface) CeOOH (oxide) Y2O3 Er2O3 Yb2O3 NiO ( 10puis-6 torr) NiO (1er pic) ( 800°C - 10min ) NiO ( air 15min ) NiO ( 250°C -1h ) NiO 60( 800°C-air ) NiO ( 800°C-air+ O2-10min ) O ( 800°C-air+ O2-10min ) O2- anion in LaNiO(4+d) Ce2O3 (oxide) RuO2 RuO2 Tm2O3 Ref 117 244 155 51 51 51 157 157 159 157 157 13 157 13 150 150 157 157 157 157 157 157 155 155 217 113 13 157 157 157 78 78 78 78 78 78 78 244 13 150 111 1571 529.2 529.2 529.2 529.2 529.2 529.3 529.3 529.3 529.4 529.4 529.4 529.4 529.4 529.4 529.4 529.5 529.5 529.5 529.5 529.5 529.6 529.6 529.6 529.6 529.6 529.6 529.6 529.6 529.6 529.6 529.6 529.7 529.7 529.7 529.7 529.7 529.7 529.75 529.8 529.8 529.8 529.8 529.8 529.8 529.8 529.8O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sCeO(OH)2 (oxide) Ce(OH)4 (oxide) CeO2 Ce in mixed oxydes ceria/zirconia. Ce80%- Zr20% Mol CeO2 (oxide) NiO Lu2O3 Ce in mixed oxydes ceria/zirconia. Ce68%- Zr32% Mol CuO O-Ti (TiO2) CaO , ZnO-SiO2 PbO2 ( ? ) Cs Ce in mixed oxydes ceria/zirconia. Ce50%- Zr50% Mol Y2O3 (oxide) FeO Fe2O3 NiO Ce in mixed oxydes ceria/zirconia. Ce15%- Zr85% Mol Co foil polish- Ar+ etch, +O2 -200°C/30 mn+400°C/30mn TiO2 NiO oxydes de Ti,V,Cr,Mn,Fe In2O3 Bi2O3 CuO NiO CoO TiO2 Oxyde Ni foil polish- Ar+ etch, +O2 -200°C/1h+400°C/2h30mn OH , Oads CuFe2O4 CoOOH Na Co foil polishing + water immersion/24h Fe=O PbO (70%) / O non ponté Fe3O4 TiO2 Na2Cr2O7 Fe3O4 MgO MnO2 ThO2 NiO13 13 214 214 13 150 157 214 150 43 135 157 155 214 13 89 89 157 214 101 31 111 60 157 157 247 247 247 208 118 101 178 247 247 155 101 201 165 150 19 111 89 157 157 157 1832 529.8 529.8 529.8 529.8 529.8 529.8 529.8 529.8 529.8 529.8 529.85 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 529.9 530 530 530 530 530 530 530 530 530 530 530 530 530 530O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sCa Sb O no-bridging, lead silicate glasses. O-Ti in the TiN coatings before and after erosion TiO2 in the TiN/Si interface Co foil polishing and Ar+ etching, + O2 at 200°C/30mn (after Ar sputtering of SrTiO3 surface) V2O5 PtO (oxide) Ni foil polishing + water immersion/28h NaAlO2 FeOOH O (2-) -304 SSSc2O3 TiO2 ( b ) Fe2O3 NiFe2O4 Co2O3 CoFe2O4 Cr2O3 O ds O(2-) O ds O2O2O alphaFe2O3 CoOOH (oxide) Co foil polishing + water immersion/63h CoO (oxide) ZrO2 (oxide) As-received AlN powder, Al2O3 present near the surface MoO3 Ni foil polishing and Ar+ etching, + O2 at 200°C/1h CoO Co3O4 Na2MoO4 Fe2O3 CuCrO2 Oads CoO Co3O4 ZnO ZrO2 pic attribué à Fe2O3 O FeO Ni2O3 (oxide)155 155 165 43 43 101 113 219 13 101 155 89 138 157 157 157 247 247 247 186 1 216 87 84 89 13 101 13 13 94 219 101 150 150 150 111 111 76 157 157 157 157 182 84 89 133 530 530 530 530 530 530 530 530.1 530.1 530.1 530.1 530.1 530.1 530.1 530.1 530.1 530.1 530.1 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.2 530.3 530.3 530.3 530.3 530.3 530.3 530.3 530.3 530.3 530.3 530.3 530.35 530.4 530.4O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sFe2O3 (oxide) O2- with a sample immersed in a 60°C solution PtO2 (oxide) NiO (oxide) Co2O3 (oxide) FeO (oxide) Rh2O3 (oxide) CO in [Eu(H2daaen)] Ti oxydes Li2CrO4 In Sn PbO(18%) / O non ponté PdO (oxide) SnO2 (oxide) WOOH (oxide) O2- with a sample immersed in a room t° solution TiO2 Cu2O WO3 Cr2O3 HfO2 NaA CrO3 ion oxyde O(-II) pic du Fe2O3 après bombardement (5 min) NaA Fe3O4 FeOOH Fe3O4 (oxide) WO3 (oxide) TiO2-As2O5 systeme Cu2O Cr2O3 Cr2O3 Fe3O4 O ds PMDA-ODA T=250°C av 1,0 nm de Cr(Cr-oxyde) O ds Cr2O3 O2UO2 FeOOH CuO (oxide) Cu2O (oxide) PbS - air 220jSnO2 RuO313 11 13 13 13 13 13 166 197 111 155 155 165 13 13 13 11 219 150 111 111 157 191 186 186 182 155 89 13 13 13 219 111 157 183 183 131 176 156 160 89 13 13 89 150 1114 530.4 530.4 530.4 530.4 530.4 530.4 530.4 530.4 530.4 530.4 530.42 530.5 530.5 530.5 530.5 530.5 530.5 530.5 530.5 530.5 530.6 530.6 530.6 530.6 530.6 530.6 530.6 530.6 530.6 530.6 530.68 530.68 530.68 530.7 530.7 530.7 530.7 530.7 530.7 530.7 530.7 530.75 530.8 530.8 530.8 530.8O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1ssilico-alumines SiO2 TiO2 ( a ) V2O5 CrO3 ( ? ) Nb2O5 Ta2O5 WO3 UO3 MoO3,xH2O (oxide) MoO3 Cu2O ( ? ) CuO Ga2O3 SnO2 Cu2O zeolite NaA Spinel chemisorbed O- in LaNiO3 MoO3 (oxide) CO in H4daaen Al2O3 TiO2-Al2O3 W/TiN/SiO2/Si Al2O3 alumina TiO2 ( c ) O ds PMDA-ODA après déposition de Ti sur PMDA-ODA O ds structure W/TiN/SiO2/Si Ga chemisorbed O- in LaNiO(4+d) Al2O3 alpha Al2O3 alpha corrundum Al2O3 alpha Na zeolite (NaAlsiO4) CoMoO4 MoO3 CoAl2O4 Al2O3(gama) Gama-Al2O3 SiO2 (oxide) AlN/PPC binder burnout in air vieillissement à l'air de la galène pdt 220j Al2O3 Al2TiO5 dmso CoAl2O450 135 157 157 157 157 157 157 160 13 150 157 157 157 157 247 191 118 244 13 166 175 19 148 175 157 130 148 155 244 123 66 203 111 111 157 247 191 155 13 94 89 150 19 195 1115 530.8 530.8 530.8 530.8 530.8 530.8 530.8 530.8 530.8 530.8 530.85 530.85 530.85 530.9 530.9 530.9 530.9 530.9 530.9 530.9 530.9 530.9 530.9 530.9 530.9 530.9 531 531 531 531 531 531 531 531 531 531 531.05 531.08 531.08 531.08 531.1 531.1 531.1 531.1 531.1 531.1O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sCr2O3 après bomb de 2h liaison simple (plasma O2) liaison simple (traité acide nitrique) TiO2 TiO exist in a hydroxide or in a carbonate bound to NH4 AlOOH (oxide) AlN/PVB binder burnout in air AlN/PVB binder burnout in nitrogen AlN/PPC binder burnout in nitrogen Cr(OH)3, 0.4H2O Zeolite NaX NaX O-Ti CaCO3 PbO-SiO2 Cu(OH)2 Ni2O3 ( 10puis-6 torr) Ni2O3 ( air 15min ) Ni2O3 ( 250°C -1h ) Ni2O3 ( 800°C-air ) Ni2O3 ( 800°C-air+ O2-10min ) MgO aluminosilicate sodalite Cr2(CrO4)3 Mg Ni(OH)2 O:Ti Al (prior sputter) O-C (PET) TiO2 O:Ti OH groups incorporated during the aqueus hydro. Proces V6Mo4O25-MoO3-As2O3 systeme Al2O3 (oxide) YOOH (hydroxide) PbS - H2O 19j Al2O3 gamma Al2O3 gamma Al2O3 gamma CO in [Cu(H2daaen)] Ti2O3 H2NC6H4SO3H AlN Al(OH)3,bayerite Al (after sputter)212 190 190 47 47 213 13 94 94 94 60 191 155 43 111 135 247 78 78 78 78 78 191 191 186 155 150 31 175 88 45 208 113 219 13 13 89 123 107 203 166 31 111 175 175 1756 531.1 531.1 531.1 531.1 531.1 531.1 531.1 531.14 531.16 531.16 531.16 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.2 531.25 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.3 531.35O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sAl2O3 zeolite NaX Ti2O3 O ds Oxydes de métaux de transition (delta)-VOPO4 Sn(OH)4 (hydroxide) LaOOH (hydroxide) Al2O3 gamma AlOOH gamma boehmite AlOOH gamma boehmite AlOOH gamma boehmite CaCO3 TiN0.63 O0.08 AlOOH boehmite Al2(MoO4)3 Ni(OH)2 CoOOH Co(OH)2 Cr(OH)3 O=C LiOH pour surfaces des feuilles de Li métal O ds Cr2O3 (20 at% de Cr) alpha-UP2O7 Al C=O Zr(OH)4 (hydroxide) Al2O3 gamma PbS -air 3'Al2O3 Al2O3 CuCl2(dmso)2 carbonyl (PET) O ds OHU3O8 Ge P=OO-Ti in the TiN coatings before and after erosion O-Ti in the TiN/Si interface CeO(OH)2 (hydroxide) Ce(OH)4 (hydroxide) C=O carbonyl oxygen atoms in PA-6,6 Co foil polishing + water immersion/24h CeOOH (hydroxide) AlO(OH) boehmite PbO (70%) / O ponté60 191 208 198 206 13 13 36 123 32 203 150 31 175 111 247 247 247 186 104 51 212 160 155 174 13 107 89 10 19 195 39 216 160 155 196 43 43 13 13 158 171 101 13 202 1657 531.38 531.39 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.4 531.44 531.44 531.44 531.44 531.44 531.44 531.44 531.44 531.44 531.44 531.45 531.45 531.47 531.5 531.5 531.5 531.5 531.5 531.5O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sAlO(OH) gamma boehmite Al2O3 gamma/HFPO 400°C CO in [CuEu(daaen)] BeO TiN0.31 O0.44 TiN0.54 O0.17 PtCl2(dmso)2 Sn(CH3)2Cl2(dmso)2 Na2S2O3 FeO{O}H,H2O OH- -304 SSBeO Al2O3 Cr-O TiN0,31O0,44 O ds OHU2O(PO4)2 U(UO2)(PO4)2 As Pb FeOOH pyrophosphate catalysts prepared at 450°C pyrophosphate catalysts prepared at 600°C pyrophosphate catalysts prepared at 750°C pyrophosphate catalysts prepared at 880°C V-P-O prepared to 132h of activation CoOOH (hydroxide) Al(OH)3 nordstrandite Al(OH)3 bayerite AlOOH beta Diaspore AlPO4 Al(OH)3 nordstrandite Al(OH)3 beta bayerite AlOOH beta Diaspore Al(OH)3 nordstrandite Al(OH)3 beta bayerite AlOOH beta Diaspore Al2O3 alpha vieillissement à l'eau de la galène pdt 19j O dans Al métal TiO0.73 TiN0.09 O0.74 PdCl2(dmso)2 Ni2O3 Ni(OH)2 KOH36 36 166 150 31 31 195 195 111 60 138 157 157 131 208 1 160 160 155 155 89 206 206 206 206 206 13 123 123 123 123 134 30 67 203 203 203 36 89 9 31 31 195 111 111 1118 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.5 531.55 531.55 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.6 531.65 531.67 531.67 531.68 531.68 531.68 531.69 531.7 531.7O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sNa2SO3 hydroxyde de chrome FeS2 -air 11jCu2O , ZnO , CuO NO ( - delta ) ads kaolinite ( Al2Si2O7,H2O) pic attribué aux sp hydratées (OH,H2O ou FeOOH) Cr2O3 (surface non bombardée) TiO0,73 abrasé sur dry 600 grit sandpaper qq sec OHV-P-O prepared to 0,1h of activation V-P-O prepared to 8h of activation V-P-O prepared to 84h of activation Co foil polishing + water immersion/63h OH- with a sample immersed in a 60°C solution OH- with a sample immersed in a room t° solution WOOH (hydroxide) Al2O3 alpha corundum Al2O3 gamma Zeolite NaY NaY CdCl2(dmso) Al2O3 R2SO AlOOH boehmite FeS2 -air 3'ZnO-SiO2 Li2CO3 pour surfaces des feuilles de Li métal LiCO3 ou LiOH ds DEC contenant LiClO4 pdt 240 min LiOH après immersion ds DEC(LiPF6) OHP=OC=O adsorbed OH groups in LaNiO3 POAl for xAL2O3.(1-x)NaPO3 when x=0.05 Fe-OH vieillissement à l'air de la galène pdt 3mn Al(OH)3 alpha bayerite KClO3 Al(OH)3 gibbsite Al(OH)3 alpha gibbsite Al(OH)3 gibbsite Al(OH)3 gamma hydrargilite FeS2 -air 220jFeS2 - H2O 22j-111 225 89 178 76 191 182 212 208 207 87 206 206 206 101 11 11 13 202 202 191 155 195 111 111 175 89 135 51 51 51 156 196 174 244 128 201 89 36 150 123 108 203 36 89 899 531.7 531.7 531.7 531.7 531.7 531.7 531.7 531.7 531.7 531.7 531.7 531.7 531.75 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.8 531.82 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9 531.9O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sO=C (PETP film) P2O5 ds P2O5 (poudre) (liaison P=O) P2O5 ds (MoO3)z(P2O5)(1-z) avec z=0,65 (liai P=O) N-C-O Metal salt K2Cr2O7 in 316 L alloy O ds hydroxyde fibre C320.00A OH Co foil polishing and Ar+ etching, + O2 at 200°C/30mn Ni2O3 (hydroxide) Cu(OH)2 (oxide) Al(OH)3 gibbsite Al(OH)3 (Al treated at pH9), delta(O1s-Al2p=457,5eV) NiCl2(dmso)3 MnCl2(dmso)3 [Pd(dmso)4](BF4)2 [Pd(dmso)4](BF4)2 Al2(WO4)3 R2SO2 CuFeS2 -air C=O du Polyimide Kapton P2O5 ds (MoO3)z(P2O5)(1-z) avec z=0,74 (liai P=O) Cr Ox in 316 L pot anod (5V for 5 min) in physio serum O bridging, lead silicate glasses. Co foil polish- Ar+ etch, +O2 -200°C/30 mn+400°C/30mn one non bridging atom in case of Na3PO4 Pt(OH)4 (hydroxide) AlOOH (hydroxide) Ni foil polish- Ar+ etch, +O2 -200°C/1h+400°C/2h30mn Al(PO3)3 O-Si (SiC) CoCl2(dmso)3 SnCl2(dmso)2 Na2SO4 RSO3Na O=C (PET:1,8x10puis15at d'AL/cm2) OH , in Fe(OH)3 -pyrite n°1Fe(OH)3 , FeOOH -pyrite n°2P2O5 ds (MoO3)z(P2O5)(1-z) avec z=0,70 (liai P=O) silicates OH no double bonded in case of P2O5 Ni(OH)2 (hydroxide) Si(OH)4 (hydroxide) MoO3,xH2O (hydroxide) Ni foil polishing + water immersion/28h56 168 168 177 207 176 117 84 101 13 13 202 242 195 195 195 195 111 111 89 15 168 207 165 101 217 13 13 101 123 226 195 195 111 111 56 163 163 168 249 84 217 13 13 13 10110 531.9 531.9 531.9 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532 532.05 532.05 532.06 532.1 532.1 532.1 532.1 532.1 532.1 532.1 532.1 532.1 532.15 532.15 532.15 532.2 532.2 532.2 532.2 532.25 532.25 532.25O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sNi foil polishing and Ar+ etching, + O2 at 200°C/1h Al(OH)3 bayerite Al(OH)3 nordstrandite ZnCl2(dmso)2 Fe2(SO4)3 silice SO4(2-) -304 SSP2O5 ( O central ) GeO2 zeolite NaY montmorillonite Cr2(SO4)3 groupe hydroxyle liaison double (plasma O2) OHvoir spectres adsorbed OH groups in LaNiO(4+d) nonbridging oxygen(PO-) for xAL2O3.(1-x)NaPO3 when x=0 POAl for xAL2O3.(1-x)NaPO3 when x=0.10 POAl for xAL2O3.(1-x)NaPO3 when x=0.15 amorphous hydrogenated carbon/Al2O3 FeOOH (hydroxide) Al(OH)3 (hydroxide) RhOOH (hydroxide) vieillissement à l'air de la pyrite pendant 3 mn vieillissement à l'air de la spharelite pdt 3 mn PbO (10%) / O ponté FeCl3(dmso)2 RhCl3(dmso)3 H2NC6H4SO2NH2 FeSO4,7H2O Cr Ox, 316 L alloy fretted (30 min) in physio serum &corrosion products& after fretted in NaCl P-O-Cu vieillissement à l'air de la chalcopyrite pdt 400j main oxygen for CO/Ni(100) c(2x2) and Cr(CO)6 vieillissement à l'air de la pyrite pendant 220 j vieillissement à l'eau de la pyrite pendant 22 j vieillissement à l'eau de la spharelite pdt 19j Al2O3 SnCl4(dmso)2 CB graphite (contamination de l'oxygene) H2O Zeolite ZSM-5 ZSM-5 vieillissement à l'air de la spharelite pdt 220j101 202 202 195 89 60 138 157 157 191 191 186 186 190 118 102 244 128 128 128 223 13 13 13 89 89 165 195 195 111 89 207 207 196 89 64 89 89 89 14 195 226 156 191 155 8911 532.3 532.3 532.3 532.3 532.3 532.3 532.3 532.3 532.3 532.3 532.3 532.3 532.4 532.4 532.4 532.4 532.4 532.4 532.4 532.4 532.4 532.4 532.45 532.45 532.45 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.5 532.6 532.6 532.6 532.6 532.6 532.6 532.65O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sHydrogen chemical bond in H4daaen O-C (Polyethylene glycol) HgCl2(dmso) AlCl3(dmso)6 Si-C (contamination de l'oxygène) Cr Ox in 316 L alloy dipped in physiological serum &corrosion products& after fretted in blood P-O-Cu utilisation de l'acide nitrique plasma: O2/Ar/NH3 plasma: O2/NH3 Oxygen in a Si-O-Si environment poly(CH2CHOH) poly (methyl methacrylate) CaOC=O dans PMDA T=25°C OH Fe2(SO4)3 vieillissement à l'air de la chalcopyrite pdt 3 mn 30 mn de traitement plasma oxygène du graphite plasma: Ar/NH3 (O2)2- peroxo- species purely siliceous sodalite zeolite ZSM.5 vieillissement à l'air de la chalcopyrite pdt 40mn EuO of coordinated water in [Eu(H2daaen)] EuO of coordinated water in [CuEu(daaen)] CsClO4 PVA (contamination de l'oxygene) O-C O ds carbonyl ds PMDA-ODA N Ox, 316 L alloy fretted (30 min) in blood serum Metal salt NiCl2 in 316 L alloy H2O H2O FeSO4 7H2O vieillissement à l'air de la chalcopyrite pdt 34j PO- for xAL2O3.(1-x)NaPO3 when x=0.05 PO- for xAL2O3.(1-x)NaPO3 when x=0.10 eau adsorbée O-C Oads ( 800°C-air+ O2-10min ) quartz et silica C-OH,C=O,O-C-O ou COOR ds PE-Ar-PFBBr SiO2166 226 195 195 226 207 207 196 251 122 122 213 150 111 135 131 188 89 89 122 122 159 191 191 89 166 166 111 226 104 130 207 207 87 84 89 89 128 128 197 43 78 249 232 48 19112 532.65 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.7 532.72 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.8 532.85 532.88 532.9 532.9 532.9 532.9 532.9 532.9 532.9 532.9 532.9 533 533O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sSiO2 W/TiN/Si (mélange WO2 et WO3) PEG (contamination de l'oxygene) -C=O du C3 ( i ) -C=O du C4 ( t ) -C=O du C16 ( H-D) SiO2 SiO2 ( gel de silice ) NiOads ( 10puis-6 torr) NiOads ( air 15min ) NiOads ( 250°C -1h ) structure W/TiN/Si (liaison W-O) WO2 et WO3 N Ox in 316 L alloy dipped in blood serum 1h Metal salt CrCl3 in 316 L alloy ds PE-Ar(Na+) fluoration avec ClF3 sur fibre C320.00A utilisation du nitrate de sodium (pH=7) Al2O3 KClO4 Interface TiN/SiO2 (=& SiO2) -C=O du C1 -C=O du C2 -C=O du C4 ( n) -C=O du C4 ( i ) -C=O du C18 ( n) B2O3 interface TiN/SiO2 après bomb (750 min) TiN pur Si utilisation du nitrate de sodium (pH=0,9) C-OH et/ou C-O-C plasma: O2/Ar Co foil polishing + water immersion/63h PO- for xAL2O3.(1-x)NaPO3 when x=0.15 O (plasma) Al(OH)0,7F2,3 H2O SiO2 gel gels de silice H2O (adsorbé) -C=O du C10 ( n ) SiO2(silica) O ds H2O ad fibre Torayca Co foil polishing + water immersion/24h -C=O du C12 ( n ) H2O -304 SS-155 148 226 98 98 98 157 157 78 78 78 148 207 207 48 117 251 172 150 148 98 98 98 98 98 157 148 155 251 174 122 101 128 50 36 150 111 60 60 98 191 1 117 101 98 13813 533 533 533 533 533 533.1 533.1 533.1 533.1 533.1 533.1 533.1 533.1 533.2 533.2 533.2 533.2 533.2 533.2 533.2 533.2 533.2 533.2 533.2 533.3 533.3 533.3 533.3 533.4 533.4 533.4 533.5 533.5 533.5 533.5 533.5 533.6 533.6 533.6 533.6 533.6 533.6 533.6 533.6 533.6 533.7O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sO-C in the TiN coatings before erosion O-Ti in the TiN coatings after erosion O-Ti in the TiN/Si interface H2O with a sample immersed in a 60°C solution H2O with a sample immersed in a room t° solution Al(OH)3 H2O -C=O du C8 ( E-H) fluoration avec F2 sur fibre Torayca P-O-P utilisation du nitrate de sodium (pH=11,9) C-OH et/ou C-O-C Ph*-O-(C=O*)-O-Ph, O* de Dimetyl Carbonate. Et2O C=O (PET) -C=O du CH3COOCH2CH(CH3)2 Co ds PE-Ar-TFE fluoration avec F2 sur fibre C320.00A P-O-P H2O CH3-O-C=O*-CH-(CH2-CH2-CO=O-CH3)2, O* de Polymet. Acry (CH3-CH2)2-O*, O* de Diethyl Ether. (CH3)2-C=O*, O* d' Acetone. Al(OH)3 C-O -C=O du HCOOCH2CH3 O=C-O O-C (PETP film) P2O5 ( O périphérique ) PE après 5 min d'expo au plasma nitrogène PhOCOOPh -C=O du CH3COOCH(CH3)2 P2O5 ds P2O5 (poudre) (liaison P-O-P) utilisation de l'hydroxide de sodium (CH3-CF2-CF2-CF2-CH2O)2-C=O*, O* de Polycarbonate Fluo SO4(2-) -pyrite n°1-C-O- du CH3OH -C-O- du CH3CH2OH C-O- du CH3CH2OCH2CH3 -C=O du CH3COCH3 -C=O du CH3COOCH2CH3 -C=O du CH3COCH2COOCH2CH3 N Ox fretted (5V for 5 min) in blood serum ds PE-Ar-PFB Co(CO)643 43 43 11 11 175 157 98 117 196 251 174 26 111 88 97 45 48 117 196 118 26 26 26 111 56 97 158 56 157 48 111 97 168 251 26 163 97 97 97 97 97 97 207 48 15014 533.7 533.7 533.7 533.7 533.7 533.7 533.8 533.9 533.9 533.9 533.9 533.9 533.9 534 534 534 534 534 534 534 534 534.1 534.2 534.2 534.3 534.3 534.3 534.4 534.4 534.4 534.4 534.4 534.4 534.4 534.4 534.4 534.5 534.5 534.5 534.5 534.6 534.8 534.9 535 535 535.2O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1sSO4(2-) -pyrite n°2P2O5 ds (MoO3)z(P2O5)(1-z) av z=0,65 (liai P-O-P) P2O5 ds (MoO3)z(P2O5)(1-z) av z=0,70 (liai P-O-P) P2O5 ds (MoO3)z(P2O5)(1-z) av z=0,74 (liai P-O-P) C-O-C (carbones arom) dans ODA 25°C C*H3OH, C* d'Methanol. O-C-Al (PET : 7x10puis15 at d'AL/cm2) poly (methyl methacrylate) O ds ether ds PMDA-ODA ds PE-Ar-TFAA fluoration avec F2 sur fibre C320.00A one bridging atom in case of P2O5 Al(OH)3 -C-O du C4 ( i ) H2O O2° ads Oxychloride bridging oxygen (POP) for xAL2O3.(1-x)NaPO3 when x=0 POP for xAL2O3.(1-x)NaPO3 when x=0.05 POP for xAL2O3.(1-x)NaPO3 when x=0.10 POP for xAL2O3.(1-x)NaPO3 when x=0.15 -C-O du C3 ( i ) -C-O du C16 ( H-D) -C-O du C18 ( n ) -C-O du C1 -C-O du C2 -C-O du C4 ( n ) Cr(CO)6 -C-O- du CH3COOCH2CH3 -C-O- du CH3COOCH2CH(CH3)2 -C-O- du CH3COCH2COOCH2CH3 -C-O du C10 ( n ) -C-Odu C12 ( n ) ds PE-Ar ds PE-Ar-PFPH PE-Ar-TFAA (Na+) av spectro DUPONT 650B -C-O- du HCOOCH2CH3 -C-O- du CH3COOCH(CH3)2 -C-O du C4 (t ) -C-Odu C8 ( C- H) CH3-O*-C=O-CH-(CH2-CH2-CO=O-CH3)2, O* de Polymet. Acry Ph*-O-(C=O*)-O-Ph, O* de Dimetyl Carbonate. PhOCOOPh NO ( + delta ) ads Clusters OH/H2O isolés électriquements (CH3-CF2-CF2-CF2-CH2O*)2-C=O, O* de Polycarbonate Fluo163 168 168 168 131 26 56 111 130 48 117 217 172 98 186 155 118 128 128 128 128 98 98 98 98 98 98 111 97 97 97 98 98 48 48 48 97 97 98 98 26 26 111 76 239 2615 535.4 535.4 535.5 535.8 536 536.2 536.7 536.7 537.2 537.7 537.9 537.9 537.9 538.09 538.1 538.2 538.3 538.39 538.4 538.5 538.5 538.56 538.58 538.6 538.6 538.6 538.6 538.6 538.63 538.7 538.7 538.7 538.72 538.8 538.81 539.06 539.1 539.3 539.5 539.8 539.9 540 541.3 541.9 542.6 543.1O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1s O1ssatellite -pyrite n°2O chimisorbé et/ou H2O adsorbée satellites -pyrite n°1O et/ou H2O adsorbée no double bonded in case of Na-phosphate glass one non bridging atom in case of Na-phosphate glass Fe2O4,MnO,TiO2 'fume particules' satellite -pyrite n°2satellites -pyrite n°1silicates,TiO2 'washed-fume particules' (CH3)2CO (CH3)CO(C2H5) C6H5CHO (C2H5)2O, ionization energy (C2H5)2O one bridging atom in case of Na-phosphate glass silicates 'fume particules' t-C4H9OH, ionization energy t-C4H9OH C3H6O n-C4H8O i-C3H7OH, ionization energy (CH3)2O, ionization energy n-C8H17OH i-C3H7OH (CH3)2O C2H4O (CH3)O(C2H5) n-C8H17/OH, ionization energy n-C3H7OH C6H5CH2OH n-C4H9OH n-C3H17OH C2H5OH C2H5OH, ionization energy CH3OH, ionization energy CH3OH C6H5OH CH2O no double bonded in case of Sr-phosphate glass H2O one non bridging atom in case of Sr-phosphate glass CO2 one bridging atom in case of Sr-phosphate glass Co élément naturel163 174 163 174 217 217 25 163 163 25 231 231 231 38 231 217 25 38 231 231 231 38 38 231 231 231 231 231 38 231 231 231 38 231 38 38 231 231 231 217 231 217 231 217 231 14716 O2s 的电子结合能: Energy (eV) 22.9 23.1 23.1 23.1 23.57 23.57 23.57 24.04 24.04 24.04 24.09 24.09 24.09 24.16 24.16 24.22 24.22 24.22 24.36 24.7 24.7 24.7 24.7 25.35 27.53 28.12 29.91 30.5 33.16 33.21 Element O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s O2s Chemical bonding Al2O3 gamma Al2O3 alpha Al2O3 alpha corrundum Al2O3 alpha Al2O3 gamma Al2O3 gamma Al2O3 gamma AlOOH beta Diaspore AlOOH beta Diaspore AlOOH beta Diaspore AlOOH gamma boehmite AlOOH gamma boehmite AlOOH gamma boehmite Al(OH)3 nordstrandite Al(OH)3 nordstrandite Al(OH)3 gibbsite Al(OH)3 alpha gibbsite Al(OH)3 gibbsite AlPO4 Al(OH)3 bayerite Al(OH)3 beta bayerite Al(OH)3 nordstrandite Al(OH)3 beta bayerite Al(PO3)3 O boehmite (AlO(OH) gamma) (treated at 473K) O boehmite (AlO(OH) gamma) (treated at 393K) OH boehmite (AlO(OH) gamma) (treated at 473K) OH boehmite (AlO(OH) gamma) (treated at 393K) H2O boehmite (AlO(OH) gamma) (treated at 473K) H2O boehmite (AlO(OH) gamma) (treated at 393K) Ref 107 123 66 203 123 107 203 123 67 203 123 32 203 123 134 123 108 203 123 123 30 203 203 123 33 33 33 33 33 3317
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