Electron distribution in the xenon fluorides and xenon oxide tetrafluoride by ESCA and evidence for orbital independence in the xenon-fluorine bonding
Electron distribution in the xenon fluorides and xenon oxide tetrafluoride by ESCA and evidence for orbital independence in the xenon-fluorine bonding
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ESCA 得出的氟化氙和四氟化氙中的电子分布以及氙-氟键中轨道独立性的证据
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发表时间:
1973
期刊:
影响因子:
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通讯作者:
N. Bartlett
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作者:
T. Carroll;R. Shaw;T. Thomas;C. Kindle;N. Bartlett
: We have measured fluorine 1s, oxygen 1s, and xenon 3d electron binding energies in the compounds Xe, XeF2, XeF4, XeF6, XeOFh and F2. The absolute binding energy for 3d,;, in Xe is 676.44 (5) eV and for 1s in F2 is 696.71 (5) eV. Shifts of xenon 3do;, binding energies (in electron volts) relative to that in xenon are XeF2, 2.87 (2); XeF4, 5.41 (2); XeF 6, 7.64 (3); XeOF4, 7.07 (2); in good agreement with those measured elsewhere. The fluorine 1s binding energies relative to F2 are XeF2, -5.48 (4); XeF4, -4.60 (5); XeF6, -3.38 (5); XeOF4, -3.62 (4). The oxygen 1s binding energy in XeOF4 is -3.29 (4) eV less than the centroid of the 1s binding energies in 02. The measured shifts are less than half those predicted by ab initio calculations. We have used a point charge model with these data to assign charges to the atoms in the molecules. For all of the molecules the charge on the fluorine in XeOF4, by methods (Mossbauer a ready explanation for the smallness of the charge we have derived or for its independence of the number of fluorines. these are evidence for extensive back donation of charge from the fluorines to the xenons via 1r bonds and for orbital independence in the xenon-fluorine bonding. The of oxygen charge to fluorine charge in XeOF