Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5425855 | Surface Science | 2007 | 10 Pages |
The interaction of ethyl vinyl ketone (EVK) with Si(1Â 1Â 1)-7Â ÃÂ 7 has been investigated using high-resolution electron energy loss spectroscopy (HREELS), X-ray photoelectron spectroscopy (XPS) and density functional theory (DFT) calculations. The disappearance of both stretching vibrations of CH2 (3099Â cmâ1) and CO (1684Â cmâ1) coupled with the appearance of new CC stretching mode (1660Â cmâ1) in the HREELS spectra of chemisorbed EVK clearly demonstrates the direct involvement of conjugated CC and CO bonds to form a SiC1H2C2HC3(C4H2C5H3)OSi surface species via [4Â +Â 2]-like cycloaddition in a highly selective manner. In addition, XPS studies show that the C1s binding energies of C1/C2 and C3 upon chemisorption display chemical downshifts of 0.8Â eV and 2.2Â eV, respectively, further confirming the proposed [4Â +Â 2]-like cycloaddition reaction for the EVK/Si(1Â 1Â 1)-7Â ÃÂ 7 system. DFT theoretical calculations suggest that the proposed [4Â +Â 2]-like cycloadduct is thermodynamically most favorable.