1998
DOI: 10.1021/ja972301n
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Metallacyclobutane and Cyclopropyl Species on Cu(111) and Cu(110)

Abstract: Low-energy electron bombardment of cyclopropane submonolayers was used to prepare cyclopropyl and metallacyclobutane species on Cu(110) and Cu(111) surfaces. The thermal chemistry of both species was monitored over the 90−450 K range by taking high-resolution electron energy loss (HREELS) and temperature-programmed desorption (TPD) measurements. Cyclization of the metallacyclobutane species, to eliminate cyclopropane, was found to occur at 205 K. The metallacyclobutane species was characterized by CH stretchin… Show more

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Cited by 15 publications
(15 citation statements)
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“…The latter have been reported on copper substrates. 20 The downward energy shift associated with the C-H stretching region is consistent with alterations that increase the sp 3 hybrid character of the bonding at the carbon atoms, e.g., increased C-Pt coupling and larger C-C-C bond angle.…”
Section: Resultssupporting
confidence: 59%
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“…The latter have been reported on copper substrates. 20 The downward energy shift associated with the C-H stretching region is consistent with alterations that increase the sp 3 hybrid character of the bonding at the carbon atoms, e.g., increased C-Pt coupling and larger C-C-C bond angle.…”
Section: Resultssupporting
confidence: 59%
“…Ring modes from cyclopropane, cyclopropyl fragments, and C 3 metallacycles do not vary greatly; on Cu, the asymmetric ring deformation at 1034 cm -1 shows a shift to 967 cm -1 , the symmetric ring deformation shifts from 872 to 838 cm -1 , and the ring breathing mode shifts from 1179 to 1177 cm -1 . 37,20 In our case, the intensity that remains in the regions expected for metallacyclobutane ring modes, e.g., 700-1300 cm -1 , is ambiguous, since other intermediates, e.g., η 3 -allyl, have numerous modes that contribute to this region. While there is some intensity at 780 cm -1 , which may have shifted from the strong 840 cm -1 band of c-C 3 H 6 , it is clear that an intact metallacycle fragment is not the dominant product of electron irradiation.…”
Section: Discussionmentioning
confidence: 56%
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“…We have used electron irradiation of adsorbed c-C 3 H 6 at 100 K to synthesize C 3 fragments and have evidence for C 3 H 6 metallacycles based on vibrational spectroscopy and surface reaction processes. A trimethylene species, metallacyclobutane or metallacyclopentane, is widely proposed to account for both hydrogenation and hydrogenolysis products from reactions of cyclopropane over supported metal catalysts. ClC 3 H 6 I was chosen for study since it provides an alternative route to C 3 intermediates with potential for forming cyclic intermediates and possesses distinguishable halogens.…”
Section: Introductionmentioning
confidence: 99%