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Author:Bancroft, G.M.

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16 matching references were found.

Bancroft, G.M.; Reichert, C.; Westmore, J.B., Mass spectral studies of metal chelates. II. Mass spectra and appearance potentials of acetylacetonates of trivalent metals of the first transition series, Inorg. Chem., 1968, 7, 870. [all data]

Bancroft, G.M.; Reichert, C.; Westmore, J.B.; Gesser, H.D., Mass spectral studies of metal chelates. III. Mass spectra and appearance potentials of substituted acetylacetonates of trivalent chromium. Comparison with other trivalent metals of the first transition series, Inorg. Chem., 1969, 8, 474. [all data]

Reichert, C.; Bancroft, G.M.; Westmore, J.B., Mass spectral studies of metal chelates. V. Mass spectra and appearance potentials of some fluorine-substituted acetylacetonates, Can. J. Chem., 1970, 48, 1362. [all data]

Bancroft, G.M.; Coatsworth, L.L.; Creber, D.K.; Tse, J., High resolution gas phase photoelectron spectra of core d levels using He II radiation, Phys. Scr., 1977, 16, 217. [all data]

Creber, D.K.; Bancroft, G.M., Photoelectron studies of dialkyl group 2B compounds: Ligand field splittings intensity variations with photon energy, Inorg. Chem., 1980, 19, 643. [all data]

Bancroft, G.M.; Chan, T.; Puddephatt, R.J.; Tse, J.S., Role of the Au 5d orbitals in bonding: Photoelectron spectra of [AuMe(PMe3)], Inorg. Chem., 1982, 21, 2946. [all data]

Bancroft, G.M.; Pellach, E.; Sattelberger, A.P.; McLaughlin, K.W., The photoelectron spectrum of quadruply bonded W2(O2CCF3)4, J. Chem. Soc., Chem. Commun., 1982, 752. [all data]

Bancroft, G.M.; Pellach, E.; Tse, J.S., High resolution HeI and HeII photoelectron spectra of TiCl4, SnCl4, and (CH3)4Sn, Inorg. Chem., 1982, 21, 2950. [all data]

Ikuta, S.; Kebarle, P.; Bancroft, G.M.; Chan, T.; Puddephatt, R.J., Basicities of methyl-, methylphenyl-, and phenylphosphines in the gas phase, J. Am. Chem. Soc., 1982, 104, 5899. [all data]

Bancroft, G.M.; Bristow, D.J., High resolution HeI and HeII photoelectron spectra of the thallium halides: Valence bands and Tl 5d ligand field splittings, Can. J. Chem., 1983, 61, 2669. [all data]

Bancroft, G.M.; Yates, B.W.; Tan, K.H.; Coatsworth, L.L., High resolution gas phase photoelectron spectra using synchrotron radiation. selective enhancement of the I 5p cross section in CF3I due to photoexcitation of I 4d electrons, J. Chem. Soc., Chem. Commun., 1984, 1613. [all data]

Yang, D.-S.; Bancroft, G.M.; Bozek, J.D.; Puddephatt, R.J.; Tse, J.S., Assignment of the Valence Molecular Orbitals of cis-[PtR2L2] Complexes: UV photoelectron spectra and SCF-MS-X«alpha» Calculations, Inorg. Chem., 1989, 28, 1. [all data]

Yang, D.S.; Bancroft, G.M.; Puddephatt, R.J.; Tan, K.H.; Cutler, J.N.; Bozek, J.D., Assignment of the valence molecular orbitals of CpPtMe3 and Me2Pt(COD) using variable-energy photoelectron spectra, Inorg. Chem., 1990, 29, 4956. [all data]

Bancroft, G.M.; Creber, D.K.; Ratner, M.A.; Moskowitz, J.W.; Topiol, S., Valence band and Zn 3d energy levels in Me2Zn from photoelectron spectra and pseudopotential ab initio calculations: electric field gradients in gas phase Zn compounds, Chem. Phys. Lett., 1977, 50, 2, 233, https://doi.org/10.1016/0009-2614(77)80170-X . [all data]

Bancroft, G.M.; Malmquist, P.-A.; Svensson, S.; Basilier, E.; Gelius, U.; Siegbahn, K., Gas-phase ESCA studies of valence and core levels in xenon difluoride and xenon tetrafluoride, Inorg. Chem., 1978, 17, 6, 1595, https://doi.org/10.1021/ic50184a040 . [all data]

Yates, B.W.; Tan, K.H.; Bancroft, G.M.; Coatsworth, L.L.; Tse, J.S.; Schrobilgen, G.J., Photoelectron study of the valence level cross sections of XeF2 from 21 to 50 eV photon energy, J. Chem. Phys., 1986, 84, 7, 3603, https://doi.org/10.1063/1.450196 . [all data]