Isolated CH stretching frequencies, methyl group geometry and dissociation energies in dimethyl zinc, cadmium and mercury
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference22 articles.
1. Electron Diffraction Study of Dimethylmercury
2. HIGH RESOLUTION RAMAN SPECTROSCOPY OF GASES: XIII. ROTATIONAL SPECTRA AND STRUCTURES OF THE ZINC-, CADMIUM-, AND MERCURY-DIMETHYL MOLECULES
3. CH stretching frequencies, bond lengths and dissociation energies
4. The infrared spectrum of chd2cn and the ground state geometry of methyl cyanide
5. A correlation between isolated CH stretching frequencies and HCH bond angles in methyl groups
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1. References;Vibrational Spectra of Organometallics;2018-12-07
2. Synthesis and structural characterisation of [TpMe2Nb(CH3)2(CH3CCCH3)] and [TpMe2NbCl(CH3)(CH3CCCH3)]: is there an intrinsic α-agostic interaction in alkyl complexes of the [TpMe2Nb(alkyne)] moiety?;New Journal of Chemistry;2006
3. Mechanism and Ligand-Transfer Selectivity of 1,2-Addition of Organozincate Complexes to Aldehyde;Journal of the American Chemical Society;2004-08-06
4. Vibrational properties and matrix photochemistry of trimethyldioxorhenium(vii), (CH3)3ReO2Electronic supplementary information (ESI) available: further details concerning the vibrational calculations and cartesion coordinates of the optimised geometries. See http://www.rsc.org/suppdata/dt/b2/b204238j/;Journal of the Chemical Society, Dalton Transactions;2002-08-07
5. Correlation of Reactivities of Organocuprate(I) and Zincate(II) with d-Orbital Energies of Ate Complexes;Tetrahedron;2000-04
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