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Titlebook: Energetics of Organometallic Species; J. A. Martinho Simões Book 1992 Springer Science+Business Media Dordrecht 1992 Silane.chemistry.comb

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https://doi.org/10.1007/978-3-531-19691-6he C-H activation/η.-coordination equilibria. We have begun to examine the reactions of rhodium isonitrile pyrazolylborates for alkane and arene C-H bond activation. A new, labile, carbodiimide precursor has been developed for these studies.
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1389-2185 ontents correspond to the seventeen lectures delivered at the NATO ASI Energetics of Organometallic Species (Curia, Portugal, September 1991), plus three other invited contributions from participants of that summer school. These papers reflect a variety of research interests, and discuss results obt
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Walzer: Vorstellungen zur Rolle der Fraupproach. Addition of vaporization and fusion enthalpies affords a sublimation enthalpy in good agreement with experiment. The standard error of this estimation technique is 2.6 kcal/mole (10.9 kJ/mole) and compares with a standard experimental error of 1.74 kcal/mole (7.28 kJ/mole) obtained from a statistical analysis of literature data.
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,Tag: Vertrauen – Wie man sicher landet,and decrease down a column in the periodic table. The periodic trends and substituent effects are discussed in view of the dependence of the acidity on the metal—hydrogen bond enthalpies and electron affinities of the resulting metal radicals. Solvation energies are also discussed.
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Bonding and Solvation Energetics for Organometallic Gas-Phase Molecules and Ions: Experimental Apprs involving organometallic species are presented. Thermodynamic insights that arise from the experimental results are described, including applications to bond energetics, solvation, substituent effects, redox entropies, and thermodynamic effects in electron-transfer kinetics.
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Bond Strengths in Transition Metal Carbonyl Anions,. The bond energies can be combined with other thermochemistry to give neutral metal-carbonyl bond strengths, ionization potentials, metal-alkene bond energies, and limits on other metal-ligand bond strengths. The 14- and 16-electron metal carbonyl anions display systematically weaker bonds than the 13-, 15-, and 17-electron species.
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