10 results on '"Simon Pelling"'
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2. Synthesis and fluxional behavior of protonated 1,3-diene complexes of ruthenium(0), osmium(0), rhodium(I), and iridium(I) containing 2,3-dimethylene-5,6,7,8-dibenzobicyclo[2.2.2]octane (ddbo, C18H14). Single-crystal x-ray study of the agostic complex [Ru(C18H15)(.eta.-C6H3Me3)]PF6
3. Dynamics of agostic complexes of the type C5R5(C2H4)M(CH2CH2-.mu.-H)+. Energy differences between and ancillary ligand control of agostic and terminal hydride structures
4. MULTISYMPLECTIC BRST
5. ChemInform Abstract: Dynamics of Agostic Complexes of the Type C5R5(C2H4)M(CH2CH2-μ-H)+. Energy Differences Between and Ancillary Ligand Control of Agostic and Terminal Hydride Structures
6. Protonation of dicyclopentadiene complexes of ruthenium(0), osmium(0), rhodium(I), and iridium(I). Single-crystal x-ray study of [Os(2,3,5-.eta.-C10H13)(.eta.-C6H3Me3-1,3,5)]PF6, a complex containing a osmium-hydrogen-carbon interaction
7. The synthesis of chloromethyl complexes of manganese, rhenium and ruthenium and the reactions of some chloromethyl complexes with triphenylphosphine
8. Haloalkyl complexes of the transition metals
9. ChemInform Abstract: HALOALKYL COMPLEXES OF THE TRANSITION METALS. PART 3. REACTIONS OF SOME CHLOROMETHYL AND METHOXYMETHYL COMPLEXES OF MOLYBDENUM, TUNGSTEN, MANGANESE, RHENIUM, IRON, AND RUTHENIUM WITH SOME TERTIARY PHOSPHINE AND RELATED LIGANDS
10. Haloalkyl complexes of the transition metals. Part 3. Reactions of some chloromethyl and methoxymethyl complexes of molybdenum, tungsten, manganese, rhenium, iron, and ruthenium with some tertiary phosphine and related ligands
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