27 results on '"Cardaci, G."'
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2. 67Ga uptake at sites of heterotopic calcification.
3. Kinetics and mechanism of substitution of olefinic ligands by carbon monoxide in tetracarbonyl-π-olefiniron complexes.
4. The Role of Incomplete Auto-Antibodies in the Production of Experimental Haemolytic Anaemia Induced by Small Doses of Haemolytic Serum.
5. Kinetics and mechanism of the substitution of olefinic ligands by triphenylantimony in (π-monoolefin) tetracarbonyliron complexes.
6. ChemInform Abstract: Reactivity of Fe(CO)4(H)MPh3 (M: Si, Ge) and Mechanism of Substitution by Two-Electron-Donor Ligands: Implications for the Mechanism of Hydrosilylation of Olefins Catalyzed by Fe(CO)5.
7. ChemInform Abstract: Isocyanide Insertion Reaction of Alkyl Complexes of Iron(II).
8. Effect of oral magnesium supplementation on physical performance in healthy elderly women: A randomized-controlled trial.
9. Incremental value of 24-hour delayed imaging in 201Tl stress myocardial perfusion studies (MPS) with an 'early rest reinjection' protocol.
10. Optimized cervical spine bone SPET for detection of facet joint injury after whiplash injury.
11. Chemical reduction of some monosubstituted derivatives of (1–3-η-allyl)dicarbonylnitrosyliron
12. (η 2-Cinnamic)tetracarbonyliron acids. synthesis and acidity
13. Reaction of η 4-diene- and η 4-heterodiene-iron carbonyl complexes with 1,2-bis(diphenylphosphino)ethane: a route to dicarbonyl trisphosphine iron complexes
14. Polarographic behaviour of π-allylic complexes of transition metals : II. π-allyltricarbonylcobalt and some phosphinic derivatives
15. The mechanism of substitution of π-(PhCHCHCOR)Fe(CO) 3 complexes with PPh 3, AsPh 3 and SbPh 3
16. The mechanism of substitution of (π-olefin)iron tetracarbonyl complexes by triphenylphosphine: Solvent effects
17. Infrared spectrum and vibrational assignment of π-allyltricarbonylcobalt
18. Vibrational spectra of π-allyl-and π-allyl-d 5-dicarbonyl-nitrosyliron
19. Solvent effects on the kinetics of the monosubstitution reaction of Co(CO) 3NO with triphenylarsine and triphenylphosphine
20. Polarographic behaviour of π-allylic complexes of transition metals I. π-allylic dicarbonylnitrosyliron complexes
21. The kinetics of the monosubstitution reactions between phosphines and allyldicarbonylnitrosyliron
22. Dipole moments and internal rotation in 1,1′-dihaloferrocenes
23. Kinetics of disubstitution reactions with the substrate ligands of monosubstituted derivatives of Co(CO)3NO
24. Mechanism of the disubstitution reaction between monosubstituted complexes of Fe(CO) 2(NO) 2 and phosphine ligands
25. Kinetics of monosubstitution reactions of phosphane-, arsine- and stibine-ligands with CO(CO) 3NO.
26. Kinetics of disubstitution reactions of 1,2-bis(diphenylphosphino) ethane with monosubstituted derivatives of Co(CO) 3NO
27. ChemInform Abstract: Formation of a Methoxycarbonyl Group by Attack of Methanol on an Iron(II) Carbonyl Complex, Assisted by Intramolecular Proton Transfer: X-Ray Structure Determination of (Fe(CO)(PMe3)2(CNC6H11)(CO(OCH3))(C(CH3)=NHC6H11))-BPh4.
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