14 results on '"Fraanje, Jan"'
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2. New chiral phosphine-phosphite ligands in the enantioselective palladium-catalyzed allylic alkylation
3. The mechanism for palladium catalyzed carbonylation of cinnamyl chloride
4. Synthesis and characterisation of bite angle-dependent (η 1-allyl)Rh and (η 3-allyl)Rh complexes bearing diphosphine ligands. Implications for nucleophilic substitution reactions
5. Crystal Structure of 2-Cholroanilinium Picrate
6. Synthesis and characterisation of bite angle-dependent (η1-allyl)Rh and (η3-allyl)Rh complexes bearing diphosphine ligands. Implications for nucleophilic substitution reactions
7. 5,5-Dimethyl-2-[6-methyl-2-(methylsulfanyl)pyrimidin-4-yloxy]-1,3,2-dioxaphosphorinane-2-thione
8. Intramolecular Photochemical Dioxenone−Alkene [2 + 2] Cycloadditions as an Approach to the Bicyclo[2.1.1]hexane Moiety of Solanoeclepin A
9. New Chiral Phosphine−Phosphite Ligands in the Enantioselective Palladium-Catalyzed Allylic Alkylation
10. Syntheses, structures and spectroscopic properties of a novel series of metalmetal bonded complexes Ru(E)(E′)(CO)2(iPrDAB): (E Br, E′ Mn(CO)5; E SnPh3, E′ Mn(CO)5, Re(CO)5, CO(CO)4; E Me, E′ Re(CO)5; E E′ Mn(CO)5, Re(CO)5; iPrDAB N,N′-diisopropyl-1,4-diaza-1,3-butadiene)
11. Coordination chemistry of 1,1′-bis(2-pyridyl)ferrocene in palladium(II) and platinum(II) complexes and reaction of (BPF)Pd(Me)Cl with CO. X-ray structure of (1,1′-bis(2-pyridyl)ferrocene)Pd(Me)Cl and (1,1′-bis(2-pyridyl)ferrocene)[PtCl2(CH2 CH2)]2
12. Synthesis and spectroscopic properties of Re(R)(CO)3(α-diimine) (R alkyl; α-diimine R′-pyCa, R′-DAB) complexes. Crystal structure of Re(Me) (CO)3 (iPr-DAB)
13. Coordination chemistry of 1,1′-bis(2-pyridyl)ferrocene in palladium(II) and platinum(II) complexes and reaction of (BPF)Pd(Me)Cl with CO. X-ray structure of (1,1′-bis(2-pyridyl)ferrocene)Pd(Me)Cl and (1,1′-bis(2-pyridyl)ferrocene)[PtCl 2(CH 2 CH 2)] 2
14. Synthesis and characterisation of bite angle-dependent (η1-allyl)Rh and (η3-allyl)Rh complexes bearing diphosphine ligands. Implications for nucleophilic substitution reactions.
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