Use of heterodifunctional ligands to bridge “early” and “late” transition metals. Construction and chemistry of complexes containing indirectly linked cobalt carbonyl and zirconocene units
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Biochemistry
Reference58 articles.
1. Synthesis of (C6H5)2PCH2Si(CH3)2C5H4Li: a novel heterodifunctional system for the directed linkage of dissimilar transition metal fragments
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4. Phosphinomethyl complexes of zirconium: preparation, complexation capabilities, and structural and chemical characteristics
5. Synthesis, structure determinations, and reduction of (C5H5)2Zr(Cl)CH2PMe2 and (C5Me5)2Zr(Cl)CH2PPh2
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2. Chemistry of Metal−Metal-Bonded Early−Late Heterobimetallics: Cooperative Reactions of Functional Groups at a Persistent Organometallic Zr−Rh Framework;Organometallics;2004-12-16
3. Silicon based phosphines with P_Si_P, P_C_Si_C_P and P_O_Si_O_P linkages and their coordination chemistry and catalytic applications;Coordination Chemistry Reviews;2003-06
4. Structural Characterization of Heterodimetallic Zr/Pd and Zr/Rh Catalyst Precursors Containing the C5H4PPh2 Ligand;Organometallics;2000-03-09
5. ((Diaryl- and Dialkylphosphino)alkyl)cyclopentadienyl Ligands and Their Use in the Preparation of Heterobinuclear Ti/Mo and Zr/Mo Complexes;Organometallics;1999-07-30
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