2005Applied Organometallic ChemistryRequires access

Raman spectroscopic evidence for bent metallocene fragments [M(Cp)2]2+

Martin Pavlišta, Radim Bína, Zdeněk Černošek, Milan Erben, Jaromı́r Vinklárek, Ivan Pavlík

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Abstract

Raman spectroscopy was used as a very simple and convenient tool for the detection of bent metallocene fragments [M(Cp)2]2+ (Cp = η5-cyclopentadienyl ring; M = early transition metal) both in solid state and in solution. The rules were formulated and tested on the group of titanium complexes containing one or two η5-bonded cyclopentadienyl rings, as well as on a series of model α-amino acid complexes of antitumour active titanocene and vanadocene dichlorides. Copyright © 2005 John Wiley & Sons, Ltd.

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What this paper is about

Raman spectroscopy was used as a very simple and convenient tool for the detection of bent metallocene fragments [M(Cp)2]2+ (Cp = η5-cyclopentadienyl ring; M = early transition metal) both in solid state and in solution. The rules were formulated and tested on the group of titanium complexes containing one or two η5-bonded cyclopentadienyl rings, as well as on a series of model α-amino acid complexes of antitumour active titanocene and vanadocene dichlorides. Copyright © 2005 John Wiley & Sons, Ltd.

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Available abstract

Raman spectroscopy was used as a very simple and convenient tool for the detection of bent metallocene fragments [M(Cp)2]2+ (Cp = η5-cyclopentadienyl ring; M = early transition metal) both in solid state and in solution. The rules were formulated and tested on the group of titanium complexes containing one or two η5-bonded cyclopentadienyl rings, as well as on a series of model α-amino acid complexes of antitumour active titanocene and vanadocene dichlorides. Copyright © 2005 John Wiley & Sons, Ltd.

Key concepts: Chemistry, Metallocene, Raman spectroscopy, Bent molecular geometry, Stereochemistry, Crystallography, Organic chemistry, Polymerization

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