Ligand-induced haptotropic rearrangements in bis(indenyl)zirconium sandwich complexes.

J Am Chem Soc

Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853, USA.

Published: July 2005

Addition of principally sigma-donating ligands such as THF, chelating diethers, or 1,2-bis(dimethyl)phosphinoethane to eta(9),eta(5)-bis(indenyl)zirconium sandwich complexes, (eta(9)-C(9)H(5)-1,3-R(2))(eta(5)-C(9)H(5)-1,3-R(2))Zr (R = alkyl or silyl), induces haptotropic rearrangement to afford (eta(6)-C(9)H(5)-1,3-R(2))(eta(5)-C(9)H(5)-1,3-R(2))ZrL adducts. Examples where L = THF and DME have been characterized by X-ray diffraction and revealed significant buckling of the eta(6) benzo ring, consistent with reduction of the arene, and highlight the importance of the zirconium(IV) canonical form. For the THF-induced haptotropic rearrangements, the thermodynamic driving force for ring migration has been measured as a function of indenyl substituent and demonstrates silylated sandwiches favor THF coordination and the eta(6),eta(5) bonding motif over their alkylated counterparts. In the case of chelating diethers, measurement of the corresponding equilibrium constants establish more stable eta(6),eta(5) adducts with five- over four-membered chelates and with smaller oxygen and carbon backbone substituents. Kinetic studies on both THF and DME addition to (eta(9)-C(9)H(5)-1,3-(SiMe(3))(2))(eta(5)-C(9)H(5)-1,3-(SiMe(3))(2))Zr established a first-order dependence on the incoming ligand, consistent with a mechanism involving direct attack of the incoming nucleophile on the eta(9),eta(5) sandwich. These results further highlight the ability of the indenyl ligand to smoothly adjust hapticity to meet the electronic requirements of the metal center.

Download full-text PDF

Source
http://dx.doi.org/10.1021/ja052033qDOI Listing

Publication Analysis

Top Keywords

haptotropic rearrangements
8
sandwich complexes
8
chelating diethers
8
thf dme
8
ligand-induced haptotropic
4
rearrangements bisindenylzirconium
4
bisindenylzirconium sandwich
4
complexes addition
4
addition principally
4
principally sigma-donating
4

Similar Publications

Dinuclear iridium complexes ligated by lithium-ion endohedral fullerene Li@C.

Chem Commun (Camb)

January 2025

Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.

The diiridium complexes of lithium-ion endohedral fullerene Li@C were synthesised in high yields. X-ray crystallography revealed the η:η-coordination of Li@C and the disorder of the Li ion over two sites close to the coordinated carbons. C NMR study suggested the presence of dynamic behaviour haptotropic rearrangements.

View Article and Find Full Text PDF

On Haptotropic Rearrangements of Diphosphene and Diarsene Ligands in Titanium Complexes.

Chemistry

May 2024

Leibniz-Institut für Katalyse e.V., Albert-Einstein-Straße 3a, 18059, Rostock, Germany.

Dipnictenes of the type RE=ER (E=P, As, Sb, Bi) are the isovalence electronic heavier analogs of alkenes. Although diphosphenes and dipnictenes in general show a variety of binding modes in metal complexes, little is known about haptotropic shift reactions involving these ligands. Herein, we report an unprecedented η to η rearrangement of the dipnictene ligands in titanocene complexes of the type CpTi(PnAr) (Pn=P, As; Ar=2,4,6-Me-CH, Mes; 2,6-iPr-CH, Dip; 2,4,6-iPr-CH, Tip), initiated by Lewis basic ligands (L=MeCN, PMe, AdNC, CO).

View Article and Find Full Text PDF

Although diphosphene transition metal complexes are known to undergo E to Z isomerization upon irradiation with UV light, their potential for photoswitching has remained poorly explored. In this study, we present diphosphene complexes capable of reversible photoisomerizations through haptotropic rearrangements. The compounds [(2-κ P,κ C)Mo(CO) ][OTf] (3 a[OTf]), [(2-κ P,κ C)Fe(CO)][OTf] (3 b[OTf]), and [(2-κ P)Fe(CO) ][OTf] (4[OTf]) were prepared using the triflate salt [(L )P=P(Dipp)][OTf] (2[OTf) as a precursor (L =4,5-dichloro-1,3-bis(2,6-diisiopropylphenyl)-imidazolin-2-yl; Dipp=2,6-diisiopropylphenyl, OTf=triflate).

View Article and Find Full Text PDF

The Indenyl Effect: Accelerated C-H Amidation of Arenes via Ind*Rh Nitrene Transfer Catalysis.

Angew Chem Int Ed Engl

June 2023

Department of Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Victoria, 3052, Australia.

Investigations into C-H amidation reactions catalysed by cationic half-sandwich d metal complexes revealed that the indenyl-derived catalyst [Ind*RhCl ] significantly accelerated the directed ortho C-H amidation of benzoyl silanes using 1,4,2-dioxazol-5-ones. Ring slippage involving a haptotropic η to η rearrangement of the indenyl complex proposedly enables ligand substitution at the metal centre to proceed via associative, rather than dissociative pathways, leading to significant rate and yield enhancements. Intriguingly, this phenomenon appears specific for C-H amidation reactions involving weakly coordinating carbonyl-based directing groups with no acceleration observed for the corresponding reactions involving strongly coordinating nitrogen-based directing groups.

View Article and Find Full Text PDF

The synthesis of a series of ferrocenylvinylketenes as stable η-[Fe(CO)] complexes (3a-f) was successfully accomplished through the reaction of η-[Fe(CO)] complexes under mild carbonylation conditions. The reactivity of 3a-f under thermal conditions afforded the unexpected formation of a novel family of (μ,η-allyl-η-oxapentadienyl)diiron pentacarbonyl complexes 5a-f proposed to be formed by a sequence metathesis-haptotropic rearrangement between the starting η-vinylketene iron(0) complex 3 and a η-vinylcarbene iron(0) complex trapped after a reversible carbonylation process favored by the thermal conditions. An electron density distribution analysis (EDD) of 5e using high-resolution X-ray diffraction data in combination with the DFT framework was performed to understand the electronic communication between the two iron fragments.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!