Abstract In contrast to early transition metal complexes of d0 electron configuration, their main group metal analogues are usually poor catalysts for ethylene polymerisation due to their diminished tendency to insert ethylene into an M-R bond. Interestingly, we found that ring strain in the transition structure of the insertion reaction is most likely responsible to set the ease of the process. Ethylene insertion into an M-R bond requires a four-membered ring transition structure. Strain in a four-membered ring was shown to be dependent on the metal identity (transition or main group/d or p block). For early transition metals, due to the presence of empty valence d orbitals, the strain is negligible but, for main group metals, the strain i...
Two case histories are reported where noncovalent interactions play an important role in olefin poly...
Quantitative agreement between experimentally determined M–C bond dissociation energies (BDE) and D...
A combined experimental and theoretical study elucidates how Ni···O neighboring group interactions d...
In contrast to early transition metal complexes of d\(^0\) electron configuration, their main group ...
Ethylene coordination and insertion into the transition metal−methyl bond have been investigated usi...
Available exptl. data for several metallocenes indicate that the ethene/propene copolymn. ratio rc ...
0metal-alkyl complexes (M = Ti, Zr, and Hf) show specific activity and selectivity in olefin polymer...
The coordination-insertion random copolymerization of polar and nonpolar olefins holds great potenti...
Metallocenes, whether using a cocatalyst or not, act as catalysts in ethylene polymerization. The po...
Highly accurate (extrapolated CCSD(T)/aug-cc-pwCVQZ) reference energies have been calculated for ole...
We have carried out a systematic computational study on olefin polymerization by metallocene/borate ...
The origin of variation in the activity of Ziegler-Natta (ZN) catalysts having chloride and alkoxy l...
International audienceC–H bond activation via σ-bond metathesis is typically observed with transitio...
A combined experimental and theoretical study elucidates how Ni center dot center dot center dot O n...
Two case histories are reported where noncovalent interactions play an important role in olefin poly...
Quantitative agreement between experimentally determined M–C bond dissociation energies (BDE) and D...
A combined experimental and theoretical study elucidates how Ni···O neighboring group interactions d...
In contrast to early transition metal complexes of d\(^0\) electron configuration, their main group ...
Ethylene coordination and insertion into the transition metal−methyl bond have been investigated usi...
Available exptl. data for several metallocenes indicate that the ethene/propene copolymn. ratio rc ...
0metal-alkyl complexes (M = Ti, Zr, and Hf) show specific activity and selectivity in olefin polymer...
The coordination-insertion random copolymerization of polar and nonpolar olefins holds great potenti...
Metallocenes, whether using a cocatalyst or not, act as catalysts in ethylene polymerization. The po...
Highly accurate (extrapolated CCSD(T)/aug-cc-pwCVQZ) reference energies have been calculated for ole...
We have carried out a systematic computational study on olefin polymerization by metallocene/borate ...
The origin of variation in the activity of Ziegler-Natta (ZN) catalysts having chloride and alkoxy l...
International audienceC–H bond activation via σ-bond metathesis is typically observed with transitio...
A combined experimental and theoretical study elucidates how Ni center dot center dot center dot O n...
Two case histories are reported where noncovalent interactions play an important role in olefin poly...
Quantitative agreement between experimentally determined M–C bond dissociation energies (BDE) and D...
A combined experimental and theoretical study elucidates how Ni···O neighboring group interactions d...