Relative rates for the reaction of secondary alcohols carrying large aromatic moieties with silyl chlorides carrying equally large substituents have been determined in organic solvents. Introducing thoroughly matching pairs of big dispersion energy donor (DED) groups enhanced rate constants up to four times, notably depending on the hydrogen bond donor ability of the solvent. A linear correlation between computed dispersion energy contributions to the stability of the silyl ether products and experimental relative rate constants was found. These results indicate a cooperation between solvophobic effects and DED-groups in the kinetic control of silylation reactions
© 2018 Wiley Periodicals, Inc. The rate of Diels–Alder reaction of diene 9,10-bis(hydroxymethyl)anth...
International audienceThe replacement of polar O-H bonds in alcohols and phenols with the O-Si linka...
The combined use of a halogen bond (XB) donor with trimethylsilyl halide was found to be an efficien...
Relative rates for the reaction of secondary alcohols carrying large aromatic moieties with silyl ch...
This dissertation represents our preliminary mechanistic investigations on the silylation-based kine...
Reaction rates for the base-catalyzed silylation of primary, secondary, and tertiary alcohols depend...
The primary focus of this research is in expanding the knowledge and scope of the asymmetric silylat...
The substituent effect of different <i>p</i>-substituted triphenylsilyl chlorides on silylation-bas...
TBS protection of primary alcohol naphthalen-1-ylmethanol (<b>4a</b>) and secondary alcohol 1-(napht...
Rate constants for the reactions of the bis(p-dimethylaminophenyl)carbenium ion 1 with silyl enol et...
Time-resolved kinetic studies of silylene, SiH2, generated by laser flash photolysis of 1-silacyclop...
Alkoxysilanes and organoalkoxysilanes are primary materials in several industries, e.g. coating, ant...
The work contained herein focuses on the methodology and design of new reactions for the production ...
This dissertation focuses on studies of silylation-based kinetic resolution methodology developed by...
Time-resolved kinetic studies of silylene, SiH2, generated by laser flash photolysis of phenylsilane...
© 2018 Wiley Periodicals, Inc. The rate of Diels–Alder reaction of diene 9,10-bis(hydroxymethyl)anth...
International audienceThe replacement of polar O-H bonds in alcohols and phenols with the O-Si linka...
The combined use of a halogen bond (XB) donor with trimethylsilyl halide was found to be an efficien...
Relative rates for the reaction of secondary alcohols carrying large aromatic moieties with silyl ch...
This dissertation represents our preliminary mechanistic investigations on the silylation-based kine...
Reaction rates for the base-catalyzed silylation of primary, secondary, and tertiary alcohols depend...
The primary focus of this research is in expanding the knowledge and scope of the asymmetric silylat...
The substituent effect of different <i>p</i>-substituted triphenylsilyl chlorides on silylation-bas...
TBS protection of primary alcohol naphthalen-1-ylmethanol (<b>4a</b>) and secondary alcohol 1-(napht...
Rate constants for the reactions of the bis(p-dimethylaminophenyl)carbenium ion 1 with silyl enol et...
Time-resolved kinetic studies of silylene, SiH2, generated by laser flash photolysis of 1-silacyclop...
Alkoxysilanes and organoalkoxysilanes are primary materials in several industries, e.g. coating, ant...
The work contained herein focuses on the methodology and design of new reactions for the production ...
This dissertation focuses on studies of silylation-based kinetic resolution methodology developed by...
Time-resolved kinetic studies of silylene, SiH2, generated by laser flash photolysis of phenylsilane...
© 2018 Wiley Periodicals, Inc. The rate of Diels–Alder reaction of diene 9,10-bis(hydroxymethyl)anth...
International audienceThe replacement of polar O-H bonds in alcohols and phenols with the O-Si linka...
The combined use of a halogen bond (XB) donor with trimethylsilyl halide was found to be an efficien...