Addressed herein is a novel, eco-friendly, recoverable, reusable and bottleable catalytic system developed for the dihydroxylation of various olefins yielding 1,2-cis-diols. In our protocol, zeolite-confined osmium (0) nanoclusters (zeolite-Os-0) are used as reusable catalyst and H2O2 served as a co-oxidant. Zeolite-Os-0 are found to be highly efficient and selective catalysts for the dihydroxylation of a wide range olefins in an aqueous acetone mixture at room temperature. In all of the olefins surveyed, the catalytic dihydroxylation reaction proceeds smoothly and the corresponding 1,2-cis-diols are obtained in excellent chemical yield under the optimized conditions. The present heterogeneous catalyst system provides many advantages, such ...
Immobilised Os species prepared via chemical vapour deposition (CVD) of Os-3(CO)(12) onto MCM-41 are...
A triple catalytic system designed for asymmetric dihydroxylation of olefins, composed of NMM and tw...
PEG (400) has been used as a recyclable and rapid reaction medium for the asymmetric dihydroxylation...
A facile, efficient and eco-friendly method for the one-pot synthesis of 1,2/3-triols from the allyl...
Osmium(0) nanoclusters stabilized by zeolite-Y framework were reproducibly prepared by a simple two ...
A recoverable and reusable new heterogeneous AP-Mg-OsO4 catalyst was designed and developed for the ...
The oxidative functionalization of olefins is of major importance for both organic synthesis and the...
A new catalyst derived from osmium has been prepared, fully characterized and tested in the dihydrox...
The cis dihydroxylation of alkenes is most efficiently accomplished by reaction with osmium tetroxid...
The aminohydroxylation reaction of olefins is a key organic transformation reaction, typically carri...
Beta zeolite obtained from seeded synthesis without the use of organic structure directing agents (O...
Vita.The selective oxidation of olefins including oxidative dehydrogenation and epoxidation reaction...
Exchanger-OsO4 catalysts are prepared by an ion-exchange technique using layered double hydroxides a...
A homogeneous dihydroxylation catalyst was synthesised by complexation of osmium tetroxide (OsO4) wi...
New methods and ways of using heterogeneous zeolite catalysts – H-Y, H-Beta, H-MOR, H-ZSM-5 and micr...
Immobilised Os species prepared via chemical vapour deposition (CVD) of Os-3(CO)(12) onto MCM-41 are...
A triple catalytic system designed for asymmetric dihydroxylation of olefins, composed of NMM and tw...
PEG (400) has been used as a recyclable and rapid reaction medium for the asymmetric dihydroxylation...
A facile, efficient and eco-friendly method for the one-pot synthesis of 1,2/3-triols from the allyl...
Osmium(0) nanoclusters stabilized by zeolite-Y framework were reproducibly prepared by a simple two ...
A recoverable and reusable new heterogeneous AP-Mg-OsO4 catalyst was designed and developed for the ...
The oxidative functionalization of olefins is of major importance for both organic synthesis and the...
A new catalyst derived from osmium has been prepared, fully characterized and tested in the dihydrox...
The cis dihydroxylation of alkenes is most efficiently accomplished by reaction with osmium tetroxid...
The aminohydroxylation reaction of olefins is a key organic transformation reaction, typically carri...
Beta zeolite obtained from seeded synthesis without the use of organic structure directing agents (O...
Vita.The selective oxidation of olefins including oxidative dehydrogenation and epoxidation reaction...
Exchanger-OsO4 catalysts are prepared by an ion-exchange technique using layered double hydroxides a...
A homogeneous dihydroxylation catalyst was synthesised by complexation of osmium tetroxide (OsO4) wi...
New methods and ways of using heterogeneous zeolite catalysts – H-Y, H-Beta, H-MOR, H-ZSM-5 and micr...
Immobilised Os species prepared via chemical vapour deposition (CVD) of Os-3(CO)(12) onto MCM-41 are...
A triple catalytic system designed for asymmetric dihydroxylation of olefins, composed of NMM and tw...
PEG (400) has been used as a recyclable and rapid reaction medium for the asymmetric dihydroxylation...