Stable, catalytically active palladium nanoparticles of various average diameters (1.9–7.4 nm) have been synthesized and characterized by X-ray diffraction, spectroscopy, and microscopy techniques to demonstrate remarkable size-dependent and renewed catalytic activity toward the Suzuki–Miyaura coupling reaction in green protocol. The catalytic activity is found to depend on the amount of the reducing agent, stabilizer–precursor ratio, solvent composition, and aryl halides used. The product obtained by this reaction is characterized by 1H NMR, 13C NMR, and IR spectroscopy analyses. A newly developed kinetic equation illustrates that while the catalyst particles of the lowest dimension are gradually exposed to the reactants and hence activate...
A newly engineered palladacycle that contains substituents on the biphenyl rings along with the liga...
Palladium nanoparticles have been immobilized into an amino-functionalized metal–organic framework (...
A new, high surface area, nanoporous polymer (COP-220) was synthesized using sustainable building bl...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
In this Perspective, we discuss some of the most significant aspects in the development of nanosized...
Metal nanoparticles stabilized by crystalline metal–organic frameworks (MOFs) are highly promising f...
[EN] A new Pd(0) catalyst supported on silica UVM-7 has been synthesized from the organometallic [Pd...
Novel, simple and efficient catalytic system based on a polymer supported Pd complex of 2,6-bis(benz...
This study shows that polymer nanogels (well-defined cross-linked nanoparticles behaving as highly h...
Recent advances in the field of nanoscience have enabled the preparation of high-surface-area suppor...
© 2014 Springer Science+Business Media New York. The influence of the aggregation properties of the ...
The structure–property relationship of palladium (Pd) catalysts in Suzuki–Miyaura cross-coupling rea...
Suzuki couplings of aryl bromides were efficiently performed by a polymer supported palladium cataly...
International audienceThis paper reports the comparison of the chemoselectivity of two different Pd ...
Palladium nanoparticles have been immobilized into an amino-functionalized metal-organic framework (...
A newly engineered palladacycle that contains substituents on the biphenyl rings along with the liga...
Palladium nanoparticles have been immobilized into an amino-functionalized metal–organic framework (...
A new, high surface area, nanoporous polymer (COP-220) was synthesized using sustainable building bl...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
In this Perspective, we discuss some of the most significant aspects in the development of nanosized...
Metal nanoparticles stabilized by crystalline metal–organic frameworks (MOFs) are highly promising f...
[EN] A new Pd(0) catalyst supported on silica UVM-7 has been synthesized from the organometallic [Pd...
Novel, simple and efficient catalytic system based on a polymer supported Pd complex of 2,6-bis(benz...
This study shows that polymer nanogels (well-defined cross-linked nanoparticles behaving as highly h...
Recent advances in the field of nanoscience have enabled the preparation of high-surface-area suppor...
© 2014 Springer Science+Business Media New York. The influence of the aggregation properties of the ...
The structure–property relationship of palladium (Pd) catalysts in Suzuki–Miyaura cross-coupling rea...
Suzuki couplings of aryl bromides were efficiently performed by a polymer supported palladium cataly...
International audienceThis paper reports the comparison of the chemoselectivity of two different Pd ...
Palladium nanoparticles have been immobilized into an amino-functionalized metal-organic framework (...
A newly engineered palladacycle that contains substituents on the biphenyl rings along with the liga...
Palladium nanoparticles have been immobilized into an amino-functionalized metal–organic framework (...
A new, high surface area, nanoporous polymer (COP-220) was synthesized using sustainable building bl...