The (eco)design and synthesis of durable heterogeneous catalysts starting from renewable sources derived from biomass waste represents an important step for reducing environmental impacts of organic transformations. Herein, we report the efficient loading of Pd(II) ions on an eco-safe cellulose-based organic support (CNS), obtained by thermal cross-linking between TEMPO-oxidized cellulose nanofibers and branched polyethyleneimine in the presence of citric acid. A 22.7% w/w Pd-loading on CNS was determined by the ICP-OES technique, while the metal distribution on the xerogel was evidenced by SEM-EDS analysis. XPS analysis confirmed the direct chelation of Pd(II) ions by means of the high number of amino groups present in the network, so that...
Palladium nanoparticles microencapsulated by cellulose (CelMcPd<sup>0</sup>) were, for the first tim...
A highly efficient and magnetically retrievable catalytic system involving Pd (II) acetate supported...
We present a novel strategy based on the immobilization of palladium nanoparticles (Pd NPs) on filte...
WOS: 000428483500020In this study, we reported production, characterization, and catalytic behavior ...
WOS: 000392680500005Bio-supported catalysts, due to their green nature, are promising materials for ...
WOS: 000418661000069PubMed: 29254012In this study, we designed a new palladium nanocatalyst on chito...
Waste corn-cob cellulose supported poly(amidoxime) palladium nanoparticles (PdNs@PA) were prepared b...
Corn-cob cellulose supported poly(amidoxime) Pd(II) complex was synthesized and characterized by fie...
Palladium nanoparticles (PdNPs) supported on cellulose nanocrystals (CNXL) were synthesized in a sin...
Corn-cobs are an agro-industrial waste and composed of cellulose mostly. In this study cellulose was...
Heterogeneous catalysts prepared from biomass waste sources are attracting increasing interest. The ...
Palladium nanoparticles (PdNPs) supported on cellulose nanocrystals (CNXL) were synthesized in a sin...
WOS: 000380944500021PubMed: 27516263In green catalyst systems, both the catalyst and the technique s...
This research is mainly focused on the utility of cellulose supported heterogenous metal catalyst fo...
A diphenylphosphinite cellulose palladium complex (Cell–OPPh2–Pd0) was found to be a highly efficien...
Palladium nanoparticles microencapsulated by cellulose (CelMcPd<sup>0</sup>) were, for the first tim...
A highly efficient and magnetically retrievable catalytic system involving Pd (II) acetate supported...
We present a novel strategy based on the immobilization of palladium nanoparticles (Pd NPs) on filte...
WOS: 000428483500020In this study, we reported production, characterization, and catalytic behavior ...
WOS: 000392680500005Bio-supported catalysts, due to their green nature, are promising materials for ...
WOS: 000418661000069PubMed: 29254012In this study, we designed a new palladium nanocatalyst on chito...
Waste corn-cob cellulose supported poly(amidoxime) palladium nanoparticles (PdNs@PA) were prepared b...
Corn-cob cellulose supported poly(amidoxime) Pd(II) complex was synthesized and characterized by fie...
Palladium nanoparticles (PdNPs) supported on cellulose nanocrystals (CNXL) were synthesized in a sin...
Corn-cobs are an agro-industrial waste and composed of cellulose mostly. In this study cellulose was...
Heterogeneous catalysts prepared from biomass waste sources are attracting increasing interest. The ...
Palladium nanoparticles (PdNPs) supported on cellulose nanocrystals (CNXL) were synthesized in a sin...
WOS: 000380944500021PubMed: 27516263In green catalyst systems, both the catalyst and the technique s...
This research is mainly focused on the utility of cellulose supported heterogenous metal catalyst fo...
A diphenylphosphinite cellulose palladium complex (Cell–OPPh2–Pd0) was found to be a highly efficien...
Palladium nanoparticles microencapsulated by cellulose (CelMcPd<sup>0</sup>) were, for the first tim...
A highly efficient and magnetically retrievable catalytic system involving Pd (II) acetate supported...
We present a novel strategy based on the immobilization of palladium nanoparticles (Pd NPs) on filte...