Platinum nanoparticles stabilized by imidazolium‐based phosphine‐decorated Polymer Immobilized Ionic Liquids (PPh2‐PIIL) catalyze the hydrolytic evolution of hydrogen from sodium borohydride with remarkable efficiency, under mild conditions. The composition of the polymer influences efficiency with the catalyst based on a polyethylene glycol modified imidazolium monomer (PtNP@PPh2‐PEGPIILS) more active than its N‐alkylated counterpart (PtNP@PPh2‐N‐decylPIILS). The maximum initial TOF of 169 moleH2.molcat−1.min−1 obtained at 30 °C with a catalyst loading of 0.08 mol% is among the highest to be reported for the aqueous phase hydrolysis of sodium borohydride catalyzed by a PtNP‐based system. Kinetic studies revealed that the apparent activatio...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
Use of environmentally friendly hydrogen as fuel on a massive scale requires efficient storage and g...
In this work, hydrogen is produced by a hydrolysis process that uses sodium borohydride as a hydroge...
Platinum nanoparticles stabilized by imidazolium-based phosphine-decorated Polymer Immobilized Ionic...
Ruthenium nanoparticles stabilised by polymer immobilized ionic liquids catalyse the hydrolytic rele...
Ruthenium nanoparticles stabilised by polymer immobilized ionic liquids catalyse the hydrolytic rele...
It is clear that in order to satisfy global energy demands whilst maintaining sustainable levels of ...
Sodium borohydride (NaBH4) hydrolysis offers significant advantages in hydrogen storage for fuel cel...
Hydrogen has been promoted as the energy alternative of the future. Fuel cell utilization of hydroge...
Polymer-stabilized cobalt(0) nanoclusters were prepared from the reduction of cobalt(II) chloride in...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
Sodium borohydride (NaBH<sub>4</sub>) has been proposed as a potential hydrogen storage material for...
Use of environmentally friendly hydrogen as fuel on a massive scale requires efficient storage and g...
Phosphino-decorated polymer immobilised ionic liquid phase stabilised palladium nanoparticles (PdNP@...
The present manuscript faces the study of H2 generation and storage from catalytic hydrolysis of sod...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
Use of environmentally friendly hydrogen as fuel on a massive scale requires efficient storage and g...
In this work, hydrogen is produced by a hydrolysis process that uses sodium borohydride as a hydroge...
Platinum nanoparticles stabilized by imidazolium-based phosphine-decorated Polymer Immobilized Ionic...
Ruthenium nanoparticles stabilised by polymer immobilized ionic liquids catalyse the hydrolytic rele...
Ruthenium nanoparticles stabilised by polymer immobilized ionic liquids catalyse the hydrolytic rele...
It is clear that in order to satisfy global energy demands whilst maintaining sustainable levels of ...
Sodium borohydride (NaBH4) hydrolysis offers significant advantages in hydrogen storage for fuel cel...
Hydrogen has been promoted as the energy alternative of the future. Fuel cell utilization of hydroge...
Polymer-stabilized cobalt(0) nanoclusters were prepared from the reduction of cobalt(II) chloride in...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
Sodium borohydride (NaBH<sub>4</sub>) has been proposed as a potential hydrogen storage material for...
Use of environmentally friendly hydrogen as fuel on a massive scale requires efficient storage and g...
Phosphino-decorated polymer immobilised ionic liquid phase stabilised palladium nanoparticles (PdNP@...
The present manuscript faces the study of H2 generation and storage from catalytic hydrolysis of sod...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
Use of environmentally friendly hydrogen as fuel on a massive scale requires efficient storage and g...
In this work, hydrogen is produced by a hydrolysis process that uses sodium borohydride as a hydroge...