Over the last decade, transition metal nanoparticles have attracted much attention owing to their unique properties, different to their bulk counterparts, which facilitate their application in different fields from materials science to engineering. Of particular interest, the use of transition metal nanoparticles in catalysis has brought transcendent efficiency in terms of activity, selectivity and lifetime to heterogeneous catalysis. In this account, we summarize the recent developments in the synthesis routes and the catalytic performance of transition metal nanoparticles tested in the hydrogen generation from the hydrolysis of ammonia-borane, which has been considered as one of the attractive materials for the efficient storage of hydrog...
Magnetically separable catalysts attract considerable attention in catalysis due to their facile sep...
Ammonia borane (denoted as AB, NH3BH3) and hydrazine borane (denoted as HB, N2H4BH3), having hydroge...
MXenes, first discovered in 2011, are two-dimensional transition metal carbides or nitrides. Because...
International audienceDihydrogen is one of the sustainable energy vectors envisioned for the future....
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
Ammonia-borane (AB) hydrolysis for the generation of hydrogen has been studied using first row trans...
A low-cost and facile route has been developed for the synthesis of monodisperse CuPd nanoparticles ...
Abstract There is a growing concern related to increasing energy requirement and greenhouse gas emis...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
Ammonia−borane (AB) hydrolysis for the generation of hydrogen has been studied using first row trans...
It reports how to increase the overall catalytic performance of precious platinum nanocatalysts in h...
The rapidly depleting petroleum feed stocks and increasing green house gas emissions around the worl...
The rapidly depleting petroleum feed stocks and increasing green house gas emissions around the worl...
Magnetically separable catalysts attract considerable attention in catalysis due to their facile sep...
Ammonia borane (denoted as AB, NH3BH3) and hydrazine borane (denoted as HB, N2H4BH3), having hydroge...
MXenes, first discovered in 2011, are two-dimensional transition metal carbides or nitrides. Because...
International audienceDihydrogen is one of the sustainable energy vectors envisioned for the future....
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
Ammonia-borane (AB) hydrolysis for the generation of hydrogen has been studied using first row trans...
A low-cost and facile route has been developed for the synthesis of monodisperse CuPd nanoparticles ...
Abstract There is a growing concern related to increasing energy requirement and greenhouse gas emis...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
Ammonia−borane (AB) hydrolysis for the generation of hydrogen has been studied using first row trans...
It reports how to increase the overall catalytic performance of precious platinum nanocatalysts in h...
The rapidly depleting petroleum feed stocks and increasing green house gas emissions around the worl...
The rapidly depleting petroleum feed stocks and increasing green house gas emissions around the worl...
Magnetically separable catalysts attract considerable attention in catalysis due to their facile sep...
Ammonia borane (denoted as AB, NH3BH3) and hydrazine borane (denoted as HB, N2H4BH3), having hydroge...
MXenes, first discovered in 2011, are two-dimensional transition metal carbides or nitrides. Because...