The application of shape-controlled metal nanoparticles is profoundly impacting the field of electrocatalysis. On the one hand, their use has remarkably enhanced the electrocatalytic activity of many different reactions of interest. On the other hand, their usage is deeply contributing to a correct understanding of the correlations between shape/surface structure and electrochemical reactivity at the nanoscale. However, from the point of view of an electrochemist, there are a number of questions that must be fully satisfied before the evaluation of the shaped metal nanoparticles as electrocatalysts including (i) surface cleaning, (ii) surface structure characterization, and (iii) correlations between particle shape and surface structure. In...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
Engineering metallic nanoparticles constitutes a powerful route to design next-generation electrocat...
The application of shape-controlled metal nanoparticles is profoundly impacting the field of electro...
The use of shape-controlled metal nanoparticles has produced not only a clear enhancement in the ele...
The great dependence of the electrocatalytic activity of most electrochemical reactions on the catal...
Electrocatalysis is a subclass of heterogeneous catalysis that is aimed towards increase of the elec...
The use of adatom decorated shape-controlled metal nanoparticles in electrocatalysis, and particular...
The influence of the metal loading (i.e. interparticle distance) of shape-controlled Pt nanoparticle...
The application of shape-controlled metal nanoparticles in electrocatalysis has improved significant...
The size, shape, composition, and crystalline structures of noble metal nanoparticles are the key pa...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The field of electrocatalysis has undergone tremendous advancement in the past few decades, in part ...
The use of adatom decorated shape-controlled metal nanoparticles in electrocatalysis, and particular...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
Engineering metallic nanoparticles constitutes a powerful route to design next-generation electrocat...
The application of shape-controlled metal nanoparticles is profoundly impacting the field of electro...
The use of shape-controlled metal nanoparticles has produced not only a clear enhancement in the ele...
The great dependence of the electrocatalytic activity of most electrochemical reactions on the catal...
Electrocatalysis is a subclass of heterogeneous catalysis that is aimed towards increase of the elec...
The use of adatom decorated shape-controlled metal nanoparticles in electrocatalysis, and particular...
The influence of the metal loading (i.e. interparticle distance) of shape-controlled Pt nanoparticle...
The application of shape-controlled metal nanoparticles in electrocatalysis has improved significant...
The size, shape, composition, and crystalline structures of noble metal nanoparticles are the key pa...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The field of electrocatalysis has undergone tremendous advancement in the past few decades, in part ...
The use of adatom decorated shape-controlled metal nanoparticles in electrocatalysis, and particular...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
The electrochemical and electrocatalytic behaviour of silver nanoprisms, nanospheres and nanocubes o...
Engineering metallic nanoparticles constitutes a powerful route to design next-generation electrocat...