Platinum and platinum-based materials with high catalytic performance, and chemical and mechanical stability are vital to electronic devices, biomedical science, optics, petroleum, and automotive industries. Because of the limited supply and high cost of platinum, it is highly desirable to develop new effective methodologies which can decrease the platinum loading by increasing its electrocatalytic properties. Depending upon their size, shape, and morphology, platinum materials have shown significant improvement in the surface catalysed chemical transformation pathways in fuel cell technology. Much research is now focused on the manufacturing and engineering of platinum and platinum-based materials which proffer enhanced catalytic efficienc...
Molecular modelling is a novel approach in the development of new catalyst materials. Method was use...
We here demonstrate a remarkable potential-dependent morphological evolution of platinum mesostructu...
Philosophiae Doctor - PhDCatalysts play an essential role in nearly every chemical production proces...
As a new generation of power sources, fuel cells have shown great promise for application in transpo...
Extended surface catalysts are being investigated as cathode materials for proton exchange membrane ...
Fuel cells, converting chemical energy from fuels into electricity directly without the need for com...
Platinum electrocatalysts are important for a number of low and zero-emission energy technologies, i...
Platinum (Pt) is a highly efficient electrocatalyst for both the cathodic oxygen reduction reaction ...
The electrocatalytic activity of Pt-nanoparticles used in fuel cells increases by 34% upon going fro...
The overall objective of this electrocatalysis program was to define the feasibility of lowering the...
A scientific review addresses the current development of size-dependent, shape-selected, and composi...
Proton exchange membrane fuel cells have been recently developed at an increasing pace as clean ener...
Platinum (Pt) is widely adopted in proton exchange membrane fuel cells (PEMFCs), which efficiently c...
Pt-based binary and ternary alloy catalysts were investigated by modeling methods and experimentally...
Carbon graphitic structures that differ in morphology, graphiticity and specific surface area were u...
Molecular modelling is a novel approach in the development of new catalyst materials. Method was use...
We here demonstrate a remarkable potential-dependent morphological evolution of platinum mesostructu...
Philosophiae Doctor - PhDCatalysts play an essential role in nearly every chemical production proces...
As a new generation of power sources, fuel cells have shown great promise for application in transpo...
Extended surface catalysts are being investigated as cathode materials for proton exchange membrane ...
Fuel cells, converting chemical energy from fuels into electricity directly without the need for com...
Platinum electrocatalysts are important for a number of low and zero-emission energy technologies, i...
Platinum (Pt) is a highly efficient electrocatalyst for both the cathodic oxygen reduction reaction ...
The electrocatalytic activity of Pt-nanoparticles used in fuel cells increases by 34% upon going fro...
The overall objective of this electrocatalysis program was to define the feasibility of lowering the...
A scientific review addresses the current development of size-dependent, shape-selected, and composi...
Proton exchange membrane fuel cells have been recently developed at an increasing pace as clean ener...
Platinum (Pt) is widely adopted in proton exchange membrane fuel cells (PEMFCs), which efficiently c...
Pt-based binary and ternary alloy catalysts were investigated by modeling methods and experimentally...
Carbon graphitic structures that differ in morphology, graphiticity and specific surface area were u...
Molecular modelling is a novel approach in the development of new catalyst materials. Method was use...
We here demonstrate a remarkable potential-dependent morphological evolution of platinum mesostructu...
Philosophiae Doctor - PhDCatalysts play an essential role in nearly every chemical production proces...