Heteroatom doping of carbon networks may introduce active functional groups on the surface of the material, induce electron density changes that alter the polarity of the carbon surface, promote the formation of binding sites for molecules or ions, or make the surface catalytically active for different reactions, among many other alterations. Thus, it is no surprise that heteroatom doping has become a well-established strategy to enhance the performance of carbon-based materials for applications ranging from water remediation and gas sorption to energy storage and conversion. Although oxygen functionalization is sometimes inevitable (i.e., many carbon precursors contain oxygen functionalities), its participation in carbon materials performa...
The use of metal-free carbon nanomaterials as cathodic oxygen reduction reaction (ORR) catalysts has...
Carbon-based materials have received intense research interest over the past few decades due to thei...
Carbon-based bifunctional electrocatalysts for both oxygen reduction and evolution reactions are pot...
Engineering the surface chemistry of carbon-based materials is of crucial importance in tuning their...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The oxygen reduction reaction (ORR) is a key cathode reaction in fuel cells. Due to the sluggish kin...
Generally, a significant amount of oxygen functional groups (OFGs) usually exist on the surface of n...
The electrochemical oxygen reduction reaction (ORR) is the key energy conversion reaction involved i...
Nitrogen-doped carbons are promising candidates for replacing platinum catalysts in fuel cell electr...
Published: January 5, 2017Carbon-based nanomaterials have been widely studied as promising electroca...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Carbon-based materials have been attracting intense interest for electrocatalysis due to their vario...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Metal-free carbon-based materials are considered to be one of the most promising alternatives to pre...
In this paper, we describe the combination of two different synthetic approaches to carbon nanotube ...
The use of metal-free carbon nanomaterials as cathodic oxygen reduction reaction (ORR) catalysts has...
Carbon-based materials have received intense research interest over the past few decades due to thei...
Carbon-based bifunctional electrocatalysts for both oxygen reduction and evolution reactions are pot...
Engineering the surface chemistry of carbon-based materials is of crucial importance in tuning their...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
The oxygen reduction reaction (ORR) is a key cathode reaction in fuel cells. Due to the sluggish kin...
Generally, a significant amount of oxygen functional groups (OFGs) usually exist on the surface of n...
The electrochemical oxygen reduction reaction (ORR) is the key energy conversion reaction involved i...
Nitrogen-doped carbons are promising candidates for replacing platinum catalysts in fuel cell electr...
Published: January 5, 2017Carbon-based nanomaterials have been widely studied as promising electroca...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Carbon-based materials have been attracting intense interest for electrocatalysis due to their vario...
Nitrogen-doped carbons are among the fastest-growing class of materials used for oxygen electrocatal...
Metal-free carbon-based materials are considered to be one of the most promising alternatives to pre...
In this paper, we describe the combination of two different synthetic approaches to carbon nanotube ...
The use of metal-free carbon nanomaterials as cathodic oxygen reduction reaction (ORR) catalysts has...
Carbon-based materials have received intense research interest over the past few decades due to thei...
Carbon-based bifunctional electrocatalysts for both oxygen reduction and evolution reactions are pot...