Current environmental and energy issues urge the advance of stable and cost-effective porous nanostructures for highly efficient electrochemical energy conversion/storage, and gas adsorption/separation. Herein, we report a one-pot, scalable pyrolysis process for fabrication of hierarchically layer-structured porous carbons with nitrogen doping and cobalt modification (Co-N-PCs) for efficient high-pressure CO2 gas adsorption and oxygen reduction reaction (ORR). Co-N-PCs possess large specific surface areas and abundant layered macropores containing micropores and narrow mesopores, coupled with core-shell Co@C/CoOx structure. Co-N-PC 800 (synthesized at 800 °C) shows a high CO2 capture capability of 18.5 mmol g−1 at 10 bar (0 °C) and an outst...
Co-N-C electrocatalysts have attracted great attention in electrocatalytic ORR (oxygen reduction rea...
Electrocatalytic CO2 reduction by metal-free nitrogen-doped carbon (N-C) catalysts provides a soluti...
© 2022Hierarchical pore structure is crucial for effective mass transfer and utilization of a number...
Available online 19 March 2018Current environmental and energy issues urge the advance of stable and...
Hierarchical porous carbon has attracted great interest because of its distinctive structure and sup...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
A new nanocomposite catalyst consisting of high-loading cobalt oxide (CoO) on nitrogen-doped reduced...
Available online 10 November 2016Searching low cost and non-precious metal catalysts for high-perfor...
Abstract A series of triple hierarchical micro-meso-macroporous N-doped carbon shells with hollow co...
In this work, Co-MOFs microrod structures were firstly fabricated using Co2+ source and trimesic aci...
Published online: October 28, 2016Increasing global challenges such as climate change, environmental...
Although cobalt pyrophosphate (Co2P2O7) has shown promise as a potential electrocatalyst for the oxy...
Replacing platinum as an oxygen reduction catalyst is an important scientific and technological chal...
Co-N-C electrocatalysts have attracted great attention in electrocatalytic ORR (oxygen reduction rea...
In recent years, 3d transition metals or alloys encapsulated by graphene layers (M@NG) have been eme...
Co-N-C electrocatalysts have attracted great attention in electrocatalytic ORR (oxygen reduction rea...
Electrocatalytic CO2 reduction by metal-free nitrogen-doped carbon (N-C) catalysts provides a soluti...
© 2022Hierarchical pore structure is crucial for effective mass transfer and utilization of a number...
Available online 19 March 2018Current environmental and energy issues urge the advance of stable and...
Hierarchical porous carbon has attracted great interest because of its distinctive structure and sup...
© 2021 Wiley-VCH GmbHThe design of active sites plays an important role in developing highly active ...
A new nanocomposite catalyst consisting of high-loading cobalt oxide (CoO) on nitrogen-doped reduced...
Available online 10 November 2016Searching low cost and non-precious metal catalysts for high-perfor...
Abstract A series of triple hierarchical micro-meso-macroporous N-doped carbon shells with hollow co...
In this work, Co-MOFs microrod structures were firstly fabricated using Co2+ source and trimesic aci...
Published online: October 28, 2016Increasing global challenges such as climate change, environmental...
Although cobalt pyrophosphate (Co2P2O7) has shown promise as a potential electrocatalyst for the oxy...
Replacing platinum as an oxygen reduction catalyst is an important scientific and technological chal...
Co-N-C electrocatalysts have attracted great attention in electrocatalytic ORR (oxygen reduction rea...
In recent years, 3d transition metals or alloys encapsulated by graphene layers (M@NG) have been eme...
Co-N-C electrocatalysts have attracted great attention in electrocatalytic ORR (oxygen reduction rea...
Electrocatalytic CO2 reduction by metal-free nitrogen-doped carbon (N-C) catalysts provides a soluti...
© 2022Hierarchical pore structure is crucial for effective mass transfer and utilization of a number...