Redox catalysis, including photocatalysis and (photo)electrocatalysis, may alleviate global warming and energy crises by removing excess CO2 from the atmosphere and converting it to value-added resources. Nano-to-atomic two-dimensional (2D) materials, clusters and single atoms are superior catalysts because of their engineerable ultrathin/small dimensions and large surface areas and have attracted worldwide research interest. Given the current gap between research and applications in CO2 reduction, our review systematically and constructively discusses nano-to-atomic surface strategies for catalysts reported to date. This work is expected to drive and benefit future research to rationally design surface strategies with multi-parameter syn...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Carbon dioxide emissions are a defining issue of our time, and how we deal with this problem has far...
In order to alleviate the high concentrations of CO2 while meeting increasing demands for chemicals ...
Redox catalysis, including photocatalysis and (photo)electrocatalysis, may alleviate global warming ...
Global industrialization and overreliance on fossil fuels for energy has triggered higher atmospheri...
ABSTRACTAt present, CO2 photoreduction to value-added chemicals/fuels and photocatalytic hydrogen ge...
SSCI-VIDE+ING+JEC:EQDInternational audiencecarbon footprint reduction. CO2, N2 , H2 and biomass can ...
Photoreduction of molecular CO2 by solar light into added-value fuels or chemical feedstocks is an a...
The transition from fossil fuels to more sustainable energy sources is expected to take several deca...
Release of CO2 from fossil fuel consumption has become a growing concern in recent years, with every...
The increasing concentration of anthropogenic CO2 in the air is one of the main causes of global war...
This chapter focuses on recent progress in nanoparticle design and synthesis for selective conventio...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Renewables-powered electrochemical activation and conversion of water + CO2 into hydrocarbons and ox...
Human activity in the last two centuries that has revolutionized the way of using resources and brou...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Carbon dioxide emissions are a defining issue of our time, and how we deal with this problem has far...
In order to alleviate the high concentrations of CO2 while meeting increasing demands for chemicals ...
Redox catalysis, including photocatalysis and (photo)electrocatalysis, may alleviate global warming ...
Global industrialization and overreliance on fossil fuels for energy has triggered higher atmospheri...
ABSTRACTAt present, CO2 photoreduction to value-added chemicals/fuels and photocatalytic hydrogen ge...
SSCI-VIDE+ING+JEC:EQDInternational audiencecarbon footprint reduction. CO2, N2 , H2 and biomass can ...
Photoreduction of molecular CO2 by solar light into added-value fuels or chemical feedstocks is an a...
The transition from fossil fuels to more sustainable energy sources is expected to take several deca...
Release of CO2 from fossil fuel consumption has become a growing concern in recent years, with every...
The increasing concentration of anthropogenic CO2 in the air is one of the main causes of global war...
This chapter focuses on recent progress in nanoparticle design and synthesis for selective conventio...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Renewables-powered electrochemical activation and conversion of water + CO2 into hydrocarbons and ox...
Human activity in the last two centuries that has revolutionized the way of using resources and brou...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Carbon dioxide emissions are a defining issue of our time, and how we deal with this problem has far...
In order to alleviate the high concentrations of CO2 while meeting increasing demands for chemicals ...