2014 (ref. 3a) |
Catalysis for the valorization of exhaust carbon: from CO2 to chemicals, materials, and fuels. Technological use of CO2
|
CO2 emission and utilization |
2014 (ref. 3b) |
Porous inorganic membranes for CO2 capture: present and prospects |
CO2 capture |
2001 (ref. 3c) |
Catalysis research of relevance to carbon management: progress, challenges, and opportunities |
CO2 emission and utilization |
2007 (ref. 4) |
Transformation of carbon dioxide |
CO2 conversion |
2018 (ref. 7) |
Sustainable conversion of carbon dioxide: an integrated review of catalysis and life cycle assessment |
Catalysis, carbon life cycle assessment |
2018 (ref. 8a) |
Cocatalysts in semiconductor-based photocatalytic CO2 reduction: achievements, challenges, and opportunities |
Photocatalytic CO2 reduction |
2013 (ref. 8b) |
Photocatalytic reduction of CO2 on TiO2 and other semiconductors |
2014 (ref. 8c) |
Photocatalytic conversion of CO2 into renewable hydrocarbon fuels: state-of-the-art accomplishment, challenges, and prospects |
2017 (ref. 11a) |
The chemistry of metal–organic frameworks for CO2 capture, regeneration and conversion |
MOFs in CO2 utilization |
2017 (ref. 11b) |
Metal organic framework based catalysts for CO2 conversion |
2015 (ref. 12a) |
A review on g-C3N4 for photocatalytic water splitting and CO2 reduction |
g-C3N4 in CO2 utilization |
2018 (ref. 15a) |
Transition metal-catalyzed carboxylation reactions with carbon dioxide |
Metal-catalyzed carboxylation |
2016 (ref. 15b) |
Metal-catalyzed carboxylation of organic (pseudo)halides with CO2
|
2018 (ref. 15c) |
Transition metal-catalyzed carboxylation of unsaturated substrates with CO2
|
2018 (ref. 16) |
Recent advances in palladium-catalyzed carboxylation with CO2
|
2016 (ref. 17) |
Silver-catalyzed carboxylation |
2016 (ref. 18) |
Copper-catalyzed carboxylation reactions using carbon dioxide |
2013 (ref. 19) |
N-heterocyclic carbene (NHC)–copper-catalysed transformations of carbon dioxide |
2016 (ref. 20) |
Ni- and Fe-catalyzed carboxylation of unsaturated hydrocarbons with CO2
|
2015 (ref. 23a) |
Recent advances in the catalytic preparation of cyclic organic carbonates |
Cyclic organic carbonates |
2018 (ref. 23b) |
Catalytic strategies for the cycloaddition of pure, diluted, and waste CO2 to epoxides under ambient conditions |
2015 (ref. 23c) |
Synthesis of cyclic carbonates from epoxides and carbon dioxide by using organocatalysts |
2018 (ref. 24a) |
Catalytic reductive N-alkylations using CO2 and carboxylic acid derivatives: recent progress and developments |
Catalytic alkylation |
2017 (ref. 24b) |
Utilization of CO2 as a C1 building block for catalytic methylation reactions |
2017 (ref. 21a) |
Enantioselective incorporation of CO2: status and potential |
Asymmetric functionalization |
2016 (ref. 21b) |
CO2-mediated formation of chiral fine chemicals |
2018 (ref. 22a) |
Photoredox catalysis as a strategy for CO2 incorporation: direct access to carboxylic acids from a renewable feedstock |
Photocatalytic carboxylation using CO2
|
2017 (ref. 22b) |
Photochemical carboxylation of activated C(sp3)–H bonds with CO2
|
2017 (ref. 85a) |
Reversible hydrogenation of carbon dioxide to formic acid and methanol: Lewis acid enhancement of base metal catalysts |
Formic acid and methanol derivatives |
2015 (ref. 85b) |
CO2 hydrogenation to formate and methanol as an alternative to photo- and electrochemical CO2 reduction |
2014 (ref. 85c) |
Recycling of carbon dioxide to methanol and derived products-closing the loop |