[HTML][HTML] CO2 capture and conversion using graphene-based materials: a review on recent progresses and future outlooks

M Isah, R Lawal, SA Onaizi - Green Chemical Engineering, 2024 - Elsevier
Rapidly increasing global atmospheric CO 2 concentration poses a serious threat to life on
Earth. Conventional CO 2 capture methodologies which rely on using sorbents to capture …

Advancements in the Development of Porous Nanomaterials for CO2 Capture of Deep Decarbonization: Pore Structure and Chemical Group Optimization

S Bao, X Zheng, Z Xu, B Ji, Z Yang, W Sun… - Journal of …, 2024 - Elsevier
Excessive anthropogenic CO 2 emissions lead to global warming, which will have a serious
impact on climate change in the 21st century. Flue gas carbon capture and Direct Air …

CO2 adsorption on polymeric amine-functionalized adsorbents by computational intelligence method

AA Adewunmi, OI Mayowa, AK Hamzat… - Journal of the Taiwan …, 2024 - Elsevier
Background Emission of CO 2 has been one of the important challenges as far as global
warming is concerned. The global research programs on CO 2 capture are therefore justified …

Three-dimensional graphene with the decoration of elemental sulfur-based sulfur-nitrogen dots for CO2 capture

VS Wadi, AM Varghese, S Kuppireddy… - Journal of …, 2024 - Elsevier
Using a mild hydrothermal process, elemental sulfur was directly used to develop uniformly
decorated sulfur-nitrogen (NS) dots on three-dimensional (3D) graphene. UV-Visible …

[HTML][HTML] Investigating Synergistic Effect of Controlling Hierarchical Pore Structure and Chemical Modification on CO2 Adsorption Kinetics of Reduced Graphene Oxide …

E Safaei, Z Talebi, V Ghafarinia - Materials Today Sustainability, 2025 - Elsevier
The hierarchical pore structure of amine-functionalized reduced graphene oxide aerogels
(rGOAs) plays a vital role in CO₂ adsorption. Herein, the self-assembly of rGOAs was …