Energy-efficient adsorptive CO2 capture requires both adsorbent materials with high CO2 capacity and structured adsorption contactors possessing fast mass transfer kinetics and low pressure drop. The state-of-the-art research primarily focuses on “hard” adsorbents such as mesoporous zeolites and metal–organic frameworks, which exhibit high CO2 capacities but are challenging to translate into structured contactors. Polymer of intrinsic microporosity 1 (PIM-1), a solution-processable microporous polymer, is a “softer” alternative that can be easily fabricated into structured adsorption contactors. In prior research, PIM-1 has been utilized as a “molecular basket” for poly(ethylene imine) (PEI). Despite nanoscale amine dispersion and excellen...
An adsorbent based on polyethylene oxide-templated silica monoliths with hierarchical uniform porosi...
Polymer molecular sieve materials (PMS) are promising porous fillers that can be used to fabricate h...
In this paper, we show a novel sustainable route for the production of sorption materials for carbon...
Rising atmospheric CO<sub>2</sub> levels have triggered recent research into the science of amine ma...
Solution-processable microporous polymers are promising materials for CO2 capture because of their l...
Searching for highly efficient and robust CO2 adsorbents is very important for CO2 capture, utilizat...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Previous research has demonstrated that amine polymers rich in primary and secondary amines supporte...
The search for efficient amine-functionalized materials for direct air capture (DAC) of CO2 is highl...
Hybrids with a nanosized metal-organic framework (MOF) confined within a mesoporous structure have a...
Supported amines are promising candidate adsorbents for the removal of CO<sub>2</sub> from flue gase...
To impact carbon emissions, new materials for carbon capture must be inexpensive, robust, and able t...
To address the issue of global warming and climate change issues, recent research efforts have highl...
The accumulation of CO2 in the Earth’s atmosphere is an important environmental issue, and coal-fire...
To impact carbon emissions, new materials for carbon capture must be inexpensive, robust, and able t...
An adsorbent based on polyethylene oxide-templated silica monoliths with hierarchical uniform porosi...
Polymer molecular sieve materials (PMS) are promising porous fillers that can be used to fabricate h...
In this paper, we show a novel sustainable route for the production of sorption materials for carbon...
Rising atmospheric CO<sub>2</sub> levels have triggered recent research into the science of amine ma...
Solution-processable microporous polymers are promising materials for CO2 capture because of their l...
Searching for highly efficient and robust CO2 adsorbents is very important for CO2 capture, utilizat...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Previous research has demonstrated that amine polymers rich in primary and secondary amines supporte...
The search for efficient amine-functionalized materials for direct air capture (DAC) of CO2 is highl...
Hybrids with a nanosized metal-organic framework (MOF) confined within a mesoporous structure have a...
Supported amines are promising candidate adsorbents for the removal of CO<sub>2</sub> from flue gase...
To impact carbon emissions, new materials for carbon capture must be inexpensive, robust, and able t...
To address the issue of global warming and climate change issues, recent research efforts have highl...
The accumulation of CO2 in the Earth’s atmosphere is an important environmental issue, and coal-fire...
To impact carbon emissions, new materials for carbon capture must be inexpensive, robust, and able t...
An adsorbent based on polyethylene oxide-templated silica monoliths with hierarchical uniform porosi...
Polymer molecular sieve materials (PMS) are promising porous fillers that can be used to fabricate h...
In this paper, we show a novel sustainable route for the production of sorption materials for carbon...