The recent atmospheric concentration of CO2 increase to 400 ppm is a cause of global climate change. There is therefore an urgent need for selective and cost-effective CO2 capture technologies. Fossil fuel consumption during energy production and transportation are two major sources of CO2 emission into the atmosphere. The capture of CO2 selectively from gaseous mixtures using reusable adsorbent is thus a challenge. In this article, we report that nanoparticles functionalized with imprinting of amino acids exhibit a significant increase in the selective adsorption capacities of CO2 in a gaseous mixture. Molecular imprinting of taurine in the vinylbenzyl chloride-co-divinyl benzene polymer formed cavities of 1–3 nm size and introd...
In this paper, we report the design, synthesis, and characterization of a series of hyper-cross-link...
The rise of carbon dioxide (CO2) levels in the atmosphere emphasises the need for improving the curr...
Amide-based imprinted polymers as potential adsorbents for CO2 capture [Abstract
The recent atmospheric concentration of CO2 increase to 400 ppm is a cause of global climate change...
New self-supported polyamine CO2 adsorbents are prepared by cross-linking branched polyethyleneimine...
New self-supported polyamine CO2 adsorbents are prepared by cross-linking branched polyethyleneimine...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Highly selective molecularly imprinted poly[acrylamide-co-(ethyleneglycol dimethacrylate)] polymer p...
© 2019 American Chemical Society. Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabri...
Production of spherical molecularly imprinted polymeric particles containing CO2-philic nanocavitie
Increasing awareness of the influence of greenhouse gases on global climate change has led to recent...
The design of high-efficiency CO2 adsorbents with low cost, high capacity, and easy desorption is of...
AbstractNovel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nan...
CO2 accumulation is inducing an effect of global warming. Adsorption using solid sorbents is proving...
Novel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nanocavitie...
In this paper, we report the design, synthesis, and characterization of a series of hyper-cross-link...
The rise of carbon dioxide (CO2) levels in the atmosphere emphasises the need for improving the curr...
Amide-based imprinted polymers as potential adsorbents for CO2 capture [Abstract
The recent atmospheric concentration of CO2 increase to 400 ppm is a cause of global climate change...
New self-supported polyamine CO2 adsorbents are prepared by cross-linking branched polyethyleneimine...
New self-supported polyamine CO2 adsorbents are prepared by cross-linking branched polyethyleneimine...
Control of carbon dioxide emissions without significant penalties requires effective CO2 scrubbing f...
Highly selective molecularly imprinted poly[acrylamide-co-(ethyleneglycol dimethacrylate)] polymer p...
© 2019 American Chemical Society. Porous polymeric adsorbents for CO2 capture (HCP-MAAMs) were fabri...
Production of spherical molecularly imprinted polymeric particles containing CO2-philic nanocavitie
Increasing awareness of the influence of greenhouse gases on global climate change has led to recent...
The design of high-efficiency CO2 adsorbents with low cost, high capacity, and easy desorption is of...
AbstractNovel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nan...
CO2 accumulation is inducing an effect of global warming. Adsorption using solid sorbents is proving...
Novel spherical molecularly imprinted polymer (MIP) particles containing amide-decorated nanocavitie...
In this paper, we report the design, synthesis, and characterization of a series of hyper-cross-link...
The rise of carbon dioxide (CO2) levels in the atmosphere emphasises the need for improving the curr...
Amide-based imprinted polymers as potential adsorbents for CO2 capture [Abstract