| Literature DB >> 28699298 |
Wei-Cheng Chu1, Bishnu Prasad Bastakoti2, Yusuf Valentino Kaneti2, Jheng-Guang Li1,3, Hatem R Alamri4, Zeid A Alothman5, Yusuke Yamauchi2,5,6, Shiao-Wei Kuo1,7.
Abstract
Highly ordered mesoporous resol-type phenolic resin and the corresponding mesoporous carbon materials were synthesized by using poly(ethylene oxide-b-caprolactone) (PEO-b-PCL) diblock copolymer as a soft template. The self-assembled mesoporous phenolic resin was found to form only in a specific resol concentration range of 40-70 wt % due to an intriguing balance of hydrogen-bonding interactions in the resol/PEO-b-PCL mixtures. Furthermore, morphological transitions of the mesostructures from disordered to gyroid to cylindrical and finally to disordered micelle structure were observed with increasing resol concentration. By calcination under nitrogen atmosphere at 800 °C, the bicontinuous mesostructured gyroid phenolic resin could be converted to mesoporous carbon with large pore size without collapse of the original mesostructure. Furthermore, post-treatment of the mesoporous gyroid phenolic resin with melamine gave rise to N-doped mesoporous carbon with unique electronic properties for realizing high CO2 adsorption capacity (6.72 mmol g-1 at 0 °C).Entities:
Keywords: block copolymers; doping; mesoporous carbon; mesoporous materials; template synthesis
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Year: 2017 PMID: 28699298 DOI: 10.1002/chem.201702360
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236