TY - JOUR
T1 - Simple fabrication of an ordered nitrogen-doped mesoporous carbon with resorcinol-melamine-formaldehyde resin
AU - Yu, Juhyon
AU - Guo, Mingyi
AU - Muhammad, Faheem
AU - Wang, Aifei
AU - Yu, Guangli
AU - Ma, Heping
AU - Zhu, Guangshan
PY - 2014/5/15
Y1 - 2014/5/15
N2 - An ordered nitrogen-doped mesoporous carbon has been prepared through direct self-assembly of resorcinol-melamine-formaldehyde resin and ampliphilic triblock copolymer (Pluronic F127), without using additional prepolymerization and hydrothermal solidification steps. This one-pot strategy involves the formation of nitrogen-containing organic polymer using condensation of resorcinol-formaldehyde resin with melamine-formaldehyde resin, which bridges with block copolymer template to attain an alignment of ordered channels during polymerization. The effect of various factors on the properties and mesostructure is elaborated, using small angle X-ray diffraction, thermo gravimetric analysis, nitrogen sorption, transmission electron microcopy, Fourier transform infrared and X-ray photoelectron spectroscopy techniques. It is demonstrated that the obtained mesoporous carbons have excellent textural properties such as ordered mesostructure (Im3̄m symmetry), high surface area and uniform pore size, while the nitrogen content was incorporated in the form of various nitrogen species in the pore wall of the carbon network. The presence of nitrogenous groups in the resulting materials significantly improved the CO2 adsorption capacity of mesoporous carbon (3.2 mmol g -1 at 0 C, 2.9 mmol g-1 at 25 C) and activated mesocarbon (4.6 mmol g-1 at 0 C, 3.1 mmol g-1 at 25 C) at 0.95 bar.
AB - An ordered nitrogen-doped mesoporous carbon has been prepared through direct self-assembly of resorcinol-melamine-formaldehyde resin and ampliphilic triblock copolymer (Pluronic F127), without using additional prepolymerization and hydrothermal solidification steps. This one-pot strategy involves the formation of nitrogen-containing organic polymer using condensation of resorcinol-formaldehyde resin with melamine-formaldehyde resin, which bridges with block copolymer template to attain an alignment of ordered channels during polymerization. The effect of various factors on the properties and mesostructure is elaborated, using small angle X-ray diffraction, thermo gravimetric analysis, nitrogen sorption, transmission electron microcopy, Fourier transform infrared and X-ray photoelectron spectroscopy techniques. It is demonstrated that the obtained mesoporous carbons have excellent textural properties such as ordered mesostructure (Im3̄m symmetry), high surface area and uniform pore size, while the nitrogen content was incorporated in the form of various nitrogen species in the pore wall of the carbon network. The presence of nitrogenous groups in the resulting materials significantly improved the CO2 adsorption capacity of mesoporous carbon (3.2 mmol g -1 at 0 C, 2.9 mmol g-1 at 25 C) and activated mesocarbon (4.6 mmol g-1 at 0 C, 3.1 mmol g-1 at 25 C) at 0.95 bar.
KW - CO capture
KW - Mesoporous material
KW - Nitrogen group
KW - Resorcinol-melamine-formaldehyde resin
UR - https://www.scopus.com/pages/publications/84894644285
U2 - 10.1016/j.micromeso.2014.02.009
DO - 10.1016/j.micromeso.2014.02.009
M3 - 文章
AN - SCOPUS:84894644285
SN - 1387-1811
VL - 190
SP - 117
EP - 127
JO - Microporous and Mesoporous Materials
JF - Microporous and Mesoporous Materials
ER -