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Function-oriented ionic polymers having highdensity active sites for sustainable carbon dioxide conversion

delete2018-01-01
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PRE
AI
陈亚举 (Yaju Chen)
R
Rongchang Luo *
J
Junhui Bao
Q
Qihang Xu
J
Jun Jiang
周贤太 封面图
周贤太 (Xiantai Zhou)
H
Hongbing Ji *
DOI:10.1039/c8ta00823jdelete
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摘要

摘要

En 中文
On the basis of the development of function-oriented synthesis (FOS), we presented for the first time an efficient and one-pot construction of functional ionic polymers (FIPs) through the phenol-formaldehyde condensation process (pre-synthetic approach); FIPs had high density of Bronsted acidic and ionic sites. Considering the electrophilic-nucleophilic dual activation of phenolic hydroxyl groups and bromide anions, the imidazolium-based FIP-Im exhibited high activity for metal-, solvent- and additive-free synthesis of cyclic carbonates from CO2 and epoxides under mild conditions. Then, to obtain higher ionic density and a more flexible skeleton, FIP-Im@QA was also prepared by implanting quaternary ammonium (QA) in the framework of FIP-IM via the Williamson ether synthesis (post-synthetic modification), which demonstrated high efficiency in the N-formylation reaction of multitudinous secondary amines with CO2 and PhSiH3 at ambient temperature. More interestingly, these function-oriented catalysts were compatible with the target transformation under low CO2 concentration (15% in 85% N-2, v/v) and were also reused for more than six times without a significant loss of activity and selectivity. Therefore, this study could not only facilitate the design and construction of FIPs, but also provide sustainable protocols for efficient production of value-added chemicals from CO2 under mild conditions.
Keyword:
MICROPOROUS ORGANIC POLYMERS
CO2 CAPTURE
POLY(IONIC LIQUID)S
CYCLIC CARBONATES
REDUCTIVE FUNCTIONALIZATION
EFFICIENT CYCLOADDITION
HETEROGENEOUS CATALYSTS
CHEMICAL FIXATION
PHOSPHONIUM SALT
SURFACE-AREA
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期刊

Journal of Materials Chemistry A 封面图
Journal of Materials Chemistry A
IF:
9.5
论文数:
3.3W
被引数:
21.7W

机构

S
Sun Yat Sen University
学者数:
9.9W
论文数: 7.2W
被引数: 95
G
guangdong university of technology
学者数:
3.0W
论文数: 2.0W
被引数: 36