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DOI10.1016/j.memsci.2018.12.011
Control of gas permeability by transforming the molecular structure of silk fibroin in multilayered nanocoatings for CO2 adsorptive separation
Choi, Moonhyun1; Heo, Jiwoong1; Kim, Hyunyoung2; Kang, Sang Wook2; Hong, Jinkee1
发表日期2019
ISSN0376-7388
EISSN1873-3123
卷号573页码:554-559
英文摘要

Carbon dioxide (CO2) is considered one of the causes of global warming because anthropogenic CO2 concentration in the atmosphere has greatly increased. The objective of this work was to design silk fibroin (SF) and graphene oxide (GO) membranes with very high CO2 gas capture characteristics and high gas selectivity toward nitrogen rather than CO2 gas, and to demonstrate the effect on transforming the SF secondary structure at the molecular level. GO-NH3+/SF multilayer nanocoatings were fabricated by automatic spray-assisted layer-by-layer (LbL) assembly with physical molecular interaction between GO-NH3+ and SF. We demonstrated transformation of the SF secondary structures in GO-NH3+/SF LbL-assembled nanocoatings with MeOH solvent treatment. After MeOH treatment, the SF secondary structures in the GO-NH3+/SF LbL-assembled nanocoatings preferred beta-sheets to random coils. This phenomenon affects the internal amine groups and CO2 transport. The MeOH-treated GO-NH3+/SF LbL-assembled nanocoatings have high beta-sheet content, and the gas permeability of the nanocoatings was quite different. Before the predominance of the beta-sheet, CO2 gas permeated twice as fast as nitrogen (N-2) gas in the GO-NH3+/SF LbL-assembled nanocoatings. On the other hand, CO2 gas was transmitted 10-times slower than N-2 gas in MeOH-treated GO-NH3+/SF LbL-assembled nanocoatings. In other words, we successfully fabricated a CO2 adsorptive separation membrane with GO-NH3+ and SF.


WOS研究方向Engineering ; Polymer Science
来源期刊JOURNAL OF MEMBRANE SCIENCE
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/94039
作者单位1.Yonsei Univ, Dept Chem & Biomol Engn, Coll Engn, 50 Yonsei Ro, Seoul 03722, South Korea;
2.Sangmyung Univ, Dept Chem, Seoul 03016, South Korea
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Choi, Moonhyun,Heo, Jiwoong,Kim, Hyunyoung,et al. Control of gas permeability by transforming the molecular structure of silk fibroin in multilayered nanocoatings for CO2 adsorptive separation[J],2019,573:554-559.
APA Choi, Moonhyun,Heo, Jiwoong,Kim, Hyunyoung,Kang, Sang Wook,&Hong, Jinkee.(2019).Control of gas permeability by transforming the molecular structure of silk fibroin in multilayered nanocoatings for CO2 adsorptive separation.JOURNAL OF MEMBRANE SCIENCE,573,554-559.
MLA Choi, Moonhyun,et al."Control of gas permeability by transforming the molecular structure of silk fibroin in multilayered nanocoatings for CO2 adsorptive separation".JOURNAL OF MEMBRANE SCIENCE 573(2019):554-559.
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