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Department of Energy Science and Engineering
CMMM Lab(Curious Minds Molecular Modeling Laboratory)
1. Journal Articles
Living Initiator-Transfer Anionic Polymerization of Isocyanates by Sodium Diphenylamide
Chae, Chang-Geun
;
Bak, In-Gyu
;
Lansac, Yves
;
Samal, Shashadhar
;
Jang, Yun Hee
;
Lee, Jae-Suk
Department of Energy Science and Engineering
CMMM Lab(Curious Minds Molecular Modeling Laboratory)
1. Journal Articles
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Title
Living Initiator-Transfer Anionic Polymerization of Isocyanates by Sodium Diphenylamide
DGIST Authors
Jang, Yun Hee
Issued Date
2019-12
Citation
Chae, Chang-Geun. (2019-12). Living Initiator-Transfer Anionic Polymerization of Isocyanates by Sodium Diphenylamide. doi: 10.1021/acs.macromol.9b01523
Type
Article
Article Type
Article
Keywords
N-HEXYL ISOCYANATE
;
POLY(N-HEXYL ISOCYANATE)
;
HELICAL POLYMER
;
BLOCK-COPOLYMER
;
MACROMOLECULAR STEREOCHEMISTRY
;
CONFORMATIONAL CHARACTERISTICS
;
CHIRAL POLYISOCYANATES
;
LIQUID-CRYSTAL
;
MAIN-CHAIN
;
SENSE
ISSN
0024-9297
Abstract
Access to protein-inspired polyisocyanates with high molecular weights (MWs) from anionic polymerization of isocyanates is challenging as it requires exceptional livingness. For this purpose, a dimerically self-associated sodium diphenylamide (NaDPA) was introduced as a robust chain-end-protective initiator in the anionic polymerization of n-hexyl isocyanate (HIC) in the absence or presence of sodium tetraphenylborate (NaBPh4) additive. At [NaDPA]0/[NaBPh4]0 = 5, unusual one-half initiation efficiency and one-half order of reaction kinetics were observed. Accordingly, initiator-transfer anionic polymerization (ITAP), a mechanism driven by the dimer of NaDPA ((NaDPA)2) in a dual role is proposed, in which one unimer initiates the polymerization and the other reversibly deactivates the propagating chain end through its repetitive cycles of 1:1 cross-association/dissociation. Living ITAP by NaDPA with NaBPh4 was proven by X-ray crystallography, density functional theory calculation, and quantitative yield of poly(n-hexyl isocyanate)s with an expanded range of controlled MWs (Mn = 6.09-47.8 kDa and Đ = 1.07-1.16). Copyright © 2019 American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/11384
DOI
10.1021/acs.macromol.9b01523
Publisher
American Chemical Society
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