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Mechanism of Base-Catalyzed Resorcinol-Formaldehyde and Phenol-Resorcinol-Formaldehyde Condensation Reactions: A Theoretical Study.

Authors :
Li T
Cao M
Liang J
Xie X
Du G
Source :
Polymers [Polymers (Basel)] 2017 Sep 07; Vol. 9 (9). Date of Electronic Publication: 2017 Sep 07.
Publication Year :
2017

Abstract

The base-catalyzed resorcinol-formaldehyde condensation reactions were theoretically investigated in this study by employing a quantum chemistry method. The condensation reaction includes two steps: (1) formation of the quinonemethide (QM) intermediate from hydroxymethylresorcinol; (2) Michael addition between the quinonemethide and resorcinol anion. The first step is the rate-determining step. Two mechanisms, unimolecular elimination of the conjugate base (E1cb) and water-aided elimination (WAE), were identified for the formation of QM. The hydroxymethylresorcinol anion produces neutral QM while the dianion produces a quinonemethide anion (QMA). The calculated potential energy barriers suggested that the QMA formation is much more favorable. Although resorcinol-formaldehyde and phenol-formaldehyde condensations share a common mechanism, the former would be faster if the QMA participates in condensations. The potential energy barriers for formation of 2-QM, 4-QM, 6-QM, 2-QMA, and 4-QMA were calculated. The results show that the formations of 6-QM and 4-QMA have relatively lower energy barriers. This rationalized previous experimental observations that the 2,4-(2,6-) and 6,6'-(4,4'-) methylene linkages were dominant, whereas the 2,2'-linkage was almost absent. The resorcinol-phenol-formaldehyde co-condensations were also calculated. The cold-setting characteristic of phenol-resorcinol-formaldehyde co-condensed resin can be attributed to participation of resorcinol quinonemethides in condensations.<br />Competing Interests: The authors declare no conflict of interest.

Details

Language :
English
ISSN :
2073-4360
Volume :
9
Issue :
9
Database :
MEDLINE
Journal :
Polymers
Publication Type :
Academic Journal
Accession number :
30965730
Full Text :
https://doi.org/10.3390/polym9090426