| Literature DB >> 30974533 |
Hong Lei1, Zhigang Wu2,3, Ming Cao4, Guanben Du5.
Abstract
To explain the reason why using phenol-formaldehyde (PF) resin improves the water resistance of soy-based adhesive, the performance of soy-based adhesive cross-linked with hydroxymethyl phenol (HPF) and the reaction between HPF and a common dipeptide N-(2)-l-alanyl-l-glutamine (AG) being used as a model compound were studied in this paper. The DSC and DMA results indicated the reaction between HPF and soy-based adhesive. The soy-based adhesive cross-linked with HPF cured at a lower temperature than the adhesive without HPF. The former showed better mechanical performance and heat resistance than the latter. The ESI-MS, FT-IR and 13C-NMR results proved the reaction between HPF and AG. Because of the existence of branched ether groups in the 13C-NMR results of HPF/AG, the reaction between HPF and AG might mainly happened between hydroxymethyl groups and amino groups under a basic condition.Entities:
Keywords: cross-linker; dipeptide; hydroxymethyl phenol; soy-based adhesive
Year: 2016 PMID: 30974533 PMCID: PMC6432456 DOI: 10.3390/polym8070256
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Figure 1DSC results of soy-based adhesive (S), HPF and their mixture S/HPF.
Figure 2DMA results of soy-based adhesive and its mixture with HPF (S/HPF).
Figure 3ESI-MS spectra of N-(2)-l-alanyl-l-glutamine (AG), HPF and HPF/AG.
The main ion peaks of ESI-MS and their assignments.
| Experimental (Da) | Chemical Species | |||
|---|---|---|---|---|
| Samples | M + H+ | M + Na+ | M + K+ | |
| AG | 218 | 240 | 256 | |
| HPF | – | 159 | – | |
| – | 283 | – | ||
| – | 313 | – | ||
| – | 343 | – | ||
| – | 391 | – | ||
| HPF/AG | 336 | – | – | |
| 366 | – | – | ||
| 396 | – | – | ||
| 430 | – | – | ||
| 460 | – | – | ||
| 490 | – | – | ||
| 520 | – | – | ||
Figure 4FT-IR spectrum of N-(2)-l-alanyl-l-glutamine.
Figure 5FT-IR spectra of samples HPF and HPF/AG.
Figure 613C-NMR spectra of sample AG, HPF, HPF’ and HPF/AG.