Bio-based healable thermoset polyurethanes containing dynamic phenol-carbamate bonds derived from quercetin and poly(trimethylene glycol)

被引:0
|
作者
Kubota, Ryuki [1 ]
Shibata, Mitsuhiro [1 ]
机构
[1] Chiba Inst Technol, Fac Engn, Dept Appl Chem, 2-17-1 Tsudanuma, Narashino, Chiba 2750016, Japan
关键词
Bio-based polyurethane network; Healing properties; Phenol-carbamate; Quercetin; Poly(trimethylene glycol); SUCROSE;
D O I
10.1007/s10965-025-04288-1
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Bio-based healable polymer networks have attracted considerable attention because of their carbon neutrality and healability, which lead to long material life. In this study, mixtures of quercetin (QC), a 1/2 adduct (PO2PDI) of poly(trimethylene glycol) (PO3G) and 1,5-pentamethylene diisocyanate (PDI), and PDI trimer (PDIT) [QC (mol-OH):PO2PDI (mol-NCO):PDIT (mol-NCO) = 5(10 + alpha)/3:10:alpha] were thermally cured to produce fully bio-based polyurethane networks (BPUN-alpha, alpha = 0, 3, and 5), and the influence of the molar ratios of QC:PO2PDI:PDIT on the thermal, mechanical, and healing properties of the BPUNs were investigated. Differential scanning calorimetry revealed that BPUN-0 exhibited only one glass transition temperature (Tg), whereas BPUN-3 and BPUN-5 showed two Tgs ascribed to the glass transition of the PO2PDI/QC and QC/PDIT-rich components in consistent with the result of dynamic mechanical analysis. The tensile strength and modulus of BPUN-alpha increased with increasing alpha owing to the increasing crosslinking density. The decomposition test of the cured product of QC and PDI in excess 1-hexanol revealed that the dissociation of phenol-carbamate bonds started at approximately 100-120 degrees C. The BPUNs were subjected to healing by pressing at 120 degrees C under 1 MPa for 1 h at least thrice; the healing efficiency in terms of tensile strength for the once-healed BPUNs was higher than 90%.
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页数:15
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