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首页> 外文期刊>Journal of Materials Science >C-13 CP/MAS NMR study of a wood/phenol-formaldehyde resin bondline
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C-13 CP/MAS NMR study of a wood/phenol-formaldehyde resin bondline

机译:木材/酚醛树脂粘合线的C-13 CP / MAS NMR研究

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摘要

The dynamics and interactions of a wood powder/phenol-formaldehyde (PF) resin composite are evaluated by solid-state 13 degrees C NMR. A 13 degrees C labeled and perdeuterated PF resin, with low molecular weight distribution, is synthesized and cured in the neat state and also in combination with yellow-poplar wood powder. The 13 degrees C NMR spectral features and cross-polarization dynamics of the PF hydroxymethyl and methylene nuclei are compared in the neat resin and in the wood powder composite. In the composite, a downfield shift of the PF hydroxyl bearing carbons suggests secondary interactions between the PF resin and wood. In addition, the PF resin methylene and hydroxymethyl carbons exhibit slower CP dynamics compared to the neat resin. Lower resin CP rates in the composite indicate lower molecular rigidity of the resin in presence of wood compared to the neat cured PF resin.
机译:木粉/酚醛(PF)树脂复合物的动力学和相互作用通过固态13 C NMR进行评估。具有13℃标记和全氘化的PF树脂,具有低分子量分布,可以在纯净状态下与黄杨木粉结合合成和固化。在纯树脂和木粉复合物中,比较了PF羟甲基和亚甲基核的13 C NMR光谱特征和交叉极化动力学。在复合材料中,PF羟基碳的低场迁移表明PF树脂与木材之间存在次级相互作用。此外,与纯树脂相比,PF树脂的亚甲基和羟甲基碳的CP动力学较慢。与纯净固化的PF树脂相比,复合材料中较低的CP树脂比率表明存在木材时树脂的分子刚性较低。

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