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Dielectric properties of silicon dioxide/wood composite

机译:二氧化硅/木材复合材料的介电性能

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For a better understanding of the binding between silicon dioxide and wood as well as the dielectric properties of silicon dioxide/wood composite, dielectric relaxation was measured for untreated wood [Cunninghamia lanceolata (Lamb.) Hook] and for silicon dioxide/wood composite with different weight percentage gain (WPG). Cole-Cole's circular arc law, distribution spectrum of relaxation time and relation model were applied to the results of relaxation due to motions of the methylol groups. The results were as follows. The generalized relaxation time and ε_s - ε_∞ decreased with increasing WPG. The distribution spectrum of relaxation time decreased more and more and broadened with increasing WPG. The methylol group in the amorphous region of the wood cell wall participated in hydrolysis reaction and condensation reaction caused by tetraethyl-orthosilicate (TEOS), and there is a cross-link between silicon dioxide and wood. The value of apparent activation energy (ΔE) increased for silicon dioxide/wood composite, and increased with increasing WPG. Activation enthalpy (ΔH) and activation entropy (ΔS) increased, while activation free energy (ΔG) decreased with increasing WPG. The number of hydroxyl groups cut in dielectric relaxation increased with increasing WPG.
机译:为了更好地了解二氧化硅和木材之间的结合力以及二氧化硅/木材复合材料的介电性能,对未经处理的木材[Cunninghamia lanceolata(Lamb。)Hook]以及不同种类的二氧化硅/木材复合材料测量了介电弛豫体重增加百分比(WPG)。将Cole-Cole的圆弧定律,弛豫时间分布谱和关系模型应用于由羟甲基运动引起的弛豫结果。结果如下。随着WPG的增加,广义弛豫时间和ε_s-ε_∞减小。随着WPG的增加,弛豫时间的分布范围越来越小,并且变宽。木材细胞壁无定形区域中的羟甲基参与了原硅酸四乙酯(TEOS)引起的水解反应和缩合反应,并且二氧化硅和木材之间存在交联。对于二氧化硅/木材复合材料,表观活化能(ΔE)的值增加,并且随着WPG的增加而增加。随着WPG的增加,活化焓(ΔH)和活化熵(ΔS)增加,而活化自由能(ΔG)降低。随着WPG的增加,介电弛豫中切割的羟基数目增加。

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