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首页> 外文期刊>ACS applied materials & interfaces >Strong, Rebondable, Dynamic Cross-Linked Cellulose Nanocrystal Polymer Nanocomposite Adhesives
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Strong, Rebondable, Dynamic Cross-Linked Cellulose Nanocrystal Polymer Nanocomposite Adhesives

机译:强,折衷,动态交联纤维素纳米晶聚合物纳米复合粘合剂

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A series of strong, rebondable polydisulfide nanocomposite adhesive films have been prepared via the oxidation of a thiol-endcapped semicrystalline oligomer with varying amounts of thiol-functionalized cellulose nanocrystals (CNC-SH). The nanocomposites are designed to have two temperature-sensitive components: (1) the melting of the semicrystalline phase at ca. 70 degrees C and (2) the inherent dynamic behavior of the disulfide bonds at ca. 150 degrees C. The utility of these adhesives was demonstrated on different bonding substrates (hydrophilic glass slides and metal), and their bonding at both 80 and 150 degrees C was examined. In all cases, stronger bonding was achieved at temperatures where the disulfide bonds are dynamic. For high surface energy substrates, such as hydrophilic glass or metal, the adhesive shear strength increases with CNC-SH content, with the 30 wt % CNC-SH composites exhibiting adhesive shear strengths of 50 and 23 MPa for hydrophilic glass and metal, respectively. The effects of contact pressure and time of bonding were also investigated. It was found that ca. 20-30 min bonding time was required to reach maximum adhesion, with adhesives containing higher wt % CNCs requiring longer bonding times. Furthermore, it was found that, in general, an increase in contact pressure results in an increase in the shear strength of the adhesive. The rebonding of the adhesives was demonstrated with little-to-no loss in adhesive shear strength. In addition, the 30 wt % nanocomposite adhesive was compared to some common commercially available adhesives and showed significantly stronger shear strengths when bonded to metal.
机译:通过具有不同量的硫醇官能化纤维素纳米晶体(CNC-SH),通过氧化硫醇端包的半结寡体氧化物(CNC-SH),通过氧化硫醇端封端的半结石聚合物制备了一系列强螺母含有纳米复合粘合剂膜。纳米复合材料设计成具有两个温度敏感的组分:(1)在CA的半结晶相熔化。 70摄氏度和(2)CA的二硫键固有的动态行为。在不同的粘合基材(亲水玻璃载玻片和金属)上证明了这些粘合剂的效用,检查了80℃和150℃的粘合。在所有情况下,在二硫键是动态的温度下实现更强的结合。对于高表面能底物,例如亲水性玻璃或金属,粘合剪切强度随CNC-SH含量增加,30wt%CNC-SH复合材料分别具有50和23MPa的粘合强度,分别用于亲水性玻璃和金属。还研究了接触压力和粘合时间的影响。发现了CA.需要20-30分钟的粘合时间来达到最大粘合力,粘合剂含有更高的WT%CNC,需要更长的键合时间。此外,发现通常,接触压力的增加导致粘合剂的剪切强度的增加。粘合剂的钢筋略微对粘合剂剪切强度的损失。此外,将30wt%纳米复合粘合剂与一些常见的商购粘合剂进行比较,并且在粘合到金属时显示出明显较强的剪切强度。

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