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Properties of acrylic pressure sensitive adhesives combining classical and mussel-inspired mechanisms of adhesion

机译:丙烯酸压敏粘合剂的性质结合古典和贻贝的粘附机制

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Modification of acrylic PSA with catechol moieties leads to significant enhancement of adhesion. The hybrid bio-rheological mechanism of adhesion is fully observed when the content of catechol groups in the MIPSA reaches certain limit and adhesion becomes practically temperature independent. The mussel-inspired acrylic PSAs also demonstrate quite close consistence with the Dahlquist criterion of tack. MIPSAs with comparatively low content of catechol demonstrate increasing tack (W_A=178 J/m~2 for MIPSA, containing 4.5%mol of DHP), whereas the MIPSA, overloaded with catechol moieties, exhibit temperature-independent character of adhesion. Both these PSAs can be considered as effective platforms for the development of bio-inspired adhesives of new generation.
机译:用儿茶酚部分改性丙烯酸类PSA导致粘附性的显着增强。当MIPSA中的儿茶酚基团达到某些极限和粘合时,完全观察到粘合性的杂交生物流变机制,并且粘附变为实际温度。贻贝启发的丙烯酸PSA也表现出相当紧密的粘性标准的粘性标准。具有相对较低的儿茶酚含量的MIPSA,证明了含有4.5%摩尔DHP的MIPSA的粘性粘性(W_A = 178 J / m〜2),而MIPSA与儿茶酚部分过载,表现出粘附温度无关的特征。这两个PSA都可以被认为是开发新一代生物启发粘合剂的有效平台。

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