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Poly-(3-ethyl-3-hydroxymethyl)oxetanes—Synthesis and Adhesive Interactions with Polar Substrates

机译:聚(3-乙基-3-羟甲基)氧杂环丁烷—与极性底物的合成和胶粘相互作用

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摘要

Hyperbranched polyoxetanes are a relatively new class of polymers. These are branched polyethers that are synthesized from oxetanes—four-member cyclic ethers bearing hydroxymethyl groups—via ring-opening polymerization. Four series of polyoxetanes were synthesized from 3-ethyl-3-(hydroxymethyl)oxetane and 1,1,1-tris(hydroxymethyl)propane as a core molecule. Reagents ratios ranged from 1:5 to 1:50, theoretical molar mass ranged from 714 g/mol to 5942 g/mol, and dispersities ranged from 1.77 to 3.75. The morphology of the macromolecules was investigated by a matrix-assisted laser desorption/ionization time of flight technique. The polyoxetanes’ adhesive interactions with polar materials were analyzed and provided results as follows: the work of adhesion was 101–105 mJ/m , the bond-line tensile shear strengths were 0.39–1.32 MPa, and there was a brittle fracture mode within the polymer. The findings confirmed a good adhesion to polar substrates, but further research on polyoxetane modifications toward a reduction of brittleness is necessary.
机译:超支化聚氧杂环丁烷是一类相对较新的聚合物。这些是支链的聚醚,是通过开环聚合反应从氧杂环丁烷(带有羟甲基的四元环醚)合成的。以3-乙基-3-(羟甲基)氧杂环丁烷和1,1,1-三(羟甲基)丙烷为核心分子合成了四个系列的聚氧杂环丁烷。试剂比例范围为1:5至1:50,理论摩尔质量范围为714 g / mol至5942 g / mol,分散度范围为1.77至3.75。通过基质辅助激光解吸/电离飞行时间技术研究了大分子的形态。分析了聚氧杂环丁烷与极性材料的粘合作用,结果如下:粘合功为101–105 mJ / m,粘结线拉伸剪切强度为0.39–1.32 MPa,并且在内部存在脆性断裂模式聚合物。这些发现证实了对极性基材的良好粘合性,但是有必要对聚氧杂环丁烷进行改性以降低其脆性。

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