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Ultralow dielectric, high performing hyperbranched epoxy thermosets: synthesis, characterization and property evaluation

机译:超低介电,高性能超支化环氧热固性塑料:合成,表征和性能评估

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In the present report, low viscosity hyperbranched epoxy resins are synthesized using a simple A(2) + B-4 polycondensation reaction between pentaerythritol and the in situ prepared diglycidyl ether of bisphenol-A, with variation of the reaction time and amount of B-4 reactant. The structural features and degree of branching (DB) of the hyperbranched epoxy resins are determined by spectroscopic analyses, such as FTIR, H-1 NMR and C-13 NMR studies. The highest DB (0.78) with the lowest epoxy equivalent (394 g eq(-1)), viscosity (2.99 Pa s) and specific gravity (1.03) values is found for the resin formed after a reaction time of 4 h with 10 wt% pentaerythritol. The thermoset of the same resin also exhibits the highest tensile strength (51 MPa), elongation at break (37.5%), toughness (1432 MPa), adhesive strength (3429 MPa) and thermal stability (similar to 300 degrees C), as well as the lowest dielectric constant (1.8), dielectric loss (0.009) and moisture absorption (0.09%). The results are also compared with a linear diglycidyl ether of bisphenol-A based epoxy (without the addition of pentaerythritol) prepared under the same conditions. The study also shows that the hyperbranched epoxy is superior in terms of physical properties as well as performance (especially, the toughness value is 800% higher) compared to the linear analog. Thus the synthesized hyperbranched epoxy thermoset can solve the genuine problem of the brittleness character of the conventional epoxy. This epoxy thermoset can also be used efficiently as a low dielectric adhesive material in the field of electronics.
机译:在本报告中,使用季戊四醇与原位制备的双酚A二缩水甘油醚之间的简单A(2)+ B-4缩聚反应,随反应时间和B-用量的变化,合成了低粘度超支化环氧树脂。 4反应物。超支化环氧树脂的结构特征和支化度(DB)通过光谱分析,例如FTIR,H-1 NMR和C-13 NMR研究确定。对于在10 wt%的条件下反应4小时后形成的树脂,发现其最高DB(0.78),最低环氧当量(394 g eq(-1)),粘度(2.99 Pa s)和比重(1.03)值。 %季戊四醇。相同树脂的热固性也表现出最高的拉伸强度(51 MPa),断裂伸长率(37.5%),韧性(1432 MPa),粘合强度(3429 MPa)和热稳定性(类似于300摄氏度)最低介电常数(1.8),介电损耗(0.009)和吸湿率(0.09%)。还将结果与在相同条件下制备的双酚A基环氧线性二缩水甘油醚(不添加季戊四醇)进行比较。研究还表明,与线性类似物相比,超支化环氧树脂在物理性能和性能方面(尤其是韧性值高出800%)都更为出色。因此,合成的超支化环氧热固性树脂可以解决传统环氧树脂的脆性特性的真正问题。该环氧热固性材料还可以有效地用作电子领域中的低介电粘合材料。

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