Khatiwada Shankar P, Staudinger Ulrike, Jehnichen Dieter, Heinrich Gert, Adhikari Rameshwar
Research Center for Applied Science and Technology (RECAST), Tribhuvan University, P. O. Box 1030, Kirtipur, Kathmandu 44613, Nepal.
Nepal Polymer Institute (NPI), P. O. Box 24411, Kathmandu 44613, Nepal.
Polymers (Basel). 2020 Dec 29;13(1):96. doi: 10.3390/polym13010096.
The chemical modification (namely the epoxidation) of a star shaped block copolymer (BCP) based on polystyrene (PS) and polybutadiene (PB) and its effect on structural and mechanical properties of the polymer were investigated. Epoxidation degrees of 37 mol%, 58 mol%, and 82 mol% were achieved by the reaction of the copolymer with -chloroperoxy benzoic acid (-CPBA) under controlled conditions. The BCP structure was found to change from lamellae-like to mixed-type morphologies for intermediate epoxidation level while leading to quite ordered cylindrical structures for the higher level of chemical modification. As a consequence, the glass transition temperature () of the soft PB component of the BCP shifted towards significantly higher temperature. A clear increase in tensile modulus and tensile strength with a moderate decrease in elongation at break was observed. The epoxidized BCPs are suitable as reactive templates for the fabrication of nanostructured thermosetting resins.
研究了基于聚苯乙烯(PS)和聚丁二烯(PB)的星形嵌段共聚物(BCP)的化学改性(即环氧化)及其对聚合物结构和力学性能的影响。通过在受控条件下使共聚物与氯过氧苯甲酸(-CPBA)反应,实现了37摩尔%、58摩尔%和82摩尔%的环氧化度。发现对于中等环氧化水平,BCP结构从片层状转变为混合型形态,而对于较高水平的化学改性则导致相当有序的圆柱形结构。因此,BCP的软PB组分的玻璃化转变温度()向明显更高的温度移动。观察到拉伸模量和拉伸强度明显增加,而断裂伸长率适度降低。环氧化的BCP适合作为制备纳米结构热固性树脂的反应性模板。