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首页> 外文期刊>Iranian polymer journal >Star-shaped polylactic acid-based triazine dendrimers: the catalyst type and time factors influence on polylactic acid molecular weight
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Star-shaped polylactic acid-based triazine dendrimers: the catalyst type and time factors influence on polylactic acid molecular weight

机译:基于星形聚酸的三嗪树枝状大分子:催化剂类型和时间因素对聚乳酸分子量的影响

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摘要

Nowadays, extensive environmental problems due to the use of synthetic polymers have provoked efforts for their replacement with biopolymers as the most important research priorities. Polylactic acid (PLA) is one of the well-known biodegradable biopolymers. In this work, for the first time, PLA was modified with hydrophilic triazine-based dendrimers to obtain PLA with improved hydrophilic properties. In this regard, at first, dl-lactic acid (DLLA) was polymerized through the melt polycondensation to obtain poly-dl-lactic acid (PDLLA). The effects of reaction time and catalyst types on the molecular weight of the PDLLA were investigated. Also, the thermal behavior of PDLLAs with different molecular weights was evaluated using differential scanning calorimetry (DSC) technique. The obtained results from the DSC analysis showed that the PDLLA with higher molecular weight has a higher glass transition temperature (T-g) and melting point (T-m). In the following, various generations (G) of the triazine-based dendrimers were synthesized. To increase the hydrophilicity of the prepared PDLLA, chemical modification of PDLLA with the different generations of triazine-based dendrimer (G(1), G(1.5) and G(2)) was performed. Due to the modification of PDLLA with dendrimers, the number of functional groups and hydrophilicity of PDLLA increased. Based on the obtained results, it is expected that the prepared systems could be a good and promising candidate for the production of biocompatible plastics with more hydrolytic degradation ability.
机译:如今,由于使用合成聚合物而导致的广泛的环境问题引起了与生物聚合物替代的努力作为最重要的研究优先事项。聚乳酸(PLA)是众所周知的可生物降解的生物聚合物之一。在这项工作中,首次使用亲水性三嗪基树枝状晶仪进行修饰,得到PLA,具有改善的亲水性。在这方面,首先,通过熔融缩聚聚合DL-乳酸(DLLA),得到聚-DL-乳酸(PDLLA)。研究了反应时间和催化剂类型对PDLLA分子量的影响。此外,使用差示扫描量热法(DSC)技术评估具有不同分子量的PDLLA的热行为。来自DSC分析的得到的结果表明,具有较高分子量的PDLLA具有更高的玻璃化转变温度(T-G)和熔点(T-M)。在下文中,合成了基于三嗪的树枝状过敏仪的各种代(g)。为了增加制备的PDLLA的亲水性,进行具有不同几代三嗪基树枝状聚合物(G(1),G(1.5)和G(2))的PDLLA的化学改性。由于具有树枝状体的PDLLA的修饰,PDLLA的官能团和亲水性增加。基于所得的结果,预计制备的系统可能是生产生物相容性塑料的良好和有前途的候选者,具有更多的水解降解能力。

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