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Emergence of Polymeric Material Utilising Sustainable Radiation Curable Palm Oil-Based Products for Advanced Technology Applications

机译:利用可持续辐射固化棕榈油基产品进行高分子材料的出现用于先进技术应用

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摘要

In countries that are rich with oil palm, the use of palm oil to produce bio-based acrylates and polyol can be the most eminent raw materials used for developing new and advanced natural polymeric materials involving radiation technique, like coating resins, nanoparticles, scaffold, nanocomposites, and lithography for different branches of the industry. The presence of hydrocarbon chains, carbon double bonds, and ester bonds in palm oil allows it to open up the possibility of fine-tuning its unique structures in the development of novel materials. Cross-linking, reversible addition-fragmentation chain transfer (RAFT), polymerization, grafting, and degradation are among the radiation mechanisms triggered by gamma, electron beam, ultraviolet, or laser irradiation sources. These radiation techniques are widely used in the development of polymeric materials because they are considered as the most versatile, inexpensive, easy, and effective methods. Therefore, this review summarized and emphasized on several recent studies that have reported on emerging radiation processing technologies for the production of radiation curable palm oil-based polymeric materials with a promising future in certain industries and biomedical applications. This review also discusses the rich potential of biopolymeric materials for advanced technology applications.
机译:在富含油棕国家,使用棕榈油来生产生物基丙烯酸酯和多元醇可用于开发涉及辐射技术,像涂料树脂,纳米粒子,支架新的和先进的天然高分子材料的最杰出的原材料,纳米复合材料,并刻制业的不同分支。烃链,碳双键,且在棕榈油酯键的存在允许其打开的微调其独特的结构的新型材料的发展的可能性。交联,可逆加成 - 断裂链转移(RAFT)聚合,接枝,和降解是通过γ,电子束,紫外光或激光辐照源引发的辐射机制之间。这些辐射技术被广泛应用于高分子材料的发展,因为它们被认为是最通用,廉价,简便,有效的方法。因此,本文综述,并强调对已报道了新兴的辐射加工技术生产的辐射固化棕榈油基聚合物材料在某些行业和生物医学应用前景广阔一些最近的研究。这项审查还讨论了先进的技术应用的生物聚合材料的丰富潜力。

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