Klfout Hafsah A, Asiri Abdullah M, Alamry Khalid A, Hussein Mahmoud A
Chemistry Department, Faculty of Science, King Abdulaziz University P.O. Box 80203 Jeddah 21589 Saudi Arabia
Center of Excellence for Advanced Materials Research (CEAMR), King Abdulaziz University Jeddah 21589 Saudi Arabia.
RSC Adv. 2023 Jul 3;13(29):19817-19835. doi: 10.1039/d3ra03514j. eCollection 2023 Jun 29.
Polybenzoxazine (PBz) is an excellent and highly intriguing resin for various sophisticated uses. Benzoxazines have piqued the curiosity of academics worldwide because of their peculiar properties. Nonetheless, most benzoxazine resin manufacturing and processing methods, notably bisphenol A-based benzoxazine, rely on petroleum resources. Because of the environmental consequences, bio-based benzoxazines are being researched as alternatives to petroleum-based benzoxazines. As a result of the environmental implications, bio-based benzoxazines are being developed to replace petroleum-based benzoxazines, and they are gaining traction. Bio-based polybenzoxazine, epoxy, and polysiloxane-based resins have piqued the interest of researchers in coatings, adhesives, and flame-retardant thermosets in recent years due to their anticorrosion, ecologically friendly, affordable, and low water absorption properties. As a result, numerous scientific studies and patents on polybenzoxazine continues to rise in polymer research. Based on its mechanical, thermal, and chemical characteristics, bio-based polybenzoxazine has several applications, including coatings (anticorrosion and antifouling), adhesives (highly crosslinked network, outstanding mechanical and thermal capabilities), and flame retardants (with the high charring capability). This review reports an overview of polybenzoxazine, highlighting the current advances and progress in synthesizing bio-based polybenzoxazine, their properties, and their use in coating applications.
聚苯并恶嗪(PBz)是一种用于各种复杂用途的优秀且极具吸引力的树脂。苯并恶嗪因其独特的性能引起了全球学术界的关注。然而,大多数苯并恶嗪树脂的制造和加工方法,尤其是双酚A基苯并恶嗪,依赖于石油资源。由于环境影响,生物基苯并恶嗪正作为石油基苯并恶嗪的替代品进行研究。由于环境影响,生物基苯并恶嗪正在被开发以取代石油基苯并恶嗪,并且它们越来越受到关注。近年来,生物基聚苯并恶嗪、环氧树脂和聚硅氧烷基树脂因其防腐、生态友好、价格低廉和低吸水性等特性,引起了研究人员对涂料、粘合剂和阻燃热固性材料的兴趣。因此,在聚合物研究中,关于聚苯并恶嗪的众多科学研究和专利持续增加。基于其机械、热和化学特性,生物基聚苯并恶嗪有多种应用,包括涂料(防腐和防污)、粘合剂(高度交联网络、出色的机械和热性能)以及阻燃剂(具有高炭化能力)。本综述报告了聚苯并恶嗪的概述,突出了生物基聚苯并恶嗪合成、其性能及其在涂料应用中的当前进展。