Suppr超能文献

可生物降解的乙烯基聚合物在防治海洋生物污损中的应用。

Degradable Vinyl Polymers for Combating Marine Biofouling.

机构信息

Faculty of Materials Science and Engineering, South China University of Technology, Guangzhou 510640, China.

出版信息

Acc Chem Res. 2022 Jun 7;55(11):1586-1598. doi: 10.1021/acs.accounts.2c00187. Epub 2022 May 11.

Abstract

Marine organisms such as barnacle larvae and spores of algae adhere to underwater surfaces leading to marine biofouling. This phenomenon has numerous adverse impacts on marine industries and maritime activities. Due to the diversity of fouling organisms and the complexity of the marine environment, it is a huge challenge to combat marine biofouling, which limits the development and utilization of marine resources. Since the International Marine Organization banned the use of tributyltin self-polishing copolymer (SPC) coatings in 2008, the development of an environmentally friendly and efficient anti-biofouling polymer has been the most important task in this field. Tin-free SPC is a well-established and widely used polymer binder for anti-biofouling coating today. Being a nondegradable vinyl polymer, SPC exhibits poor anti-biofouling performance in static conditions. Even more, such nondegradable polymers were considered to be a source of microplastics by the International Union for the Conservation of Nature in 2019. Recently, numerous degradable polymers, which can form dynamic surface through main chain scission, have been developed for preventing marine biofouling in static conditions. Nevertheless, the regulation of their degradation and mechanical properties is limited, and they are also difficult to functionalize. A new polymer combining the advantages of vinyl polymers and degradable polymers is needed. However, such a combination is a challenge since the former are synthesized via free radical polymerization whereas the latter are synthesized via ring-opening polymerization.In this Account, we review our recent progress toward degradable vinyl polymers for marine anti-biofouling in terms of polymerization methods and structures and properties of polymers. First, we introduce the strategies for preparing degradable vinyl polymers with an emphasis on hybrid copolymerization. Then, we present the synthesis and performance of degradable and hydrolyzable polyacrylates, degradable polyurethanes with hydrolyzable side groups, and surface-fragmenting hyperbranched polymers. Polymers with degradable main chains and hydrolyzable side groups combine the advantages of SPC and degradable polymers, so they are degradable and functional. They are becoming new-generation polymers with great potential for preparing high-efficiency, long-lasting, environmentally friendly and broad-spectrum coatings to inhibit marine biofouling. They can also find applications in wastewater treatment, biomedical materials, and other fields.

摘要

海洋生物,如藤壶幼虫和藻类孢子,会附着在水下表面,导致海洋生物污损。这种现象对海洋产业和海上活动有许多不利影响。由于污损生物的多样性和海洋环境的复杂性,防治海洋生物污损是一个巨大的挑战,这限制了海洋资源的开发和利用。自国际海事组织于 2008 年禁止使用三丁基锡自抛光共聚物 (SPC) 涂料以来,开发环保、高效的防污聚合物一直是该领域的最重要任务。无锡 SPC 是当今防污涂料中一种成熟且广泛使用的聚合物粘合剂。作为一种不可降解的乙烯基聚合物,SPC 在静态条件下表现出较差的防污性能。更糟糕的是,2019 年,国际自然保护联盟认为此类不可降解聚合物是微塑料的来源。最近,为了在静态条件下防止海洋生物污损,已经开发出许多可通过主链断裂形成动态表面的可降解聚合物。然而,它们的降解和机械性能受到限制,并且也难以功能化。需要一种结合了乙烯基聚合物和可降解聚合物优点的新型聚合物。然而,由于前者是通过自由基聚合合成的,而后者是通过开环聚合合成的,因此这种组合具有挑战性。在本报告中,我们根据聚合方法和聚合物的结构和性能,综述了我们在用于海洋防污的可降解乙烯基聚合物方面的最新进展。首先,我们介绍了制备可降解乙烯基聚合物的策略,重点介绍了杂化共聚。然后,我们介绍了可降解和可水解的聚丙烯酸酯、带有可水解侧基的可降解聚氨酯以及表面碎裂的超支化聚合物的合成和性能。具有可降解主链和可水解侧基的聚合物结合了 SPC 和可降解聚合物的优点,因此它们是可降解和功能化的。它们正在成为新一代聚合物,具有制备高效、持久、环保和广谱防污涂料的巨大潜力,可抑制海洋生物污损。它们还可以在废水处理、生物医学材料和其他领域得到应用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验