International Center for Research on Innovative Biobased Materials (ICRI-BioM)-International Research Agenda, Lodz University of Technology, Żeromskiego 116, 90-924, Lodz, Poland.
Sustainable Polymer Chemistry, Department of Molecules and Materials, MESA+ Institute for Nanotechnology, Faculty of Science and Technology, Universiteit Twente, PO Box 217, Enschede, 7500 AE, the Netherlands.
Chemosphere. 2022 Dec;308(Pt 2):136381. doi: 10.1016/j.chemosphere.2022.136381. Epub 2022 Sep 8.
Marine plastic pollution caused by non-biodegradable polymers is a major worldwide concern. So-called "biodegradable" polymers should reduce plastic pollution in the environment by the safeguard of biodegradation. However, many polyesters degrade very slowly in seawater. We therefore designed a systematic library of "breaking points" that are installed into a polylactide backbone and simulated their degradation mechanisms, including internal and external S2 mechanisms, Addition-Elimination (AE) mechanisms, and RNA-inspired mechanisms. The breaking points are composed of phosphoesters with pendant nucleophiles directly at the P-atom, or structurally similar silicones, or side-chain functional polyesters. All P-containing breaking points react via the RNA-inspired mechanism, while Si-containing linkers undergo decomposition via the A-E mechanism. For C-containing linkers, only when a long pendant chain (4 carbon atoms) is present can the reaction proceed via the RNA-inspired mechanism. In cases of shorter pendants, the Addition-Elimination (AE) mechanism is energetically favorable. We believe that these calculations will pave the way for the synthesis of exceptionally seawater-degradable polyesters in the future that can act as a safeguard to prevent microplastic formation after eventual littering.
海洋塑料污染是由不可生物降解的聚合物引起的,这是一个全球性的主要问题。所谓的“可生物降解”聚合物应该通过生物降解来减少环境中的塑料污染。然而,许多聚酯在海水中降解得非常缓慢。因此,我们设计了一个系统的“断键”库,这些断键安装在聚乳酸主链上,并模拟了它们的降解机制,包括内部和外部 S2 机制、加成消除(AE)机制和 RNA 启发机制。断键由直接在 P 原子上带有亲核试剂的磷酸酯、结构相似的硅酮或侧链功能聚酯组成。所有含 P 的断键都通过 RNA 启发机制反应,而含 Si 的连接物则通过 AE 机制分解。对于 C 键连接物,只有当存在长的侧链(4 个碳原子)时,反应才能通过 RNA 启发机制进行。在较短的侧链情况下,加成消除(AE)机制在能量上是有利的。我们相信,这些计算将为未来合成具有特殊海水降解性的聚酯铺平道路,这些聚酯可以作为防止最终乱扔垃圾后形成微塑料的保护措施。