Iwasaki Takanori, Yamada Yuto, Naito Naoki, Nozaki Kyoko
Department of Chemistry and Biotechnology, Graduate School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
J Am Chem Soc. 2024 Sep 18;146(37):25562-25568. doi: 10.1021/jacs.4c06553. Epub 2024 Aug 8.
The development of methods for the chemical recycling of polyurethanes is recognized as an urgent issue. Herein, we report the Ir-catalyzed hydrogenolysis of the urethane C-O bond to produce formamides and alcohols, where both formamides and ester and amide functionalities are tolerated. The chemoselectivity observed is counterintuitive to the generally accepted electrophilicity order of carbonyl compounds. Hydrogenolysis of urea and isocyanurate, potential byproducts in the polycondensation process of polyurethanes, is also achieved alongside the selective degradation of polyurethanes themselves, which affords diformamides and diols. The time-course of the hydrogenative polyurethane degradation reveals that the bond cleavage occurs not from the terminal, but from any part of the polymer chain. The present catalysis offers a novel method for the recycling of polyurethane-containing polymer waste.
聚氨酯化学循环方法的开发被认为是一个紧迫的问题。在此,我们报道了铱催化的氨基甲酸酯C-O键氢解反应,以生成甲酰胺和醇,其中甲酰胺以及酯和酰胺官能团均能耐受。观察到的化学选择性与普遍接受的羰基化合物亲电顺序相悖。在选择性降解聚氨酯本身生成二甲酰胺和二醇的同时,还实现了聚氨酯缩聚过程中潜在副产物尿素和异氰脲酸酯的氢解。氢化聚氨酯降解的时间进程表明,键断裂并非从聚合物链的末端发生,而是从聚合物链的任何部位发生。本催化反应为含聚氨酯的聚合物废料的回收提供了一种新方法。