Ullah Khan Munir, Ullah Khan Safir, Cao Xiaohan, Usman Muhammad, Yue Xinchen, Ghaffar Abdul, Hassan Muhammad, Zhang Chengjian, Zhang Xinghong
State Key Laboratory of Motor Vehicle Biofuel Technology, International Research Center for X Polymers, Department of Polymer Science and Engineering, Zhejiang University, 310027, Hangzhou, P. R. China.
Hefei National Laboratory for Physical Science at the Microscale, School of Life Sciences, University of Science and Technology of China, 230027, Hefei, P. R. China.
Chem Asian J. 2023 Jan 3;18(1):e202201050. doi: 10.1002/asia.202201050. Epub 2022 Nov 24.
This study demonstrates the superiority of a stable and well-defined heterogeneous cobalt hexacyanocobaltate (Co [Co(CN) ] ), a typical cobalt Prussian Blue Analogue (CoCo-PBA) that catalyzes the copolymerization of carbonyl sulfide (COS) and propylene oxide (PO) to produce poly(propylene monothiocarbonate)s (PPMTC). The number-average molecular weights of the PPMTC were 66.4 to 139.4 kg/mol, with a polydispersity of 2.0-3.9. The catalyst productivity reached 1040 g polymer/g catalyst (12.0 h). The oxygen-sulfur exchange reaction (O/S ER), which would generate random thiocarbonate and carbonate units, was effectively suppressed, and thus the selectivity of the monothiocarbonate over carbonate linkages was up to >99%. It was shown that no cyclic thiocarbonate byproduct was produced during the heterogeneous catalysis of COS/PO copolymerization using CoCo-PBA as the catalyst. The content of monothiocarbonate and ether units in the copolymer chain could be regulated by tuning the feeding amount of COS.
本研究证明了稳定且明确的异质六氰合钴酸钴(Co[Co(CN)₆])的优越性,它是一种典型的钴普鲁士蓝类似物(CoCo-PBA),可催化羰基硫(COS)和环氧丙烷(PO)的共聚反应以生成聚(丙烯单硫代碳酸酯)(PPMTC)。PPMTC的数均分子量为66.4至139.4 kg/mol,多分散性为2.0 - 3.9。催化剂生产率达到1040 g聚合物/g催化剂(12.0小时)。有效抑制了会产生无规硫代碳酸酯和碳酸酯单元的氧硫交换反应(O/S ER),因此单硫代碳酸酯相对于碳酸酯键的选择性高达>99%。结果表明,以CoCo-PBA为催化剂进行COS/PO共聚的多相催化过程中未产生环状硫代碳酸酯副产物。共聚物链中单硫代碳酸酯和醚单元的含量可通过调节COS的进料量来调控。