Facile Synthesis of Functional Polytrithiocarbonates from Multicomponent Tandem Polymerizations of CS2, Thiols, and Alkyl Halides

IF 14.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Longbin Chen, Rongrong Hu, Ben Zhong Tang
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Abstract

Polytrithiocarbonates have attracted significant attention recently because of their good thermal stability, light refractivity, crystallinity, and mechanical properties; however, the exploration of their structures and functionalities has been limited by their synthetic approaches. Multicomponent polymerization featuring simple monomers, mild conditions, diversified product structures, and high efficiency could provide a powerful and versatile tool to synthesize various polytrithiocarbonates from commercially available monomers. Herein, a robust and efficient multicomponent tandem polymerization (MCTP) of CS2, dithiols, and alkyl halides was developed in DMF with K2CO3 at room temperature in air to synthesize 12 polytrithiocarbonates with diversified and systematically tuned structures, high molecular weights (Mns up to 37900 g/mol), and high yields (up to 93%). Depending on the different polymer backbone structures, amorphous polytrithiocarbonates showed excellent breaking elongations, and crystallinic polytrithiocarbonates possessed a large process temperature window (about 200 °C) and good mechanical performance (σB of 23.6 MPa and εB of 858%), whose tensile strength could be dramatically enhanced to 87.5 MPa after uniaxial extension deformation. The upper critical solution temperature (UCST) in organic solvents, together with nonconventional luminescence, were observed for the crystallinic polytrithiocarbonates, even without any aromatic ring. This efficient, robust, mild, and economic MCTP of CS2 thus opened up an avenue for the facile construction of polytrithiocarbonates with structural diversity, bringing modulable mechanical, thermal, luminescent, and thermal-responsive properties, which would greatly broaden the scope of structures and applications of sulfur-containing polymers.

Abstract Image

从 CS2、硫醇和烷基卤化物的多组分串联聚合反应中简便合成功能性聚三硫代碳酸酯
聚三硫代碳酸盐具有良好的热稳定性、光折射率、结晶性和力学性能,近年来引起了广泛的关注;然而,对其结构和功能的探索受到其合成方法的限制。多组分聚合具有单体简单、反应条件温和、产物结构多样、效率高等特点,为从市产单体合成多种聚三硫代碳酸盐提供了强有力的工具。本文在室温、空气中以K2CO3为催化剂,在DMF中制备了CS2、二硫醇和卤代烷的多组分串联聚合(MCTP),合成了12种结构多样、结构有序的聚三硫代碳化物,分子量高达37900 g/mol,产率高达93%。根据聚合物骨架结构的不同,非晶态聚三硫碳化物具有优异的断裂伸长率,结晶型聚三硫碳化物具有较大的工艺温度窗(约200℃)和良好的力学性能(σB为23.6 MPa, εB为858%),经单轴拉伸变形后拉伸强度可显著提高至87.5 MPa。在不含芳环的情况下,对结晶型聚三硫代碳化物在有机溶剂中的最高临界溶解温度(UCST)和非常规发光进行了观察。这种高效、坚固、温和、经济的CS2 MCTP为结构多样的聚三硫碳化物的便捷构建开辟了一条道路,带来了可调的机械、热、发光和热响应性能,这将极大地拓宽含硫聚合物的结构和应用范围。
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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