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用于一锅法反应的精确二维图案化不兼容催化剂。

Precise 2D-Patterned Incompatible Catalysts for Reactions in One-Pot.

机构信息

Macromolecular Chemistry II, Bavarian Polymer Institute, University of Bayreuth, Universitätsstrasse 30, 95440, Bayreuth, Germany.

MOE Key Laboratory of Macromolecule Synthesis and Functionalization of Ministry of Education Department of Polymer Science and Engineering, Zhejiang University, Hangzhou, 310027, P.R. China.

出版信息

Chemistry. 2019 Oct 22;25(59):13640-13646. doi: 10.1002/chem.201903486. Epub 2019 Sep 19.

Abstract

Precise and direct two-dimensional (2D) printing of the incompatible polymer acid-base catalysts and their utility in one-pot two-step reactions were shown. Multistep catalytic reactions using incompatible catalysts in a one-pot reaction cascade requires special methods and materials to isolate the catalysts from each other. In general, this is a tedious process requiring special polymer architectures as the carrier for the catalysts to preserve the activity of otherwise incompatible catalysts. We propose the immobilization of incompatible polymer catalysts, such as polymer acid and base catalysts, on a substrate in variable sizes and amounts by precise 2D printing. The terpolymers with basic (4-vinylpyridine) and acidic (styrene sulfonic acid) functionalities and methacryloyl benzophenone as a UV cross-linking unit were used for 2D printing on poly(ethylene terephthalate) (PET). The printed meshes were immersed together in a reaction solution containing (dimethoxymethyl)benzene and ethyl cyanoformate, resulting in a two-step acid-base catalyzed cascade reaction; that is, deacetalization followed by carbon-building reaction. The time-dependent consumption of (dimethoxymethyl)benzene to the intermediate benzaldehyde and the product was monitored, and a kinetic model was developed to investigate the underlying reaction dynamics. The complexity of multistep Wolf-Lamb-type reactions was generally significantly decreased by using our approach because of the easy polymerization and immobilization procedure.

摘要

我们展示了精确且直接的二维(2D)打印不兼容的酸碱聚合物催化剂,以及它们在一锅两步反应中的应用。在一锅反应级联中使用不兼容的催化剂进行多步催化反应需要特殊的方法和材料将催化剂彼此隔离。一般来说,这是一个繁琐的过程,需要特殊的聚合物结构作为催化剂的载体,以保持否则不兼容的催化剂的活性。我们提出了通过精确的 2D 打印,将不兼容的聚合物催化剂(如酸碱聚合物催化剂)固定在底物上,其大小和数量可发生变化。具有碱性(4-乙烯基吡啶)和酸性(苯乙烯磺酸)官能团以及作为 UV 交联单元的甲丙烯酰基二苯甲酮的三元共聚物用于在聚对苯二甲酸乙二醇酯(PET)上进行 2D 打印。打印的网格一起浸入含有(二甲氧基甲基)苯和氰基甲酸乙酯的反应溶液中,导致两步酸碱催化级联反应,即脱乙酰基反应和碳构建反应。监测(二甲氧基甲基)苯到中间苯甲醛和产物的消耗随时间的变化,并开发了一个动力学模型来研究潜在的反应动力学。由于聚合和固定化过程简单,我们的方法通常可以显著降低多步 Wolf-Lamb 型反应的复杂性。

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