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基于菲咯啉的微孔有机聚合物作为用于有机转化的固定化钯催化剂的平台。

Phenanthroline-based microporous organic polymer as a platform for an immobilized palladium catalyst for organic transformations.

作者信息

Wang Chang-An, Nie Kun, Song Guo-Dong, Li Yan-Wei, Han Yin-Feng

机构信息

College of Chemistry and Chemical Engineering, Taishan University Tai'an Shandong 271000 P. R. China

Weifang University of Science and Technology, Shandong Peninsula Engineering Research Center of Comprehensive Brine Utilization Weifang 262700 P. R. China.

出版信息

RSC Adv. 2019 Mar 13;9(15):8239-8245. doi: 10.1039/c9ra00460b. eCollection 2019 Mar 12.

Abstract

Porous organic polymers have attracted significant attention owing to their large specific surface area, excellent chemical and thermal stability, and controllable skeletons. phenanthroline-based microporous organic polymer (Phen-MOP) has been synthesized a cost-effective method based on the Scholl reaction. The Phen-MOP polymer exhibits high surface area and good stability. Owing to the phenanthroline skeleton embedding into the microporous polymer framework, the Phen-MOP can serve as a platform to support a transition metal catalyst. After being post-modified with palladium acetate, the synthesized Phen-Pd-MOP framework can serve as a highly efficient heterogeneous catalyst for the Suzuki-Miyaura coupling reaction and the Heck coupling reaction. Moreover, the Phen-Pd-MOP catalyst could be reused at least 10-12 times without any significant loss of the catalytic activity.

摘要

多孔有机聚合物因其大比表面积、优异的化学和热稳定性以及可控的骨架结构而备受关注。基于菲咯啉的微孔有机聚合物(Phen-MOP)已通过基于肖尔反应的经济有效方法合成。Phen-MOP聚合物具有高表面积和良好的稳定性。由于菲咯啉骨架嵌入到微孔聚合物骨架中,Phen-MOP可作为支撑过渡金属催化剂的平台。用醋酸钯进行后修饰后,合成的Phen-Pd-MOP骨架可作为用于铃木-宫浦偶联反应和赫克偶联反应的高效多相催化剂。此外,Phen-Pd-MOP催化剂可以重复使用至少10-12次而催化活性没有任何显著损失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/920f/9061877/abc5b17052a7/c9ra00460b-s1.jpg

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