双pnp配体修饰pd催化剂对氨基羰基化-甲氧基羰基化-环化三步串联反应的级联催化

IF 6.5 1区 化学 Q2 CHEMISTRY, PHYSICAL Journal of Catalysis Pub Date : 2025-01-11 DOI:10.1016/j.jcat.2025.115964
Guang-Hui Shi, Yu-Fen Xie, Guo-Sheng Zhang, Pei-Ying Peng, Long-Gen Hu, Chen Chen, Xiao-Li Zhao, Yong Lu, Ye Liu
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引用次数: 0

摘要

合成了一系列碱基内嵌的pnp配体(L1-L4),并对其进行了表征。这些配体的合成方法简单有效,不需要高风险的BuLi或高成本的过渡金属催化剂。在L1的吡嗪基叔胺基双pnp配体的辅助下,在胺和MeOH的亲核试剂共存的情况下,通过氨基羰基化-甲氧基羰基化-环化的一锅三步串联反应,末端炔顺利转化为n-取代琥珀酰亚胺,分离产率中等至优异。所研制的L1-Pd(MeCN)2Cl2催化剂表现出典型的级联催化作用,在各个反应步骤上表现出不同的性能。支化的α,β-不饱和酰胺的第二步甲氧羰基化为ω-酰胺酯,为炔、CO和伯胺成功生产n -取代琥珀酰亚胺提供了良好的迂回途径。
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Cascade catalysis of bis-PNP-ligand-modified Pd-catalyst for three-step aminocarbonylation-methoxycarbonylation-cyclization tandem reaction for synthesis of N-substituted succinimides from terminal alkynes
A series of base-built-in-PNP-ligands (L1-L4) were synthesized and fully characterized. The synthesis methodology for these ligands were simple and efficient without involvement of high-risky BuLi or high-cost transition metal catalysts. With the aid of the pyrazinyl-tertiary amine-based bis-PNP ligand of L1, in the coexistence of the nucleophiles of amine and MeOH, the terminal alkynes smoothly converted to N-substituted succinimides in moderate to excellent isolated yields, via one-pot three-step tandem reaction in aminocarbonylation-methoxycarbnylation-cyclization sequence. The developed L1-Pd(MeCN)2Cl2 catalyst exhibited typical cascade catalysis with divergent performance towards each individual reaction-step. And the second-step methoxycarbonylation of the branched α,β-unsaturated amides towards ω-amido esters was a decent detour for the successful production of N-substituted succinimides from alkynes, CO and primary amines.
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来源期刊
Journal of Catalysis
Journal of Catalysis 工程技术-工程:化工
CiteScore
12.30
自引率
5.50%
发文量
447
审稿时长
31 days
期刊介绍: The Journal of Catalysis publishes scholarly articles on both heterogeneous and homogeneous catalysis, covering a wide range of chemical transformations. These include various types of catalysis, such as those mediated by photons, plasmons, and electrons. The focus of the studies is to understand the relationship between catalytic function and the underlying chemical properties of surfaces and metal complexes. The articles in the journal offer innovative concepts and explore the synthesis and kinetics of inorganic solids and homogeneous complexes. Furthermore, they discuss spectroscopic techniques for characterizing catalysts, investigate the interaction of probes and reacting species with catalysts, and employ theoretical methods. The research presented in the journal should have direct relevance to the field of catalytic processes, addressing either fundamental aspects or applications of catalysis.
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