Pd/In2O3 modified with ionic liquid catalyzed phenylacetylene carboxylation

离子液体 催化作用 羧化 化学 苯乙炔 吸附 纳米颗粒 产量(工程) 无机化学 氧气 离子键合 多相催化 光化学 有机化学 组合化学
作者
Xin Song,Mingyi Li,Jiaqi Xiong,Fangjun Shao,Zhongzhe Wei,Wenjuan Fang,Jianguo Wang
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:527: 171754-171754 被引量:1
标识
DOI:10.1016/j.cej.2025.171754
摘要

The carboxylation of alkynes with CO 2 is a pivotal reaction in organic synthesis. However, the generally poor adsorption and activation of CO 2 in heterogeneous catalytic systems have become a bottleneck problem restricting the efficiency of carboxylation reactions. In this study, we proposed a strategy for modifying heterogeneous catalysts with ionic liquid. By utilizing amino acid ionic liquids to modify the Pd/In 2 O 3 catalyst, the electronic structure of palladium (Pd) nanoparticles is optimized, and the adsorption and activation of CO 2 on the catalyst is enhanced. Additionally, the h-In 2 O 3 support not only regulates the electronic structure of Pd nanoparticles but also provides abundant oxygen vacancies, which facilitates the adsorption of CO 2 in the system. Due to the synergistic catalytic effects of the amino acid ionic liquid and the oxygen vacancies in the h-In 2 O 3 support, the Pd/h-In 2 O 3 -BmimPro catalyst demonstrates a remarkable phenylpropiolic acid yield of 93 % under mild conditions (50 °C, 0.5 MPa). This study provides valuable insights into the application of ionic liquid-modified catalysts in CO 2 conversion technologies. The ionic liquid is loaded on the surface of Pd/In 2 O 3 and commonly catalyzes the carboxylation reaction. • BmimPro modified Pd/h-In 2 O 3 catalyst. After modification, the electronic structure of Pd nanoparticles was optimized. • The CO 2 capture by ILs and the CO 2 activation at oxygen vacancies synergistically enhance the CO 2 conversion efficiency. • The support regulates the electronic structure of Pd, enhancing the adsorption of alkynes. • ILs modification strategies provide new insights for other CO 2 catalytic conversion systems.
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