固定化铱催化剂上对氢丁烯加氢反应

IF 1.3 4区 化学 Q4 CHEMISTRY, PHYSICAL
D. B. Burueva, I. V. Skovpin, L. M. Kovtunova, E. S. Kononenko, V. I. Bukhtiyarov, I. V. Koptyug
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引用次数: 0

摘要

通过与2-二苯基膦酰乙基功能化硅胶的- pph2基团相互作用,固定化二聚物Ir - P@SiO2催化剂。该催化剂在丁炔(1-丁炔和2-丁炔)与对氢加氢反应中进行了测试。实验观测到的超极化产物的1H NMR谱与用自旋密度矩阵形式模拟的理论PASADENA谱拟合良好。产物的1H NMR谱线分析表明,催化剂在该反应中具有立体选择性,并发生了p-H2的同步加成反应。此外,我们还证明了顺-2-丁烯的超极化核磁共振信号的线形指示了它的形成机制。结果表明,1-丁烯加氢过程中产生的2-丁烯是由超极化的1-丁烯异构化形成的。1-丁烯最大1H极化水平为5.2±0.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Butynes Hydrogenation with Parahydrogen over Immobilized Iridium Catalyst

Butynes Hydrogenation with Parahydrogen over Immobilized Iridium Catalyst

The Ir–P@SiO2 catalyst was prepared by immobilizing a dimeric Ir complex via interaction with –PPh2 groups of 2-diphenylphosphinoethyl-functionalized silica gel. The catalyst was tested in hydrogenations of butynes (1-butyne and 2-butyne) with parahydrogen. The experimentally observed 1H NMR spectra of hyperpolarized products are well-fitted with theoretical PASADENA spectra simulated with the use of spin density matrix formalism. The analysis of 1H NMR spectral lines of the products reveals that the catalyst is stereoselective in such reactions and the syn-addition of p-H2 takes place. Moreover, we demonstrate that the lineshape of hyperpolarized NMR signals of cis-2-butene is indicative of the mechanism of its formation. It was found that 2-butene produced during 1-butyne hydrogenation is formed from hyperpolarized 1-butene via isomerization. The maximum observed 1H polarization levels for 1-butene were 5.2 ± 0.5%.

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来源期刊
Kinetics and Catalysis
Kinetics and Catalysis 化学-物理化学
CiteScore
2.10
自引率
27.30%
发文量
64
审稿时长
6-12 weeks
期刊介绍: Kinetics and Catalysis Russian is a periodical that publishes theoretical and experimental works on homogeneous and heterogeneous kinetics and catalysis. Other topics include the mechanism and kinetics of noncatalytic processes in gaseous, liquid, and solid phases, quantum chemical calculations in kinetics and catalysis, methods of studying catalytic processes and catalysts, the chemistry of catalysts and adsorbent surfaces, the structure and physicochemical properties of catalysts, preparation and poisoning of catalysts, macrokinetics, and computer simulations in catalysis. The journal also publishes review articles on contemporary problems in kinetics and catalysis. The journal welcomes manuscripts from all countries in the English or Russian language.
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