Skip to main content
Article
Deciphering a Reaction Network for the Switchable Production of Tetrahydroquinoline or Quinoline with MOF-Supported Pd Tandem Catalysts
Ames Laboratory Accepted Manuscripts
  • Long Qi, Ames Laboratory
  • Jingwen Chen, Iowa State University and Zhejiang University
  • Biying Zhang, Iowa State University
  • Renfeng Nie, Iowa State University
  • Zhiyuan Qi, Iowa State University
  • Takeshi Kobayashi, Ames Laboratory
  • Zongbi Bao, Zhejiang University
  • Qiwei Yang, Zhejiang University
  • Qilong Ren, Zhejiang University
  • Qi Sun, Zhejiang University
  • Zhiguo Zhang, Zhejiang University
  • Wenyu Huang, Iowa State University and Ames Laboratory
Publication Date
5-15-2020
Department
Ames Laboratory; Chemistry
OSTI ID+
1616739
Report Number
IS-J 10207
DOI
10.1021/acscatal.0c00899
Journal Title
ACS Catalysis
Abstract

A mechanistic study of heterogeneous tandem catalytic systems is crucial for understanding and improving catalyst activity and selectivity but remains challenging. Here, we demonstrate that a thorough mechanistic study of a multistep reaction can guide us to the controllable selective synthesis of phenyltetrahydroquinoline or phenylquinoline with easily accessible precursors. The one-pot production can be achieved, catalyzed by a well-defined, bifunctional metal–organic framework-supported Pd nanoparticles, with only water as the side product. Our mechanistic study identifies six transient intermediates and ten transformation steps from the operando magic angle spinning nuclear magnetic resonance study under 27.6 bar H2. In particular, reactive intermediate 2-phenyl-3,4-dihydroquinoline cannot be observed with conventional chromatographic techniques but is found to reach the maximal concentration of 0.11 mol L–1 under the operando condition. The most probable reaction network is further deduced based on the kinetic information of reaction species, obtained from both operando and ex situ reaction studies. This deep understanding of the complex reaction network enables the kinetic control of the conversions of key intermediate, 2-phenyl-3,4-dihydroquinoline, with the addition of a homogeneous co-catalyst, allowing the selective production of tetrahydroquinoline or quinoline on demand. The demonstrated methods in this work open up new avenues toward efficient modulation of reactions with a complex network to achieve desired selectivities.

DOE Contract Number(s)
AC02-07CH11358
Language
en
Publisher
Iowa State University Digital Repository, Ames IA (United States)
Citation Information
Long Qi, Jingwen Chen, Biying Zhang, Renfeng Nie, et al.. "Deciphering a Reaction Network for the Switchable Production of Tetrahydroquinoline or Quinoline with MOF-Supported Pd Tandem Catalysts" Vol. 10 Iss. 10 (2020) p. 5707 - 5714
Available at: http://works.bepress.com/wenyu_huang/63/