| Literature DB >> 30155207 |
Fei Xue1, Hongping Deng1, Chengwen Xue1, Dara Khairunnisa Binte Mohamed1, Karen Yuanting Tang1, Jie Wu1.
Abstract
Acetylene gas has been applied as a feedstock under transition-metal catalysis and photo-redox conditions to produce important chemicals including terminal alkynes, fulvenes, and fluorinated styrene compounds. The reaction discovery process was accelerated through the use of "stop-flow" micro-tubing reactors. This reactor prototype was developed by joining elements from both continuous micro-flow and conventional batch reactors, which was convenient and effective for gas/liquid reaction screening. Notably, the developed transformations were either inefficient or unsuccessful in conventional batch reactors. Its success relies on the unique advantages provided by this "stop-flow" micro-tubing reactor system.Entities:
Year: 2017 PMID: 30155207 PMCID: PMC6094156 DOI: 10.1039/c7sc00408g
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Methods for gas/liquid reaction screening: (a) gas bubbling, (b) gas balloons, (c) pressure gauges and (d) continuous-flow reactors. BPR: back-pressure regulator.
Fig. 2Design of the SFMT platform. (a) Schematic of the SFMT platform. (b) The SFMT platform represents a combination of batch and continuous-flow reactors. (c) Parallel SFMT reactors. (d) Each SFMT reactor behaves as a high-pressure reactor.
Utilization of acetylene as a feedstock in transition-metal catalysis
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The yield was determined using GC analysis of the crude mixture using an internal standard.
The reactions were carried out in a SMFT reactor; the yield is shown as the yield of 2 (the yield of 3).
The reactions were carried out in a continuous flow reactor.
The isolated yield.
The reactions were carried out in a batch reactor.
The reactions were carried out in a SMFT reactor.
Vinyl bromide was used as the starting material.
Utilization of acetylene as a feedstock in photo-redox catalysis
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| Entry | Catalyst | Base | Conversion [%] | TEMPO |
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| 1 | lr(ppy)2(dtbbpy)PF6 | iPr2NEt | 94 | — | 1.8 : 1 |
| 2 | lr(ppy)2(dtbbpy)PF6 | iPr2NEt | 93 | 1 equiv. | 3.2 : 1 |
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| 4 | lr(ppy)2(dtbbpy)PF6 | iPr2NEt | 23 | 2 equiv. | 2.3 : 1 |
| 5 | lr(ppy)2(dtbbpy)PF6 | iPr2NEt | < 5 | 1 equiv. | — |
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2 × 5-psi BPRs were used when setting up the reaction. The conversions and selectivities were based on the 19F-NMR analysis of the crude reaction mixture. Isolated yields.
With 20-psi BPR.
Conducted in the batch reactor.