A detailed scalable continuous flow protocol is presented to synthesize an aryl fluoride from an aryl amine through the Balz-Schiemann reaction.
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Method Article
A detailed scalable continuous flow protocol is presented to synthesize an aryl fluoride from an aryl amine through the Balz-Schiemann reaction.
The demand for aromatic fluorides is steadily increasing in the pharmaceutical and fine chemical industries. The Balz-Schiemann reaction is a straightforward strategy for preparing aryl fluorides from aryl amines, via the preparation and conversion of diazonium tetrafluoroborate intermediates. However, significant safety risks exist in handling the aryl diazonium salts when scaling up. In order to minimize the hazard, we present a continuous flow protocol that has been successfully performed at a kilogram scale that eliminates the isolation of aryl diazonium salts while facilitating efficient fluorination. The diazotization process was performed at 10 °C with a residence time of 10 min, followed by a fluorination process at 60 °C with a residence time of 5.4 s with about 70% yield. The reaction time has been dramatically reduced by introducing this multi-step continuous flow system.
The Balz−Schiemann reaction is a classic method for replacing the diazonium group with fluorine by heating ArN2+BF4− without a solvent1,2. The reaction can be applied to a wide variety of aryl amine substrates, making it a generally applicable approach to synthesize aryl amines, which are frequently utilized for advanced intermediates in pharmaceutical or fine chemical industries2,3. Unfortunately, harsh reaction conditions are often employed in the Balz-Schiemann reaction, and the reaction genera....
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CAUTION: Carefully check the properties and toxicities of the chemicals described here for the appropriate chemical handling of the relevant material as per the material safety data sheets (MSDS). Some of the chemicals used are detrimental to health, and special care must be taken. Avoid inhalation and contact with skin of these materials. Please wear the proper PPE during the whole process.
1. Preparation of feeds for continuous flow protocol
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The model reaction is shown in Figure 2. 2-Methylpyridin-3-amine (compound 1 in Figure 2) was chosen as the starting material to prepare 2-methylpyridin-3-fluoride (compound 3 in Figure 2) via the Balz-Schiemann reaction. The experimental parameters were systematically investigated by varying reaction temperature and residence time. Feed A is 0.35 M 2-methylpyridin-3-amine in THF. Feed B is pure BF3·Et2
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A continuous flow protocol of the Balz-Schiemann reaction has been successfully performed through a combination of a micro-channel flow reactor and a dynamically mixed flow reactor. This strategy features several advantages compared with the batch process: (i) it is safer with controlled diazonium salt formation; (ii) it is more amenable to a higher reaction temperature, 10 °C versus -20 °C; and (iii) it is more efficient without isolation of the diazonium intermediate, two steps in one continuous process. Spec.......
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None of the authors within this protocol have any competing financial interests or conflicts of interest.
We would like to thank the support of Shenzhen Science and Technology Program (Grant No. KQTD20190929172447117).
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| 2-Methylpyridin-3-amine | Raffles Pharmatech Co. Ltd | C2021236-SM5-H221538-008 | HPLC: >98%, Water by KF ≤0.5% |
| 316L piston constant flow pump | Oushisheng (Beijing) Technology Co.,Ltd | DP-S200 | |
| BF3.Et2O | Whmall.com | B802217 | |
| Citric acid | Titan Technology Co., Ltd | G83162G | |
| con.HCl | Foshang Xilong Huagong | 1270110101601M | |
| Dynamically mixed flow reactor | Autichem Ltd | DM500 | 316L reator with 500 mL of internal volume |
| Heptane | Shenzhen Huachang | HCH606 | Water by KF ≤0.5% |
| Micro flow reactor | Corning Reactor Technology Co.,Ltd | G1 Galss AFR | Glass module with 9 mL of internal volume |
| PTFE piston constant flow pump | Sanotac China | MPF1002C | |
| Sodium hydroxide | Foshang Xilong Huagong | 1010310101700 | |
| tert-Butyl methyl ether | Titan Technology Co., Ltd | 01153694 | |
| tert-Butyl nitrite | Whmall.com | XS22030900060 | |
| Tetrahydrofuran | Titan Technology Co., Ltd | 1152930 | Water by KF ≤0.5% |
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