6-Fluoro-2(3H)-benzothiazolethione
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6-Fluoro-2(3H)-benzothiazolethione
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CAS No:
80087-71-4
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Formula:
C7H4FNS2
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Chemical Name:
6-Fluoro-2(3H)-benzothiazolethione
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Synonyms:
2(3H)-Benzothiazolethione,6-fluoro-;6-Fluoro-2(3H)-benzothiazolethione;6-Fluoro-2-mercaptobenzothiazole
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CAS No:
Characteristics
69.4
2.5
1.55 g/cm3
225-227 °C @ Solvent: Chloroform, Ligroine
304.4°C at 760 mmHg
137.9ºC
6-Fluoro-2(3H)-benzothiazolethione Use and Manufacturing
General procedure: A sealed tube (50 mL) was charged with 2-haloaniline 1a (2mmol), CSTo the reaction tube was added 0.50 mmol (0 • 1185 g) of 4-fluoro-2-iodoaniline, 0 · 25mmol (0 0600g) of the nine Water sodium sulfide, 2 mL of N, N-dimethylformamide and 1.50 mmol (0.1142 g) of carbon disulfide were added under an inert gas atmosphere and the reaction was stirred at 110 ° C for 12 hours, After the reaction was complete, the reaction solution was cooled to room temperature, and 3 mL of 4N hydrochloric acid was added for 15 min. The reaction solution was extracted three times with methylene chloride. The organic phases were combined and dried over anhydrous magnesium sulfate for 2 hours. And finally the crude dichloromethane solvent was distilled off under reduced pressure to give the crude product. The crude product was subjected to column chromatography (200-300 mesh silica gel) eluting with a petroleum ether and ethyl acetate (8: 1-2: 1) to give a white powder having a purity of more than 99percent Thiobenzothiazole 40.6 mg, the isolated yield was 43.8percent.General procedure: A 25 mL reaction tube was charged with 2-haloaniline 1 (0.6 mmol), potassium o-ethyldithiocarbonate 2 (1.8 mmol), FeF3 (0.06 mmol), 2, 2’-bis(diphenylphosphino)-1, 1’-binaphthyl (0.03 mmol) and DMF (4 mL). The reaction vessel was flushed with argon for three times and sealed. Then the mixture was stirred electromagnetically in an oil bath at 110 for 3 - 21 hours. The reaction process was monitored by TLC on silica gel. After the reaction was completed, the reaction mixture was cooled to room temperature, then 4 mL HCl (3mol/L) was added and stirred for 30 minutes. Then the reaction mixture solution was extracted by ethyl acetate (3*20 mL). Subsequently, the combined organic solution were dried by anhydrous sodium sulfate and the target product was purified by silica gel colum chromatography (eluent: petroleum ether / ethylacetate) to give the corresponding pure product 3.General procedure: A 25 mL Wattecs reaction tube was charged with 2-haloaniline 1 (0.6 mmol), potassium O-ethyl dithiocarbonate 2 (1.8 mmol), CuCl (0.06 mmol), and DMF (2 mL). The reaction vessel was flushed with argon three times and sealed. Then the mixture was stirred electromagnetically in an oil bath at 110°C for 6 h.The reaction process was monitored by TLC on silica gel. After the reaction was completed, the reaction mixture was cooled to room temperature, and then HCl (3 mL, 3 mol/L) was added and stirred for another 30 min. The reaction mixture solution was extracted by ethyl acetate (3 × 20 mL). Subsequently, the combined organic solutions were dried by anhydrous sodium sulfate and the target product was purified by chromatography on a silica gel column (eluent: petroleum ether/ethyl acetate) togive the corresponding pure product 3. Complete characterization characterizationof the products (all known) is found in the Supplemental Materials (Figures S1–S13).General procedure: A round-bottomed flask was charged with 2-bromoaniline or 2-fluoro-aniline (>3 g, 1.0 equiv) and potassium O-ethyl carbonodithioate(1.5–1.7 equiv). The mixture was dissolved in DMF (10 volumes) andheated to 120–130 °C until the aniline was fully consumed (3–14 h).The reaction mixture was cooled to r.t. and filtered. The filtrate wasdiluted with H 2 O (50 volumes) and the pH was adjusted to 1–2 usingaqueous 2 M HCl. The solid precipitate was collected, washed withH 2 O and dried to yield the pure product.
6-Fluoro-2(3H)-benzothiazolethione
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