Chemical Research in 707-61-9

Compound(707-61-9)Category: dioxole received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide), if you are interested, you can check out my other related articles.

Category: dioxole. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: 4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide, is researched, Molecular C11H13OP, CAS is 707-61-9, about Synthesis of phenylphosphine oxide catalyst. Author is Fu, Ze.

The tech. process and conditions of preparing the high efficiency phenylphosphine oxide catalyst were studied by using phosphorus trichloride, benzene and isoprene as raw materials. The excess phosphorus trichloride reacting with benzene could increase the yield of the intermediate product dichlorophenylphosphine.

Compound(707-61-9)Category: dioxole received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

Sources of common compounds: 707-61-9

Compound(707-61-9)Recommanded Product: 4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide), if you are interested, you can check out my other related articles.

The preparation of ester heterocycles mostly uses heteroatoms as nucleophilic sites, which are achieved by intramolecular substitution or addition reactions. Compound: 4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide( cas:707-61-9 ) is researched.Recommanded Product: 4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide.Yamada, Manabu; Asai, Kazuhide; Yamashita, Junko; Suyama, Takuya; Niimi, Taishi; Maddali, Kasthuraiah; Fujie, Michio; Nakamura, Satoki; Kimura, Motohiko; Tanaka, Yasutaka; Toda, Mitsuo; Yamashita, Mitsuji published the article 《Synthesis of some 1-aryl-2,3-dibromophospholanes as novel anti-cancer agents》 about this compound( cas:707-61-9 ) in Heterocyclic Communications. Keywords: aryldibromophospholane preparation antitumor activity. Let’s learn more about this compound (cas:707-61-9).

Novel phosphorus heterocyclic compounds, 3-methyl-1-(3-bromophenyl as well as some 3-substituted phenyl)-2-phospholene 1-oxides, were synthesized from 1-phenyl-2-phospholene 1-oxide via 3-methyl-1-(3-nitrophenyl)-2-phospholene 1-oxide. 1-(4-Bromophenyl)-2-phospholene was prepared by Grignard coupling reaction of 1-chloro-3-methyl-2-phospholene 1-oxide with 4-bromophenylmagnesium bromide. 2,3-Dibromo-3-methyl-1-arylphospholane 1-oxides were prepared by the addition reaction of bromine to the C=C double bond of 2-phospholenes. The substituent effect of the Ph group of the 1-aryl-phospholanes on the observed anti-proliferative effect against U937 leukemia cell lines evaluated by MTT in vitro methods showed that 2,3-dibromo-3-methyl-1-(4-bromophenyl)phospholane was the most active among 1-arylphospholanes. These novel dibromophosphorus heterocyclic derivatives exhibit much higher anticancer activity than Gleevec (mol. targeting chemotherapeutic agent) against U937 cells.

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Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

What unique challenges do researchers face in 4360-63-8

Compound(4360-63-8)SDS of cas: 4360-63-8 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(2-Bromomethyl-1,3-dioxolane), if you are interested, you can check out my other related articles.

Most of the compounds have physiologically active properties, and their biological properties are often attributed to the heteroatoms contained in their molecules, and most of these heteroatoms also appear in cyclic structures. A Journal, Article, European Journal of Medicinal Chemistry called Discovery of novel, potent, isosteviol-based antithrombotic agents, Author is Chen, Peng; Zhang, Dianwen; Li, Meng; Wu, Qiong; Lam, Yuko P. Y.; Guo, Yan; Chen, Chen; Bai, Nan; Malhotra, Shipra; Li, Wei; O’Connor, Peter B.; Fu, Hongzheng, which mentions a compound: 4360-63-8, SMILESS is BrCC1OCCO1, Molecular C4H7BrO2, SDS of cas: 4360-63-8.

Thrombosis is a pathol. coagulation process and can lead to many serious thrombotic diseases. Here, we report a novel potent antithrombotic compound (6k) based on isosteviol with anticoagulant and antiplatelet activities. 6k selectively inhibited FXa (Ki = 0.015μM) against a panel of serine proteases and showed excellent anticoagulant activity (significant prolongation of ex vivo PT and aPTT over the vehicle, p < 0.01). 6k also significantly inhibited ADP-induced platelet aggregation in rats relative to the vehicle (p < 0.01). Furthermore, 6k exhibited potent ex vivo and in vivo antithrombotic activity in rats relative to the vehicle (p < 0.01 and p < 0.0001, resp.). Novel structure 6k, with potent antithrombotic activity, is expected to lead a promising approach for the development of antithrombotic agents. Compound(4360-63-8)SDS of cas: 4360-63-8 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(2-Bromomethyl-1,3-dioxolane), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

Flexible application of in synthetic route 7524-52-9

Compound(7524-52-9)Quality Control of H-Trp-OMe.HCl received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(H-Trp-OMe.HCl), if you are interested, you can check out my other related articles.

The chemical properties of alicyclic heterocycles are similar to those of the corresponding chain compounds. Compound: H-Trp-OMe.HCl, is researched, Molecular C12H15ClN2O2, CAS is 7524-52-9, about Controlling Size-Dispersion of Single Walled Carbon Nanotubes by Interaction with Polyoxometalates Armed with a Tryptophan Tweezer, the main research direction is carbon nanotube size dispersion controlled polyoxometalate functionalized tryptophan tweezer.Quality Control of H-Trp-OMe.HCl.

A bis-tryptophan tweezer was installed on a polyoxometalate (POM) surface via a bis-amide covalent bond, yielding the enantiopure hybrid POM with C2 symmetry, as a result of the regioselective functionalization of decatungosilicate [γ-SiW10O36]8- at the lacunary site. The combined polyanionic and receptor properties are instrumental for a POM-driven solubilization and enrichment of single walled C nanotubes (SWCNTs) with diameter < 1.1 nm, as demonstrated by Raman and UV/visible-NIR evidence, in agreement with the calculated energetics of the tryptophan tweezer-SWCNT interaction. Compound(7524-52-9)Quality Control of H-Trp-OMe.HCl received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(H-Trp-OMe.HCl), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

Now Is The Time For You To Know The Truth About 25150-27-0

Compound(25150-27-0)Product Details of 25150-27-0 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(6,7-Dichlorobenzo[d]thiazol-2-amine), if you are interested, you can check out my other related articles.

Product Details of 25150-27-0. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: 6,7-Dichlorobenzo[d]thiazol-2-amine, is researched, Molecular C7H4Cl2N2S, CAS is 25150-27-0, about Synthesis of some 5-nitro-2-furfurylidene derivatives and their antibacterial and antifungal activities. Author is Charris, Jaime; Monasterios, Melina; Dominguez, Jose; Infante, Wilson; De Castro, Norma.

New 5-nitro-2-furfurylidene derivatives I (R1 = Me, Ph; R2 = H, NO2; R3 = H, 6-F, 6-Cl, 6-OMe, 5,6-F2, etc.) were synthesized by reaction of 2-methyl-4-(5-nitro-2-furfurylmethylidene)-Δ2-oxazolin-5-one or 2-phenyl-4-(2-furfurylmethylidene)-Δ2-oxazolin-5-one with 2-aminobenzothiazoles. The compounds synthesized were identified by 1H-NMR, IR, MS and microanal. All products were screened for their in vitro antibacterial and antifungal activities against the standard strains: Bacillus subtilis, Staphylococcus aureus, Escherichia coli, Pseudomonas aeruginosa, Salmonella typhimurium, and the yeast Candida albicans.

Compound(25150-27-0)Product Details of 25150-27-0 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(6,7-Dichlorobenzo[d]thiazol-2-amine), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

The Absolute Best Science Experiment for 707-61-9

Compound(707-61-9)Computed Properties of C11H13OP received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide), if you are interested, you can check out my other related articles.

Nykaza, Trevor V.; Cooper, Julian C.; Li, Gen; Mahieu, Nolwenn; Ramirez, Antonio; Luzung, Michael R.; Radosevich, Alexander T. published the article 《Intermolecular Reductive C-N Cross Coupling of Nitroarenes and Boronic Acids by PIII/PV=O Catalysis》. Keywords: nitroarene boronic acid reductive intermol cross coupling hexamethylphosphetane catalyst; arylamine preparation chemoselectivity.They researched the compound: 4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide( cas:707-61-9 ).Computed Properties of C11H13OP. Aromatic heterocyclic compounds can be divided into two categories: single heterocyclic and fused heterocyclic. In addition, there is a lot of other information about this compound (cas:707-61-9) here.

A main group-catalyzed method for the synthesis of aryl- and heteroarylamines by intermol. C-N coupling is reported. The method employs a small-ring organophosphorus-based catalyst (1,2,2,3,4,4-hexamethylphosphetane) and a terminal hydrosilane reductant (phenylsilane) to drive reductive intermol. coupling of nitro(hetero)arenes with boronic acids. Applications to the construction of both Csp2-N (from arylboronic acids) and Csp3-N bonds (from alkylboronic acids) are demonstrated; the reaction is stereospecific with respect to Csp3-N bond formation. The method constitutes a new route from readily available building blocks to valuable nitrogen-containing products with complementarity in both scope and chemoselectivity to existing catalytic C-N coupling methods.

Compound(707-61-9)Computed Properties of C11H13OP received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(4-Methyl-1-phenyl-2,3-dihydro-1H-phosphole 1-oxide), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

What kind of challenge would you like to see in a future of compound: 7524-52-9

Compound(7524-52-9)SDS of cas: 7524-52-9 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(H-Trp-OMe.HCl), if you are interested, you can check out my other related articles.

Heterocyclic compounds can be divided into two categories: alicyclic heterocycles and aromatic heterocycles. Compounds whose heterocycles in the molecular skeleton cannot reflect aromaticity are called alicyclic heterocyclic compounds. Compound: 7524-52-9, is researched, Molecular C12H15ClN2O2, about 2-(Substituted amino)-8-azachromones from 4,6-Diaryl-2-pyridones: A Synthetic Strategy toward Compounds of Broad Structural Diversity, the main research direction is amino azachromone preparation cyclization diaryl pyridone.SDS of cas: 7524-52-9.

3-Acetoacetyl-4,6-diaryl-2-pyridones are synthesized in three steps from chalcones and then condense with carbon disulfide to afford 8-azachromones containing a methylthio group at C2. This leaving group offers an entry point for the insertion of more complex moieties via nucleophilic substitution. For this purpose, N-nucleophiles are explored according to their positions in the Mayr’s nucleophilicity scale (N parameter), and three main classes are distinguished depending on whether the substitution takes place from their neutral forms, from their deprotonated anionic forms, or under nucleophilic catalysis. A broad range of primary and secondary amines may be inserted by this method, including enantiomerically pure amino acids, enabling us to explore structural diversity.

Compound(7524-52-9)SDS of cas: 7524-52-9 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(H-Trp-OMe.HCl), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

Archives for Chemistry Experiments of 1265884-98-7

Compound(1265884-98-7)Application In Synthesis of 5-(11bR)-Dinaphtho[2,1-d:1′,2′-f][1,3,2]dioxaphosphepin-4-yl-5H-dibenz[b,f]azepine received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(5-(11bR)-Dinaphtho[2,1-d:1′,2′-f][1,3,2]dioxaphosphepin-4-yl-5H-dibenz[b,f]azepine), if you are interested, you can check out my other related articles.

The preparation of ester heterocycles mostly uses heteroatoms as nucleophilic sites, which are achieved by intramolecular substitution or addition reactions. Compound: 5-(11bR)-Dinaphtho[2,1-d:1′,2′-f][1,3,2]dioxaphosphepin-4-yl-5H-dibenz[b,f]azepine( cas:1265884-98-7 ) is researched.Application In Synthesis of 5-(11bR)-Dinaphtho[2,1-d:1′,2′-f][1,3,2]dioxaphosphepin-4-yl-5H-dibenz[b,f]azepine.Deng, Jun; Zhou, Shupeng; Zhang, Wenhao; Li, Jian; Li, Ruofan; Li, Ang published the article 《Total Synthesis of Taiwaniadducts B, C, and D》 about this compound( cas:1265884-98-7 ) in Journal of the American Chemical Society. Keywords: enantioselective synthesis taiwaniadduct B C D; iridium catalyzed asym polyene cyclization taiwaniadduct synthesis; erbium catalyzed Diels Alder taiwaniadduct synthesis; carbonyl ene cyclization taiwaniadduct synthesis. Let’s learn more about this compound (cas:1265884-98-7).

The first total syntheses of taiwaniadducts B, C, and D have been accomplished. Two diterpenoid segments [trans-ozic Me ester (I) and II] were prepared with high enantiopurity, both through Ir-catalyzed asym. polyene cyclization. A sterically demanding I + II intermol. Diels-Alder reaction promoted by Er(fod)3 assembled the scaffold of taiwaniadducts B and C. A carbonyl-ene cyclization forged the cage motif of taiwaniadduct D at a late stage, providing over 200 mg of this compound

Compound(1265884-98-7)Application In Synthesis of 5-(11bR)-Dinaphtho[2,1-d:1′,2′-f][1,3,2]dioxaphosphepin-4-yl-5H-dibenz[b,f]azepine received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(5-(11bR)-Dinaphtho[2,1-d:1′,2′-f][1,3,2]dioxaphosphepin-4-yl-5H-dibenz[b,f]azepine), if you are interested, you can check out my other related articles.

Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

Extracurricular laboratory: Synthetic route of 7524-52-9

Compound(7524-52-9)Quality Control of H-Trp-OMe.HCl received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(H-Trp-OMe.HCl), if you are interested, you can check out my other related articles.

Most of the compounds have physiologically active properties, and their biological properties are often attributed to the heteroatoms contained in their molecules, and most of these heteroatoms also appear in cyclic structures. A Journal, Article, International Immunopharmacology called The indole-hydantoin derivative exhibits anti-inflammatory activity by preventing the transactivation of NF-κB through the inhibition of NF-κB p65 phosphorylation at Ser276, Author is Lin, Xin; Tago, Kenji; Okazaki, Nozomi; So, Takanori; Takahashi, Kyoko; Mashino, Tadahiko; Tamura, Hiroomi; Funakoshi-Tago, Megumi, which mentions a compound: 7524-52-9, SMILESS is N[C@@H](CC1=CNC2=CC=CC=C12)C(OC)=O.[H]Cl, Molecular C12H15ClN2O2, Quality Control of H-Trp-OMe.HCl.

Indole- and hydantoin-based derivatives both exhibit anti-inflammatory activity, suggesting that the structures of indole and hydantoin are functional for this activity. In the present study, we synthesized two types of indole-hydantoin derivatives, IH-1 (5-(1H-indole-3-ylmethylene) imidazolidine-2,4-dione) and IH-2 (5-(1H-indole-3-ylmethyl) imidazolidine-2,4-dione) and examined their effects on LPS-induced inflammatory responses in murine macrophage-like RAW264.7 cells. LPS-induced inflammatory responses were not affected by indole, hydantoin, or IH-2. In contrast, IH-1 significantly inhibited the LPS-induced production of nitric oxide (NO) and secretion of CCL2 and CXCL1 by suppressing the mRNA expression of inducible NO synthase (iNOS), CCL2, and CXCL1. IH-1 markedly inhibited the LPS-induced activation of NF-κB without affecting the degradation of IκBα or nuclear translocation of NF-κB. IH-1 markedly attenuated the transcriptional activity of NF-κB by suppressing the LPS-induced phosphorylation of the NF-κB p65 subunit at Ser276. Furthermore, IH-1 prevented the LPS-induced interaction of NF-κB p65 subunit with a transcriptional coactivator, cAMP response element-binding protein (CBP). Collectively, these results revealed the potential of the novel indole-hydantoin derivative, IH-1 as an anti-inflammatory drug.

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Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem

New explortion of 455-70-9

Compound(455-70-9)Related Products of 455-70-9 received a lot of attention, and I have introduced some compounds in other articles, similar to this compound(Methyl 5-fluoro-3-pyridinecarboxylate), if you are interested, you can check out my other related articles.

Related Products of 455-70-9. The protonation of heteroatoms in aromatic heterocycles can be divided into two categories: lone pairs of electrons are in the aromatic ring conjugated system; and lone pairs of electrons do not participate. Compound: Methyl 5-fluoro-3-pyridinecarboxylate, is researched, Molecular C7H6FNO2, CAS is 455-70-9, about Preparation of 5-fluoronicotinic acid and 5-fluoronicotinamide. Author is Hawkins, G. F.; Roe, Arthur.

2-Amino-3-methylpyridine (50 g.) in 240 ml. concentrated H2SO4, cooled to 5°, was slowly treated with a mixture of 35 ml. each of concentrated H2SO4 and concentrated HNO3, with the temperature kept below 10°, and allowed to warm up to 30° overnight. [If the solution was then poured over cracked ice, neutralized, and filtered, the nitro derivative (I) could be obtained, but it was preferred not to isolate I.] To the solution, kept below 40° and stirred, was slowly added 35 ml. concentrated HNO3, approx. 50 ml. of the mixture (A) added to 100 ml. H2O, and heated to 120°. The balance of (A) was added in 50-ml. portions when gas evolution ceased, the mixture was cooled by the addition of 1 kg. ice, and the precipitate filtered off (46 g.); an addnl. 5 g. could be obtained by addition of 10 g. NaNO2 to the filtrate, and another 6 g. was obtainable by neutralizing the filtrate from the NaNO2 treatment. The combined products were dissolved in the min. amount of dilute NaOH, stirred with C, and filtered, giving 51 g. (71.5%) of fairly pure 2-hydroxy-3-methyl-5-nitropyridine (II), greenish yellow, m. 228.5-9.5°, after crystallizations from H2O and decolorization. II was also prepared by adding 15 ml. fuming HNO3 and 20 ml. concentrated H2SO4 to 20 g. 2-hydroxy-3-methylpyridine in 40 ml. concentrated H2SO4 at a temperature below 40°, allowing to warm up to 50° during 2.5 hrs., pouring over cracked ice, and filtering, washing, and drying the precipitate over P2O5, giving 13.5 g. cream-colored II, m. 228.5-9.5°. II (83 g.) and 400 ml. POCl3 were refluxed 6 hrs., the excess POCl3 distilled off, the residue poured over cracked ice, filtered, the filtrate neutralized with NaOH solution, extracted twice with 100-ml. portions of Et2O, the precipitate also dissolved in the Et2O solution, a lower liquid layer removed, and the solution dried over CaO; distillation yielded 81.5 g. (87.6%) 2-chloro-3-methyl-5-nitropyridine (III), m. 47-8°, b18 145.5°. III was also prepared from I by diazotization in concentrated HCl, in 32% yield with II as a by-product. To 24 g. III was added 100 ml. AcOH, 14 g. AcONa, and 5 g. Pd-charcoal catalyst, the mixture reduced with H at 15-25 lb. pressure (even after heating, only 80% of the theoretical H was absorbed), the hot solution filtered, evaporated to dryness, concentrated NaOH added, the mixture heated 30 min., extracted, after cooling, with three 75-g. portions of Et2O, and the extracts dried over NaOH and distilled, giving 9 g. (51%) 3-methyl-5-aminopyridine (IV), m. 57-9°, b21 153°. To 12 g. IV in 50 ml. 42% HBF4 and 75 ml. EtOH at -10° was added EtONO, at a temperature kept below -5°, until no more precipitation occurred, the solution poured into 75 ml. absolute EtOH and 100 ml. Et2O, at -70°, the solution filtered, the precipitate washed twice with cold absolute EtOH, twice with cold absolute Et2O, and twice with cold, dry petr. ether (30-60°), placed, with 75 ml. cold, dry petr. ether, in a 500-ml. flask with a condenser, the solution warmed slightly to initiate decomposition, the reaction then controlled by cooling, the mixture refluxed 0.5 hr., the solvent decanted, the petr. ether washed twice with 50 ml. dilute HCl, the extracts returned to the flask, warmed to remove petr. ether, made slightly alk., and distilled, giving, after drying, 7.4 g. (60%) 3-methyl-5-fluoropyridine (V). To 8.5 g. V and 600 ml. H2O in a flask with a reflux condenser was added 8 g. KMnO4, then more in small amounts as it reacted, to a total of 26 g. in 3 hrs., unreacted V removed by distillation, the residue filtered off hot, washed with hot H2O, the filtrate and washings evaporated to 150 ml., HCl added to complete precipitation, the solid filtered off, the filtrate evaporated to 50 ml., and more HCl added, precipitating more solid, and the combined precipitates (6.4 g.; 77.3%), recrystallized from H2O, giving 5-fluoronicotinic acid (VI), m. 195-7°. VI (3 g.) in 50 ml. SOCl2 was refluxed 12 hrs. and the excess solvent distilled off in vacuo, giving 1.5 ml. of liquid, b18 82°; this (acid chloride) with anhydrous NH3 gave, after 2 recrystallizations from H2O, 1.1 g. 5-fluoronicotinamide (VII), m. 173-5°. From 45 g. 3-bromoquinoline by the method of Graf, et al. (C.A. 28, 269.7) (oxidation and heating), was obtained 16.5 g. 5-bromonicotinic acid (VIII). VIII (14.5 g.), by the method of Meyer and G. (C.A. 23, 837), gave 6.5 g. 5-aminonicotinic acid (IX). IX (6.5 g.) with CH2N2 gave 3 g. Me 5-aminonicotinate (X), m. 135-7°. VII could not be prepared by diazotization of IX or X (the modified Schiemann reaction (R. and H., C.A. 42, 171e)). However, 2.7 g. X in 50 ml. 95% EtOH was treated with 25 ml. of 30% fluosilicic acid, the precipitated salt filtered off and suspended in 50 ml. AcOH, then EtONO passed in, at 32° or lower, until the salt dissolved, the solution cooled in ice, and 75 ml. dry Et2O added to precipitate the diazonium fluosilicate, which, when filtered off, washed once with absolute EtOH and twice with absolute Et2O in a CO2 atm., and dried over P2O5, m. 89° (violent decomposition). The salt suspended in dry PhMe, heated until it decomposed, and the PhMe layer distilled, gave 0.4 g. Me 5-fluoronicotinate (XI), b26 101-2°, m. 46-50°. XI in 50% MeOH with NH3 gave VII, m. 173-5°. Oxidation of 3-fluoroquinoline with KMnO4 or with concentrated HNO3 did not give VI.

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Reference:
1,3-Benzodioxole – Wikipedia,
Dioxole | C3H4O2 – PubChem