Shim, Sang Chul et al. published their research in Bulletin of the Korean Chemical Society in 1992 |CAS: 124038-36-4

The Article related to cobalt carbonyl catalyzed carbonylation bromobenzaldehyde, bromophenyldioxolane carbonylation cobalt carbonyl catalyzed, bromophenyldithiane carbonylation cobalt carbonyl catalyzed, formylbenzoate, alkoxycarbonylphenyldioxolane, alkoxycarbonylphenyldithiane and other aspects.Computed Properties of 124038-36-4

On August 20, 1992, Shim, Sang Chul; Doh, Chil Hoon; Youn, Young Zoo; Lee, Dong Yub; Lee, Seung Yub; Chae, Shin Ae published an article.Computed Properties of 124038-36-4 The title of the article was Carbonylation of bromobenzenes having aldehyde or protected aldehyde groups catalyzed by cobalt carbonyl(I). And the article contained the following:

3-BrC6H4CHR2 (R2 = O, OCH2CH2O, SCH2CH2CH2S) undergo carbonylation under 1 atm CO in R1OH (R1 = Me, Et, Pr, Bu) in the presence of Co2(CO)8, MeI, and K2CO3 to give 26-97% 3-(R2CH)C6H4CO2R1. The experimental process involved the reaction of Methyl 3-(1,3-dioxolan-2-yl)benzoate(cas: 124038-36-4).Computed Properties of 124038-36-4

The Article related to cobalt carbonyl catalyzed carbonylation bromobenzaldehyde, bromophenyldioxolane carbonylation cobalt carbonyl catalyzed, bromophenyldithiane carbonylation cobalt carbonyl catalyzed, formylbenzoate, alkoxycarbonylphenyldioxolane, alkoxycarbonylphenyldithiane and other aspects.Computed Properties of 124038-36-4

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

Hanessian, Stephen et al. published their research in Tetrahedron Letters in 1982 |CAS: 38838-06-1

The Article related to alkoxydiazaphospholane preparation halogenation stereospecificity, alc condensation methylaminodiazaphospholane, alkyl halide, steroidal alc condensation diazaphospholane, cyclic alc condensation diazaphospholane, glycoside alc condensation diazaphospholane and other aspects.Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole

On October 22, 1982, Hanessian, Stephen; Leblanc, Yves; Lavallee, Pierre published an article.Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole The title of the article was Design and reactivity of organic functional groups: the highly crystalline 2-alkoxy-N,N’-diphenyl-1,3,2-diazaphospholanes and their facile conversion into alkyl halides. And the article contained the following:

Reaction of diazaphospholane Me2NR (R = Q) (I) with aliphatic, alicyclic, steroidal, and glycosidal alcs. in PhMe at 85° gave the corresponding 2-alkoxy derivatives in 70-94% yield. These highly crystalline derivatives readily undergo conversion into alkyl halides under mild conditions and with inversion of configuration. E.g., reaction of steroid II (R = β-OH) with I in PhMe at 85° gave 89% II (R = β-OQ) which on treatment with SO2Cl2 in PhMe at 0° gave 80% II (R = α-Cl). The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole

The Article related to alkoxydiazaphospholane preparation halogenation stereospecificity, alc condensation methylaminodiazaphospholane, alkyl halide, steroidal alc condensation diazaphospholane, cyclic alc condensation diazaphospholane, glycoside alc condensation diazaphospholane and other aspects.Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole

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

Young, Robert N. et al. published their patent in 1990 |CAS: 124038-36-4

The Article related to arylstyrylquinoline diacid preparation leukotriene antagonist, cytoprotection arylstyrylquinoline diacid, eye antiinflammatory arylstyrylquinoline diacid, antiasthmatic arylstyrylquinoline diacid, srsa inhibitor arylstyrylquinoline diacid preparation and other aspects.Application In Synthesis of Methyl 3-(1,3-dioxolan-2-yl)benzoate

On November 28, 1990, Young, Robert N.; Gauthier, Jacques Yves; Zamboni, Robert; Belley, Michel L. published a patent.Application In Synthesis of Methyl 3-(1,3-dioxolan-2-yl)benzoate The title of the patent was Preparation of diarylstyrylquinoline diacids as leukotriene antagonists. And the patent contained the following:

Title compounds I [R1 = 7-Cl, 7-MeO, 6-F3C, 7-F3C, 6-MeSO2, H, 6,7-Cl2; Y = CH:CH, CH2CH2, CH2O, CHMeCH2; A = HO2C(CH2)2S, Me2NCO(CH2)2S, 3-(HO2C)C6H4S, Me3CNHCO(CH2)2S, 4-carboxy-2-pyridyl, [(1-adamantylamino)carbonylethyl]thio, 1-tetrazol-5-ylmethylthio, etc.; B = 2-(HO2C)C6H4CH2CH2, 3-(HO2C)C6H4, 5-carboxy-2-thiophenyl, HO2CCH2CHMe(CH2)2, 6-carboxy-2-pyridyl, 2-(Me3CNHCO)C6H4S, 3-[(1-tetrazol-5-yl)methyl]phenyl, etc.] and their salts, useful as inhibitors of leukotriene biosynthesis, antiasthmatic, antiallergic, antiinflammatory, and cytoprotective agents (no data, assays described), are prepared I may also be used to treat erosive gastritis, inflammatory bowel disease, prevention of SRA-release (no data). To a suspension of [(7-chloroquinolin-2-yl)methyl]triphenylphosphonium bromide in THF was added BuLi, the reaction mixture was stirred at -78° and Me 2-[3-[2-(methoxycarbonyl)ethylthio]-3-(3-formylphenyl)propyl]benzoate [preparation from 3-(BrCH2)C6H4CN given] added, the mixture warmed to room temperature to give I [R1 = 7-Cl; Y = CH:CH; A = HO2C(CH2)2S; B = 2-(HO2C)C6H4CH2CH2] (II) as the di-Me ester, which in THF and MeOH was saponified to give II.2Na salt. A capsule, injectable suspension and tablet formulations comprising I are given. Pharmaceutical composition of I may comprise an addnl. active ingredient such as nonsteroidal antiinflammatory drug, peripheral analgesic, cyclooxygenase inhibitor, etc. The experimental process involved the reaction of Methyl 3-(1,3-dioxolan-2-yl)benzoate(cas: 124038-36-4).Application In Synthesis of Methyl 3-(1,3-dioxolan-2-yl)benzoate

The Article related to arylstyrylquinoline diacid preparation leukotriene antagonist, cytoprotection arylstyrylquinoline diacid, eye antiinflammatory arylstyrylquinoline diacid, antiasthmatic arylstyrylquinoline diacid, srsa inhibitor arylstyrylquinoline diacid preparation and other aspects.Application In Synthesis of Methyl 3-(1,3-dioxolan-2-yl)benzoate

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

Garegg, Per J. et al. published their research in Journal of the Chemical Society in 1980 |CAS: 38838-06-1

The Article related to iodination carbohydrate, imidazole triphenylphosphine iodine carbohydrate iodination, phenylphosphine imidazole iodine carbohydrate iodination, iodoimidazole carbohydrate substitution, epimerization carbohydrate substitution iodine, iodocarbohydrate and other aspects.Related Products of 38838-06-1

On December 31, 1980, Garegg, Per J.; Samuelsson, Bertil published an article.Related Products of 38838-06-1 The title of the article was Novel reagent system for converting a hydroxy-group into an iodo-group in carbohydrates with inversion of configuration. Part 2. And the article contained the following:

Isolated primary and secondary hydroxy groups in carbohydrate derivatives were substituted by iodo-groups, with inversion of configuration, on treatment with either Ph3P, I2, and imidazole, or imidazole and 2,4,5-triiodoimidazole at elevated temperatures E.g., I (R = OH, R1 = H) with Ph3P, I2, and imidazole (PhMe, reflux, overnight) gave I (R = H, R1 = iodo) (67%). At lower temperature, primary hydroxy-groups were selectively replaced by iodo-groups. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).Related Products of 38838-06-1

The Article related to iodination carbohydrate, imidazole triphenylphosphine iodine carbohydrate iodination, phenylphosphine imidazole iodine carbohydrate iodination, iodoimidazole carbohydrate substitution, epimerization carbohydrate substitution iodine, iodocarbohydrate and other aspects.Related Products of 38838-06-1

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

Tanaka, Kazuho et al. published their research in Synlett in 2001 |CAS: 38838-06-1

The Article related to asym reductive ring opening pyranoside manganese catalyst, hexenal chiral preparation, pentenal chiral preparation, furanoside iodo deoxy reductive ring opening manganese catalyst, reductive ring opening pyranoside deoxy iodo manganese catalyst and other aspects.Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole

On October 31, 2001, Tanaka, Kazuho; Yamano, Shinjiro; Mitsunobu, Oyo published an article.Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole The title of the article was Reductive ring opening of 6-deoxy-6-iodopyranosides and 5-deoxy-5-iodofuranosides by manganese. A convenient procedure for the preparation of chiral 5-hexenals and 4-pentenals. And the article contained the following:

Reaction of fully protected 6-iodopyranosides and 5-iodofuranosides with Mn in the presence of trimethylsilyl chloride and PbCl2 (Takai-conditions) afforded the corresponding 5-hexenals and 4-pentenals in good to moderate yields. For e.g., chiral hexenal I was prepared from D-glucopyranoside II in 79% yield via Mn-catalyzed reductive ring opening reaction. The chiral pentenals obtained from furanosides were unstable and hence, they were reduced with NaBH4 and were isolated as pentenols. Similarly, reductive ring opening of D-xylofuranoside III followed by reduction with NaBH4 gave chiral pentenol IV in 48% yield. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole

The Article related to asym reductive ring opening pyranoside manganese catalyst, hexenal chiral preparation, pentenal chiral preparation, furanoside iodo deoxy reductive ring opening manganese catalyst, reductive ring opening pyranoside deoxy iodo manganese catalyst and other aspects.Application In Synthesis of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole

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

Hall, Adrian et al. published their research in Synlett in 1997 |CAS: 38838-06-1

The Article related to hydroxypyrrolizidine preparation, pyrrolizidine hydroxy preparation, alexine analog preparation, australine analog preparation, nitrone cyclic allyl silyl ether cycloaddition, stereoselective cycloaddition nitrone allyl silyl ether and other aspects.HPLC of Formula: 38838-06-1

On January 31, 1997, Hall, Adrian; Meldrum, Kevin P.; Therond, Patrick R.; Wightman, Richard H. published an article.HPLC of Formula: 38838-06-1 The title of the article was Synthesis of hydroxylated pyrrolizidines related to alexine using cycloaddition reactions of functionalized cyclic nitrones. And the article contained the following:

The hydroxylated pyrrolizidines I and II related to the natural products alexine and australine were prepared by 1,3-dipolar cycloaddition of dehydropyrroline-N-oxides III (R2 = CMe2, R1 = H, R2 = CH2CO2Et; R = H, R12 = CMe2, R2 = CH2SePh) to CH2:CHCH2OSiPh2CMe3. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).HPLC of Formula: 38838-06-1

The Article related to hydroxypyrrolizidine preparation, pyrrolizidine hydroxy preparation, alexine analog preparation, australine analog preparation, nitrone cyclic allyl silyl ether cycloaddition, stereoselective cycloaddition nitrone allyl silyl ether and other aspects.HPLC of Formula: 38838-06-1

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

Downey, A. Michael et al. published their research in Chemistry – A European Journal in 2017 |CAS: 38838-06-1

The Article related to mitsunobu nucleoside riboside glycosylation nucleobase preparation, nucleoside anticancer antiviral glycosylation nucleophilic epoxide ring opening, epoxides, glycosylation, nucleosides, riboses, synthesis design and other aspects.Recommanded Product: 38838-06-1

Downey, A. Michael; Pohl, Radek; Roithova, Jana; Hocek, Michal published an article in 2017, the title of the article was Synthesis of Nucleosides through Direct Glycosylation of Nucleobases with 5-O-Mono-protected or 5-Modified Ribose: Improved Protocol, Scope, and Mechanism.Recommanded Product: 38838-06-1 And the article contains the following content:

Simplifying access to synthetic nucleosides is of interest due to their widespread use as biochem. or anticancer and antiviral agents. Herein, a direct stereoselective method to access an expansive range of both natural and synthetic nucleosides, e.g. I, up to a gram scale, through direct glycosylation of nucleobases with 5-O-tritylribose and other C5-modified ribose derivatives, is discussed in detail. The reaction proceeds through nucleophilic epoxide ring opening of an in situ formed 1,2-anhydrosugar (termed “anhydrose”) under modified Mitsunobu reaction conditions. The scope of the reaction in the synthesis of diverse nucleosides and other 1-substituted riboside derivatives is described. In addition, a mechanistic insight into the formation of this key glycosyl donor intermediate is provided. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).Recommanded Product: 38838-06-1

The Article related to mitsunobu nucleoside riboside glycosylation nucleobase preparation, nucleoside anticancer antiviral glycosylation nucleophilic epoxide ring opening, epoxides, glycosylation, nucleosides, riboses, synthesis design and other aspects.Recommanded Product: 38838-06-1

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

Mattis, Clayton E. et al. published their research in Carbohydrate Research in 2016 |CAS: 38838-06-1

The Article related to c-glycosides role: rct (reactant), spn (synthetic preparation), ract (reactant or reagent), prep (preparation), cross-metathesis, disaccharides role: rct (reactant), spn (synthetic preparation), ract (reactant or reagent), prep (preparation), hydroboration, oxidation, ring-closing metathesis, steroidal glycosides role: rct (reactant), spn (synthetic preparation), ract (reactant or reagent), prep (preparation) and other aspects.COA of Formula: C9H15IO4

On April 29, 2016, Mattis, Clayton E.; Mootoo, David R. published an article.COA of Formula: C9H15IO4 The title of the article was A ring closing metathesis strategy for carbapyranosides of xylose and arabinose. And the article contained the following:

The synthesis of β-carba-xylo and arabino pyranosides of cholestanol is described. The synthetic strategy, which is analogous to the Postema approach to C-glycosides, centers on the ring closing metathesis of an enol ether-alkene precursor to give a cyclic enol ether that is elaborated to a carba-pyranoside via hydroboration-oxidation on the olefin. The method, which is attractive for its modularity and stereoselectivity, may find wider applications to carba-hexopyranosides and other complex cycloalkyl ether frameworks. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).COA of Formula: C9H15IO4

The Article related to c-glycosides role: rct (reactant), spn (synthetic preparation), ract (reactant or reagent), prep (preparation), cross-metathesis, disaccharides role: rct (reactant), spn (synthetic preparation), ract (reactant or reagent), prep (preparation), hydroboration, oxidation, ring-closing metathesis, steroidal glycosides role: rct (reactant), spn (synthetic preparation), ract (reactant or reagent), prep (preparation) and other aspects.COA of Formula: C9H15IO4

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

Gulla, Mahendra et al. published their research in Zeitschrift fuer Naturforschung, B: Chemical Sciences in 2006 |CAS: 38838-06-1

The Article related to bromocyclization unsaturated oxime five member cyclic nitrone preparation, symposium bromination cyclization unsaturated oxime, cyclic nitrone pyrroline oxide preparation, unsaturated oxide bromocyclization lactonization cyclic nitrone, pyridine oxide cyclic nitrone preparation, indole oxide cyclic nitrone preparation, pyrrole oxide cyclic nitrone preparation and other aspects.HPLC of Formula: 38838-06-1

On April 30, 2006, Gulla, Mahendra; Bierer, Lars; Schmidt, Stefan; Redcliffe, Leo; Jaeger, Volker published an article.HPLC of Formula: 38838-06-1 The title of the article was Bromocyclization of unsaturated oximes. Synthesis of five-membered cyclic nitrones (pyrroline n-oxides). And the article contained the following:

The cyclization of a ribose-derived pentenose oxime with various halogen electrophiles showed bromine to be the most effective reagent, leading to 80% of L-lyxo/D-ribo-pyrroline N-oxides in an 84:16 diastereomeric ratio. In order to explore the scope of this facile process, several other γ,δ-unsaturated oximes were submitted to this reaction. Depending on the substitution pattern, 23-87%, yields of pyrroline N-oxides of were registered. With α-allyl-β-keto ester oximes the alkoxycarbonyl group proved a similar (ethoxy) or even better (t-butoxy) trapping nucleophile, leading preferentially to the corresponding (bromomethyl)lactone oxime. With 2,2-dimethyl-3-butene aldoxime, the corresponding 3-bromopyrroline N-oxide was formed, due to a formal, unusual N-endo cyclization to the chain terminus. This was exploited for a new access to six-membered nitrones from a γ,δ-pentene aldoxime, with addition of Br/OH to the C=C of the 4-pentenal first, and oximation/cyclization following then. Example compounds (cyclic nitrones) thus prepared included derivatives of 3a,6a-dihydro-2,2-dimethyl-4H-1,3-dioxolo[4,5-c]pyrrole, trans-2-(bromomethyl)-3,4-dihydro-3-phenyl-2H-pyrrole 1-oxide, 2,3,4,5-tetrahydro-5,5-dimethyl-3-pyridinol 1-oxide, etc. Presented in part at the 7th Conference on Iminium Salts (ImSaT-7) at Bartholomae/Ostalbkreis, Sept. 6-8, 2005. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).HPLC of Formula: 38838-06-1

The Article related to bromocyclization unsaturated oxime five member cyclic nitrone preparation, symposium bromination cyclization unsaturated oxime, cyclic nitrone pyrroline oxide preparation, unsaturated oxide bromocyclization lactonization cyclic nitrone, pyridine oxide cyclic nitrone preparation, indole oxide cyclic nitrone preparation, pyrrole oxide cyclic nitrone preparation and other aspects.HPLC of Formula: 38838-06-1

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

Palmer, Andreas M. et al. published their research in European Journal of Organic Chemistry in 2001 |CAS: 38838-06-1

The Article related to pyrrolidine oxide derivative stereoselective preparation, pyrrolidinediol derivative stereoselective preparation, hydroxylamine unsaturated cope house cyclization, grignard addition stereoselective dideoxyisopropylidenepentenose benzylnitrone, pentenose dideoxyisopropylidene benzylnitrone stereoselective grignard addition and other aspects.HPLC of Formula: 38838-06-1

On April 30, 2001, Palmer, Andreas M.; Jager, Volker published an article.HPLC of Formula: 38838-06-1 The title of the article was Synthesis of glycosidase-inhibiting iminopolyols by Cope-House cyclization of unsaturated hydroxylamines. III. Pyrrolidine N-oxides by stereoselective addition of Grignard and lithium compounds to 4,5-dideoxy-2,3-O-isopropylidene-D-erythro-4-pentenose N-benzylnitrone and subsequent Cope-House cyclization. And the article contained the following:

The addition of Grignard reagents to D-erythro-4-pentenose N-benzylnitrone, which is easily accessible from D-ribose, furnishes ω-unsaturated hydroxylamines that readily undergo Cope-House cyclization to afford pyrrolidine N-oxides. The stereoselectivity of the addition step is altered by either employing organolithium compounds or Lewis acids as complexing agents. The pyrrolidine N-oxides obtained by this sequence serve as key intermediates in the synthesis of 2,5-disubstituted pyrrolidine-3,4-diols, both constituting new potential inhibitors of glycosidases. The experimental process involved the reaction of (3aS,4S,6R,6aR)-4-(Iodomethyl)-6-methoxy-2,2-dimethyltetrahydrofuro[3,4-d][1,3]dioxole(cas: 38838-06-1).HPLC of Formula: 38838-06-1

The Article related to pyrrolidine oxide derivative stereoselective preparation, pyrrolidinediol derivative stereoselective preparation, hydroxylamine unsaturated cope house cyclization, grignard addition stereoselective dideoxyisopropylidenepentenose benzylnitrone, pentenose dideoxyisopropylidene benzylnitrone stereoselective grignard addition and other aspects.HPLC of Formula: 38838-06-1

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