673494-52-5Relevant academic research and scientific papers
Oxy-sulfonylation of terminal alkynesviaC-S coupling enabled by copper photoredox catalysis
Charpe, Vaibhav Pramod,Das, Deb Kumar,Hwang, Kuo Chu,Hwu, Jih Ru,Lin, Chun-Cheng,Pampana, V. K. K.,Sagadevan, Arunachalam
supporting information, p. 3569 - 3574 (2021/06/06)
We report the first literature example using visible light-induced trimethylsilyl azide (TMS-N3)-assisted copper-catalyzed oxy-sulfonylation of terminal C-C bonds to form β-keto sulfones (C-S bond formation). TMS-N3promotes the reaction by facilitating the formation of sulfonyl radicals, which later decompose into N2gas upon light irradiation. This method involves the use of commercially available and stable starting materials. Also, a wide range of functional groups have been well-tolerated under the current photoredox process, evading the side product formation. Potent biologically active compounds, such as CES1, 11β-HSD1 inhibitors, anti-analgesic agents, and reactive synthesis intermediates were synthesized to demonstrate the synthetic utility of the current methodology. Moreover, green chemistry metrics and Eco-scale evaluation for the current photochemical method show that the protocol is eco-friendly and highly efficient.
Synthesis of β-ketosulfone derivatives as new non-cytotoxic urease inhibitors in vitro
Iqbal Choudhary, M.,Iqbal, Sarosh,Khan, Ajmal,Khan, Khalid Mohammed,Kiran, Shumaila,Nazir, Rashid,Perveen, Shahnaz
, p. 244 - 255 (2020/03/10)
Background: Peptic ulcer and urolithiasis are largely due to infection caused by urease-producing bacteria. Therefore, the discovery of urease inhibitors is an important area of medicinal chemistry research. Objective: The main aim of the work was to identify novel urease inhibitors with no cytotoxicity. Method: During the current study, a series of β-ketosulfones 1-26 was synthesized in two steps and evaluated for their in vitro urease inhibition potential. Results: Out of twenty-six compounds, seventeen have shown good to significant urease inhibitory activity with IC50 values ranging between 49.93-351.46 μM, in comparison to standard thiourea (IC50 = 21 ± 0.11 μM). Moreover, all compounds found to be non-cytotoxic against normal 3T3 cell line. Conclusion: This study has identified β-ketosulfones as novel and non-cytotoxic urease inhibitors.
Efficient sulfonylation of ketones with sodium sulfinates for the synthesis of β-keto sulfones
Deng, Siqi,Liang, En,Wu, Yinrong,Tang, Xiaodong
, p. 3955 - 3957 (2018/09/27)
The oxidative sulfonylation of ketones with sodium sulfinates as the sulfone source and DMSO as the oxidant is reported. A series of β-keto sulfones were obtained in good to excellent yields. The advantages of this efficient protocol include the low cost of DMSO and HBr, and a broad scope.
Synthesis and antifungal activity of novel oxazolidin-2-one-linked 1,2,3-triazole derivatives
Ramírez-Villalva, Alejandra,González-Calderón, Davir,Rojas-García, Roxana I.,González-Romero, Carlos,Tamaríz-Mascarúa, Joaquín,Morales-Rodríguez, Macario,Zavala-Segovia, Nieves,Fuentes-Benítes, Aydeé
, p. 2258 - 2262 (2017/12/26)
Novel oxazolidin-2-one-linked 1,2,3-triazole derivatives (4a-k) were synthesized by straightforward and versatile azide-enolate (3 + 2) cycloaddition. The series of compounds was screened for antifungal activity against four filamentous fungi as well as six yeast species of Candida spp. According to their efficiency and breadth of scope, they can be ordered as 4k > 4d > 4h > 4a, especially in relation to the activity displayed against Candida glabrata ATCC-34138, Trichosporon cutaneum ATCC-28592 and Mucor hiemalis ATCC-8690, i.e. compounds 4d, 4h and 4k showed excellent activity against C. glabrata (MIC 0.12, 0.25 and 0.12 μg mL-1, respectively), better than that of itraconazole (MIC 1 μg ml-1). The activity of compound 4d (MIC = 2 μg mL-1) was higher than that observed for the standard antifungal drug (MIC = 8 μg mL-1) against Trichosporon cutaneum, while compound 4k displayed an excellent antimycotic activity against Mucor hiemalis (MIC = 2 μg mL-1vs. 4 μg mL-1 for itraconazole). In addition, we describe herein a novel mild and eco-friendly synthetic protocol for obtaining β-ketosulfones (adducts to afford compounds 4a-k) from α-brominated carbonyls in an aqueous nanomicellar medium at room temperature.
Metal-free and selective cleavage of unstrained carbon–carbon single bonds: Synthesis of β-ketosulfones from β-chlorohydrins and sodium sulfinates
Li, Yanni,Liang, Deqiang,Chang, Yu,Li, Xiangguang,Fu, Shaoguang,Yuan, Yunli,Wang, Baoling
supporting information, p. 2044 - 2052 (2017/10/23)
A metal-free protocol for the selective cleavage of unstrained C–C single bonds was developed. Under the catalysis of KI and in the presence of NaHCO3, the readily available α-chloro-β-hydroxy ketones underwent bond breaking and sulfonylation smoothly to afford β-ketosulfones with high efficiency and broad substrate scope. Mechanism investigations, both experimental and theoretical, showed that a retro-aldol cleavage/nucleophilic substitution sequence might be involved.
Copper Triflate Mediated α-Monohalogenation of α-Diazo β-Ketosulfones with Ammonium Halides
Chan, Chieh-Kai,Wang, Heui-Sin,Hsu, Ru-Ting,Chang, Meng-Yang
, p. 2045 - 2056 (2017/04/26)
Copper triflate mediated α-monohalogenation of α-diazo β-ketosulfones with ammonium halides provides the corresponding α-halo β-ketosulfones. Different metal triflates are investigated for this facile and efficient transformation. A plausible mechanism is proposed.
O -Iodoxybenzoic Acid (IBX)-Iodine Mediated One-Pot Deacylative Sulfonylation of 1,3-Dicarbonyl Compounds: A Synthesis of β-Carbonyl Sulfones
Katrun, Praewpan,Songsichan, Teerawat,Soorukram, Darunee,Pohmakotr, Manat,Reutrakul, Vichai,Kuhakarn, Chutima
supporting information, p. 1109 - 1121 (2017/02/24)
A combination of o-iodoxybenzoic acid (IBX) and a catalytic amount of iodine is found to promote a facile one-pot deacylative sulfonylation reaction of 1,3-dicarbonyl compounds with sodium sulfinates to yield β-carbonyl sulfones. The present method provides the target products bearing a wide variety of functional groups in one step and in good yields.
Preparation method of beta-arone substituted sulfone compounds
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Paragraph 0028; 0029; 0030; 0031; 0032; 0049-0052, (2016/10/10)
The invention provides a preparation method of beta-arone substituted sulfone compounds. In the method, olefin azide and sulfonyl hydrazide are used as start raw materials; and in an organic solvent, potassium iodide serves as a catalyst while tert-butyl hydroperoxide serves as an oxidizing agent, and the beta-arone substituted sulfone compounds are generated by reactions, wherein the reaction temperature is room temperature, and the reaction time is 2-4 hours. The preparation method provided by the invention has the advantages that the design is reasonable, the raw materials are easily available, no metal catalyst is involved, the reaction conditions are mild, high-temperature backflow is not required, the method is safe and convenient, the yield is high, and the yield of most products is over 70%. The preparation method provided by the invention is an easy-to-operate method for quickly establishing beta-arone substituted sulfone compounds in a mild and diversified manner, wherein the two start raw materials can be obtained by a one-step method, and the reaction raw materials are cheap and easily available. The general formula I of the beta-arone substituted sulfone compounds is shown in the specification.
Tetrabutylammonium iodide-catalyzed oxidative coupling of enamides with sulfonylhydrazides: Synthesis of β-keto-sulfones
Tang, Yucai,Zhang, Ye,Wang, Kaifeng,Li, Xiaoqing,Xu, Xiangsheng,Du, Xiaohua
, p. 7084 - 7090 (2015/06/30)
A facile synthetic route towards pharmaceutically interesting β-keto-sulfone derivatives by tetrabutylammonium iodide (TBAI)/tert-butyl hydroperoxide (TBHP) mediated oxidative coupling of readily prepared enamides with economical sulfonylhydrazides is described. The corresponding β-keto-sulfone compounds were obtained in moderate to good yields. The present method is metal-free and base-free and shows tolerance to a variety of functional groups. This journal is
IBX/Imediated reaction of sodium arenesulfinates with alkenes: Facile synthesis of β-keto sulfones
Samakkanad, Natthapol,Katrun, Praewpan,Techajaroonjit, Thanachart,Hlekhlai, Sornsiri,Pohmakotr, Manat,Reutrakul, Vichai,Jaipetch, Thaworn,Soorukram, Darunee,Kuhakarn, Chutima
experimental part, p. 1693 - 1699 (2012/07/03)
A direct synthesis of -keto sulfones from alkenes is described. A combination of o-iodoxybenzoic acid/iodine (IBX/I was found to mediate the reactions of alkenes with arenesulfinates to yield -keto sulfones in good yields via a one-pot reaction. Georg Thieme Verlag Stuttgart · New York.
