• Title/Summary/Keyword: One-pot reaction

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Silica Supported Tungstosilicic Acid as an Efficient and Reusable Catalyst for the One-Pot Synthesis of β-Acetamido Ketones via a Four-Component Condensation Reaction

  • Nasr-Esfahani, Masoud;Montazerozohori, Morteza;Gholampour, Tahere
    • Bulletin of the Korean Chemical Society
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    • v.31 no.12
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    • pp.3653-3657
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    • 2010
  • Silica supported tungstosilicic acid has been used as an effective catalyst for a modified Dakin-West one-pot, four-component condensation of an aryl aldehyde, an aryl ketone, acetyl chloride and acetonitrile for the synthesis of $\beta$-acetamido ketones. This catalytic system can act as an active, inexpensive, recoverable and recyclable catalyst. Some advantages of this system are short reaction times, good to excellent yields, easy work up and the ability to be carried out at the large scale reactions.

Ring Closure of N-(2-Hydroxyethyl)-N'-phenylthioureas:One-Pot Synthesis of 2-Phenylaminothiazolines

  • Kim, Taek Hyeon;Min, Jeong Gi;Lee, Gyu Jae
    • Bulletin of the Korean Chemical Society
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    • v.21 no.9
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    • pp.919-922
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    • 2000
  • The cyclization reaction of N-(2-hydroxyethyl)-N'-phenylthioureas 2 containingambident nucleophile was ex-amined in the combination of a variety ofbases and p-toluenesulfonyl chloride (TsCl).N-(2-Hydroxyeth-yl) thioureas 2 were readily obtained in high yields from the reaction of the corresponding 1,2-aminoalcohols with phenyl isothiocyanate, avoiding the need for O-protection.The use of a one-pot reaction (NaOH/TsCl) was found to be most effective in producing the requisite 2-phenylaminothiazolines (S-cyclization) 3 in the case ofthioureas 2a-2e derived from N-unsubstituted aminoalcohols,while in the thioureas 2f and 2g prepared from N-substituted aminoalcohols the combination of Et3N and TsCl led to the S-cyclization products.

Synthesis of 2-Oxo-4-quinolines Using One-pot Reaction for Novel Flavonoid Derivatives

  • Park, Myung-Sook;Kim, Nan-Young;Park, Hae-Sun;Kim, Ju-Hee;Lee, Jae-in
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.183.2-183.2
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    • 2003
  • We report the synthesis of 3,4-dihydro-2-oxo-4-quinolines 5a-e for the development novel flavonoid derivatives with potential antiinflammatory activity and propose a mechanism of the one-pot reaction. The various amines (la-e) for this work were commercially available. We isolated that ester (2a-e) were formed by nucleophilic attraction using ethyl benzoylacetate. The C-N bond formation proceeded at refluxing in toluene with catalytic amount of p-toluenesulfonic acid and a removal of water and ethanol was important in this reaction. (omitted)

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Silica Gel-Supported Polyphosphoric Acid (PPA-SiO2) Catalyzed One-Pot Multi-Component Synthesis of 3,4-Dihydropyrimidin-2(1H)-ones and -thiones: An Efficient Method for the Biginelli Reaction

  • Zeinali-Dastmalbaf, Mohsen;Davoodnia, Abolghasem;Heravi, Majid M.;Tavakoli-Hoseini, Niloofar;Khojastehnezhad, Amir;Zamani, Hassan Ali
    • Bulletin of the Korean Chemical Society
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    • v.32 no.2
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    • pp.656-658
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    • 2011
  • A green and efficient method for the synthesis of 3,4-dihydropyrimidin-2(1H)-ones and -thiones through one-pot three-component reaction of ethyl acetoacetate, an aryl aldehyde, and urea or thiourea in acetonitrile using silica gel-supported polyphosphoric acid (PPA-$SiO_2$) as catalyst is described. Compared to the classical Biginelli reaction conditions, the present methodology offers several advantages such as high yields, relatively short reaction times, mild reaction condition and a recyclable catalyst with a very easy work up.

One-pot Enzymatic Synthesis of UDP-D-glucose from UMP and Glucose-1-phosphate Using an ATP Regeneration System

  • Lee, Hei-Chan;Lee, Seung-Don;Sohng, Jae-Kyung;Liou, Kwang-Kyoung
    • BMB Reports
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    • v.37 no.4
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    • pp.503-506
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    • 2004
  • Glucose-1-phosphate uridylyltransferase from E. coli K12 was used to convert uridine-5'-triphosphate and glucose-1-phosphate to UDP-D-glucose. The conversion was efficient and completed within 5 minutes under the employed conditions. In addition, thymidine-5'-monophosphate kinase and acetate kinase were proven to be non-specific, converting udridine-5'-monophosphate to uridine-5'-triphosphate with 55% conversion after 6 h, which was much slower than the production of TTP under the same conditions (complete conversion within one hour). Since these two reactions could proceed under the same conditions, a one-pot synthesis of UDP-D-glucose with ATP regeneration was designed from easily available starting materials, and conversion up to 40% by HPLC peak integration was achieved given a reaction time of 4 h.

Easy-to-execute 'One-pot' Synthesis of 1,2,4,5-Tetrazines Catalyzed by Activated Fly Ash (활성화된 비산회 촉매를 이용하여 간단히 수행된 1,2,4,5-Tetrazines의 One-pot 합성)

  • Gopalakrishnan, M.;Thanusu, J.;Kanagarajan, V.
    • Journal of the Korean Chemical Society
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    • v.51 no.6
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    • pp.520-525
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    • 2007
  • Three-component coupling of thiourea/urea, various structurally diverse aromatic aldehydes and ammonium acetate is catalyzed by activated fly ash in dry media under microwave irradiation to give 6-aryl-1,2,4,5-tetrazinan- 3-thiones/ones in good yields. The structure of 6-aryl-1,2,4,5-tetrazinan-3-thiones/ones have been elucidated on the basis of their melting points, elemental analysis, MS, IR, 1H NMR, D2O exchange, 13C NMR and two dimensional NMR spectral studies including Homonuclear Correlation (HOMOCOR) and Heteronuclear Single Quantum Correlation (HSQC) spectra.

Efficient One-Pot Synthesis of Acridinediones by Indium(III) Triflate-Catalyzed Reactions of β-Enaminones, Aldehydes, and Cyclic 1,3-Dicarbonyls

  • To, Quang Huy;Lee, Yong-Rok;Kim, Sung-Hong
    • Bulletin of the Korean Chemical Society
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    • v.33 no.4
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    • pp.1170-1176
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    • 2012
  • An efficient one-pot synthesis of acridinediones by $In(OTf)_3$-catalyzed reactions was developed starting from ${\beta}$-enaminones, aldehydes, and cyclic 1,3-diketones. The key strategies of these reactions involve domino Knoevenagel condensation/Michael addition/cyclodehydration reaction.