Publication Cover
Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 40, 2010 - Issue 21
308
Views
29
CrossRef citations to date
0
Altmetric
Original Articles

Ecofriendly and Efficient One-Pot Procedure for the Synthesis of Quinazoline Derivatives Catalyzed by an Acidic Ionic Liquid Under Aerobic Oxidation Conditions

, &
Pages 3214-3225 | Received 12 Jul 2009, Published online: 04 Oct 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Sepideh Solgi, Ramin Ghorbani-Vaghei, Sedigheh Alavinia & Vida Izadkhah. (2022) Preparation and Application of Highly Efficient and Reusable Nanomagnetic Catalyst Supported with Sulfonated-Hexamethylenetetramine for Synthesis of 2,3-Dihydroquinazolin-4(1H)-Ones. Polycyclic Aromatic Compounds 42:5, pages 2410-2419.
Read now
D. Subhas Bose & Nukala Ramesh. (2020) A convenient access to 2,4-disubstituted quinazolines via one-pot three-component reaction under mild conditions†. Synthetic Communications 50:10, pages 1495-1503.
Read now

Articles from other publishers (26)

Sarieh Momeni & Ramin Ghorbani‑Vaghei. (2023) Green synthesis of quinazoline derivatives using a novel recyclable nano-catalyst of magnetic modified graphene oxide supported with copper. Scientific Reports 13:1.
Crossref
P. E. More, B. P. More, V. D. Dasewar, N. B. Masal & N. S. Shinde. (2023) A Simple and Efficient One-Pot Solvent-Free Synthesis of Quinazoline Derivatives Catalyzed by Wet Zinc Ferrite in Air Atmosphere. Russian Journal of Organic Chemistry 59:7, pages 1198-1205.
Crossref
Sangeeta Kalita, Niharika Kashyap, Debanga Bhusan Bora, Sukanya Das & Ruli Borah. (2023) Investigation of N,N′‐Disulfopiperazinium Chlorometallates of Fe(III), Ni(II) and Co(II) as Hybrid Catalysts for the Synthesis of 1,2‐Dihydroquinazoline Derivatives. ChemistrySelect 8:18.
Crossref
Dornaz Pirdelzendeh, Manouchehr Mamaghani, Farhad Shirini & Mehdi Sheykhan. (2021) Copper incorporated hydroxyapatite encapsulated Kit-6 mesoporous silica as a novel and recoverable nanocatalyst for the synthesis of quinazolines. Reaction Kinetics, Mechanisms and Catalysis 133:1, pages 441-454.
Crossref
Rajkumar Romeshkumar Singh, Thokchom Prasanta Singh, Thangjam Linda Devi, Thokchom Jeeta Devi & Okram Mukherjee Singh. (2021) Synthesis of 2,4-disubstituted quinazolines promoted by deep eutectic solvent. Current Research in Green and Sustainable Chemistry 4, pages 100130.
Crossref
Anvar Fatehi, Ramin Ghorbani‐Vaghei, Sedigheh Alavinia & Jafar Mahmoodi. (2020) Synthesis of Quinazoline Derivatives Catalyzed by a New Efficient Reusable Nanomagnetic Catalyst Supported with Functionalized Piperidinium Benzene‐1,3‐Disulfonate Ionic Liquid. ChemistrySelect 5:3, pages 944-951.
Crossref
Nehaal AhmedAndré ShamsabadiVijay Chudasama. (2019) Formation of Synthetically Versatile 2-Aminobenzophenones from Readily Accessed Acyl Hydrazides. ACS Omega 4:27, pages 22601-22612.
Crossref
En Liang, Yinrong Wu, Jiewen Chen, Wei Xiong, Jinwu Zhao, Xingang Yao & Xiaodong Tang. (2019) Copper-catalyzed aerobic oxidative cyclization protocol for the synthesis of quinazolines via amination of C(sp3)-H bonds of methylazaarenes. Tetrahedron 75:52, pages 130783.
Crossref
Ebrahim S. Moghadam, Maryam H. Tehrani, René Csuk, Lucie Fischer, Mohammad Ali Faramarzi, Arezoo Rashidi, Iraj Javadi & Mohsen Amini. (2019) 2,4-Disubstituted Quinazoline Derivatives Act as Inducers of Tubulin Polymerization: Synthesis and Cytotoxicity. Anti-Cancer Agents in Medicinal Chemistry 19:8, pages 1048-1057.
Crossref
Navjeet Kaur. (2019) Ionic Liquids: A Versatile Medium for the Synthesis of Six-membered Two Nitrogen- Containing Heterocycles. Current Organic Chemistry 23:1, pages 76-96.
Crossref
Saeed Babaee, Mohammad Ali Zolfigol, Mahmoud Zarei & Javad Zamanian. (2018) 1,10‐Phenanthroline‐Based Molten Salt as a Bifunctional Sulfonic Acid Catalyst: Application to the Synthesis of N ‐Heterocycle Compounds via Anomeric Based Oxidation . ChemistrySelect 3:31, pages 8947-8954.
Crossref
Behrooz Maleki & Akram Vedad Mofrad. (2016) Efficient synthesis of quinazoline derivatives catalyzed by flourinated alcohol. Research on Chemical Intermediates 43:5, pages 3111-3120.
Crossref
Dickson Ozokwelu, Suojiang Zhang, Obiefuna C. Okafor, Weiguo Cheng & Nicholas Litombe. 2017. Novel Catalytic and Separation Processes Based on Ionic Liquids. Novel Catalytic and Separation Processes Based on Ionic Liquids 111 191 .
Yizhe Yan, Miaomiao Shi, Bin Niu, Xiangping Meng, Changrui Zhu, Gengyao Liu, Ting Chen & Yanqi Liu. (2016) Copper-catalyzed aerobic oxidative decarboxylative amination of arylacetic acids: a facile access to 2-arylquinazolines. RSC Advances 6:42, pages 36192-36197.
Crossref
Syed Muhammad Saad, Khalid Mohammed Khan, Shahnaz Perveen, Wolfgang Voelter & Muhammad Taha. (2015) A new and facile CuCl2·2H2O-catalyzed one-pot three-component synthesis for quinazolines. Monatshefte für Chemie - Chemical Monthly 146:11, pages 1877-1880.
Crossref
Tamar L. Greaves & Calum J. Drummond. (2015) Protic Ionic Liquids: Evolving Structure–Property Relationships and Expanding Applications. Chemical Reviews 115:20, pages 11379-11448.
Crossref
Nanjappan Gunasekaran. (2015) Aerobic Oxidation Catalysis with Air or Molecular Oxygen and Ionic Liquids. Advanced Synthesis & Catalysis 357:9, pages 1990-2010.
Crossref
Seyed Meysam Baghbanian & Maryam Farhang. (2014) CuFe2O4 nanoparticles: a magnetically recoverable and reusable catalyst for the synthesis of quinoline and quinazoline derivatives in aqueous media. RSC Advances 4:23, pages 11624.
Crossref
Satish A. Dake, Swapanil R. Sarda, Rajendra P. Marathe, Rajesh B. Nawale, Uday A. Deokate, Somshekhar S. Khadabadi & Rajendra P. Pawar. 2014. Green Chemistry: Synthesis of Bioactive Heterocycles. Green Chemistry: Synthesis of Bioactive Heterocycles 201 230 .
Sumit Kumar Panja & Satyen Saha. (2013) Recyclable, magnetic ionic liquid bmim[FeCl4]-catalyzed, multicomponent, solvent-free, green synthesis of quinazolines. RSC Advances 3:34, pages 14495.
Crossref
Sumit Kumar Panja, Nidhi Dwivedi & Satyen Saha. (2012) I2-Catalyzed three-component protocol for the synthesis of quinazolines. Tetrahedron Letters 53:46, pages 6167-6172.
Crossref
Tim Ståhlberg, Ester Eyjólfsdóttir, Yury Y. Gorbanev, Irantzu Sádaba & Anders Riisager. (2012) Aerobic Oxidation of 5-(Hydroxymethyl)furfural in Ionic Liquids with Solid Ruthenium Hydroxide Catalysts. Catalysis Letters 142:9, pages 1089-1097.
Crossref
Madhav Bandaru, Narayana Murthy Sabbavarapu, Anil Kumar Bandam Santosh Pavan, Ashwan Kumar Akula & Nageswar Yadavalli Venkata Durga. (2012) Simple and straight forward synthesis of 2,4-disubstituted quinazolines in aqueous medium. European Journal of Chemistry 3:2, pages 252-257.
Crossref
Yanlong Gu. (2012) Multicomponent reactions in unconventional solvents: state of the art. Green Chemistry 14:8, pages 2091.
Crossref
Zhan-Hui Zhang, Xiao-Nan Zhang, Li-Ping Mo, Yong-Xiao Li & Fei-Ping Ma. (2012) Catalyst-free synthesis of quinazoline derivatives using low melting sugar–urea–salt mixture as a solvent. Green Chemistry 14:5, pages 1502.
Crossref
Minoo Dabiri, Peyman Salehi & Mahboobeh Bahramnejad. (2011) ChemInform Abstract: Ecofriendly and Efficient One‐Pot Procedure for the Synthesis of Quinazoline Derivatives Catalyzed by an Acidic Ionic Liquid under Aerobic Oxidation Conditions.. ChemInform 42:13.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.