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Information Journal Paper

Title

Cu/aminoclay/reduced graphene oxide nanohybrid: an efficient catalyst for N-arylation of nucleobases and other N-heterocycles under ultrasonic irradiation

Pages

  135-148

Abstract

 An ultrasonic promoted facile and convenient procedure for the synthesis of N-aryl Nucleobases and other N-heterocyclic derivatives using Cu/aminoclay/reduced graphene oxide nanohybrid as an efficient heterogeneous Nano-catalyst has been described. In this approach, room temperature ultrasonic mediated N-Arylation reaction of Nucleobases and other N-heterocyclic compounds with Aryl halides (bromide and iodide) bearing diverse functionalities catalyzed by Cu/aminoclay/reduced graphene oxide nanohybrid in the presence of Cs2CO3 in DMSO at room temperature furnishes the corresponding N-aryl derivatives in good to excellent yields. Utilizing Ultrasonic irradiation technique provided the dramatic improvements in terms of higher yields and shorter reaction times compared with conventional heating method. The use of mild reaction conditions, short reaction time, recoverability and reusability of catalyst, and simple purification process are important advantages of the present method.

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  • Cite

    APA: Copy

    Behrouz, Somayeh, & Soltani Rad, Mohammad Navid. (2019). Cu/aminoclay/reduced graphene oxide nanohybrid: an efficient catalyst for N-arylation of nucleobases and other N-heterocycles under ultrasonic irradiation. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC), 13(1 ), 135-148. SID. https://sid.ir/paper/180135/en

    Vancouver: Copy

    Behrouz Somayeh, Soltani Rad Mohammad Navid. Cu/aminoclay/reduced graphene oxide nanohybrid: an efficient catalyst for N-arylation of nucleobases and other N-heterocycles under ultrasonic irradiation. JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC)[Internet]. 2019;13(1 ):135-148. Available from: https://sid.ir/paper/180135/en

    IEEE: Copy

    Somayeh Behrouz, and Mohammad Navid Soltani Rad, “Cu/aminoclay/reduced graphene oxide nanohybrid: an efficient catalyst for N-arylation of nucleobases and other N-heterocycles under ultrasonic irradiation,” JOURNAL OF APPLIED RESEARCHES IN CHEMISTRY (JARC), vol. 13, no. 1 , pp. 135–148, 2019, [Online]. Available: https://sid.ir/paper/180135/en

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