Fe3O4@TiO2@V2O5作为一种有效的磁性纳米颗粒用于合成二吲哚吲哚衍生物

IF 1.1 Q3 MINING & MINERAL PROCESSING
H. Hassani, A. Agah
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引用次数: 0

摘要

在该工作中,Fe3O4@TiO2@通过用TiO2官能化Fe3O4,然后用V2O5改性来合成V2O5。采用XRD、TEM、SEM、EDS、TGA和VSM等方法对合成的纳米催化剂进行了表征。这种纳米催化剂令人印象深刻地催化3,3-二吲哚基氧吲哚的合成(在10-80分钟内产率为85-98%)。此外,引入的催化剂可以在至少五个连续反应中重复使用,而没有显著的催化活性损失。一些影响因素对催化效果的影响Fe3O4@TiO2@还对五氧化二钒进行了评估。可获得适用于各种靛蓝素和吲哚的适当产品。使用廉价且可重复使用的催化剂和使用H2O溶剂使该方法进入绿色化学领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fe3O4@TiO2@V2O5 as an efficient magnetic nanoparticle for synthesis of di-indolyl oxindole derivatives
In this work, Fe3O4@TiO2@V2O5 is synthesized via functionalization of Fe3O4 with TiO2 and then modifying with V2O5. The characterization of the synthesized nano-catalyst is performed using several methods including XRD, TEM, SEM, EDS, TGA, and VSM. This nano-catalyst impressively catalyzes the synthesis of 3,3-di-indolyl oxindoles (with an 85-98% yield in 10-80 minutes). Furthermore, the introduced catalyst can be reused in at least five successive reactions with no significant catalytic activity loss. The effects of some influencing parameters on the catalytic efficacy of Fe3O4@TiO2@V2O5 are also assessed. The appropriate product is attained for a wide range of isatins and indoles. Using an inexpensive and reusable catalyst and using the H2O solvent puts this methodology in the green chemistry domain.
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来源期刊
Journal of Mining and Environment
Journal of Mining and Environment MINING & MINERAL PROCESSING-
CiteScore
1.90
自引率
25.00%
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0
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