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钯镍合金纳米粒子与氧化石墨烯复合材料用于醛与丙二腈的Knoevenagel缩合反应

Composites of Palladium-Nickel Alloy Nanoparticles and Graphene Oxide for the Knoevenagel Condensation of Aldehydes with Malononitrile.

作者信息

Lolak Nabih, Kuyuldar Esra, Burhan Hakan, Goksu Haydar, Akocak Süleyman, Sen Fatih

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Adiyaman University, 02040 Adiyaman, Turkey.

Sen Research Group, Department of Biochemistry, Faculty of Arts and Science, Dumlupınar University, Evliya Çelebi Campus, 43100 Kütahya, Turkey.

出版信息

ACS Omega. 2019 Apr 16;4(4):6848-6853. doi: 10.1021/acsomega.9b00485. eCollection 2019 Apr 30.

Abstract

Herein, we have described uniformly dispersed palladium-nickel nanoparticles furnished on graphene oxide (GO-supported PdNi nanoparticles) as a powerful heterogeneous nanocatalyst for the promotion of Knoevenagel reaction between malononitrile and aromatic aldehydes under mild reaction conditions. The successful characterization of PdNi nanoparticles on the GO surface was shown by X-ray diffraction, X-ray photoelectron spectroscopy, high-resolution transmission electron microscopy (HR-TEM), and TEM. GO-supported PdNi nanoparticles, which are used as highly efficient, stable, and durable catalysts, were used for the first time for the Knoevenagel condensation reaction. The data obtained here showed that the GO-supported PdNi nanocatalyst had a unique catalytic activity and demonstrated that it could be reused five times without a significant decrease in the catalytic performance. The use of this nanocatalyst results in a very short reaction time under mild reaction conditions, high recyclability, excellent catalytic activity, and a straightforward work-up procedure for Knoevenagel condensation of malononitrile and aromatic aldehydes.

摘要

在此,我们描述了负载在氧化石墨烯上的均匀分散的钯镍纳米颗粒(氧化石墨烯负载的钯镍纳米颗粒),它是一种强大的多相纳米催化剂,可在温和的反应条件下促进丙二腈与芳香醛之间的Knoevenagel反应。通过X射线衍射、X射线光电子能谱、高分辨率透射电子显微镜(HR-TEM)和透射电子显微镜(TEM)证明了钯镍纳米颗粒在氧化石墨烯表面的成功表征。氧化石墨烯负载的钯镍纳米颗粒用作高效、稳定和耐用的催化剂,首次用于Knoevenagel缩合反应。此处获得的数据表明,氧化石墨烯负载的钯镍纳米催化剂具有独特的催化活性,并证明其可以重复使用五次而催化性能没有显著下降。使用这种纳米催化剂可在温和的反应条件下实现非常短的反应时间、高可回收性、优异的催化活性以及丙二腈与芳香醛Knoevenagel缩合反应的简单后处理程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0fe/6648930/01c11c1793bd/ao-2019-00485v_0001.jpg

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