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用于微波/绿色条件下有机转化的新型双功能可重复使用双金属YZnO纳米催化剂

New Dual-Functional and Reusable Bimetallic YZnO Nanocatalyst for Organic Transformation under Microwave/Green Conditions.

作者信息

Ghosh Mithun Kumar, Jain Kavita, Khan Siddique, Das Kalpataru, Ghorai Tanmay Kumar

机构信息

Nanomaterials and Crystal Designing Laboratory, Department of Chemistry, Indira Gandhi National Tribal University, Amarkantak 484887, Madhya Pradesh, India.

Advanced Organic Synthesis Laboratory, Department of Chemistry, Dr. Harisingh Gour Vishwavidyalaya (Central University), Sagar 470003, Madhya Pradesh, India.

出版信息

ACS Omega. 2020 Mar 5;5(10):4973-4981. doi: 10.1021/acsomega.9b03875. eCollection 2020 Mar 17.

Abstract

A novel bimetallic and reusable YZnO nanocatalyst was synthesized by a simple coprecipitation method. The prepared nanocatalyst exhibited dual catalytic activity and was characterized using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), energy-dispersive X-ray spectroscopy (EDX), and scanning electron microscopy (SEM). The average crystallite and grain sizes were found to be 17 ± 1 and 10 ± 2 nm, respectively. On the one hand, the catalytic activity of the nanocatalyst was studied for the Knoevenagel condensation reaction of aromatic aldehydes with active methylene compounds, such as ethyl cyanoacetate and malononitrile, under microwave irradiation and solvent-free conditions. On the other hand, the nanoparticles also showed faster photocatalytic activity against methyl orange (MO) compared to other dyes. The nanocatalyst was easily recoverable by a simple filtration method and was recycled without any significant loss of catalytic activity. The advantages of this nanocatalyst were a simple workup procedure, high reaction yields, solvent-free conditions, reusability, and a short reaction time under green reaction conditions.

摘要

通过简单的共沉淀法合成了一种新型双金属可重复使用的YZnO纳米催化剂。制备的纳米催化剂具有双重催化活性,并通过X射线衍射(XRD)、傅里叶变换红外光谱(FT-IR)、能量色散X射线光谱(EDX)和扫描电子显微镜(SEM)进行了表征。发现平均微晶尺寸和晶粒尺寸分别为17±1纳米和10±2纳米。一方面,研究了该纳米催化剂在微波辐射和无溶剂条件下对芳香醛与活性亚甲基化合物(如氰基乙酸乙酯和丙二腈)的Knoevenagel缩合反应的催化活性。另一方面,与其他染料相比,该纳米颗粒对甲基橙(MO)也表现出更快的光催化活性。该纳米催化剂通过简单的过滤方法即可轻松回收,并且在循环使用时催化活性没有任何明显损失。这种纳米催化剂的优点包括后处理程序简单、反应产率高、无溶剂条件、可重复使用以及在绿色反应条件下反应时间短。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a8c/7081418/79821a8f6cfb/ao9b03875_0009.jpg

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