Selvaraj Manickam, Assiri Mohammed A, Rokhum Samuel Lalthazuala, Manjunatha C, Appaturi Jimmy Nelson, Murugesan Sepperumal, Bhaumik Asim, Subrahmanyam Ch
Department of Chemistry, Faculty of Science, King Khalid University, Abha 61413, Saudi Arabia.
Department of Chemistry, National Institute of Technology Silchar, Assam, 788010, India.
Dalton Trans. 2021 Nov 2;50(42):15118-15128. doi: 10.1039/d1dt01760h.
A sustainable method was used to produce aromatic ketones by the solvent-free benzylic oxidation of aromatics over mesoporous Cu(II)-containing propylsalicylaldimine anchored on the surface of Santa Barbara Amorphous type material-15 (CPSA-SBA-15) catalysts. For comparison, mesoporous Cu(II)-containing propylsalicylaldimine anchored with Mobil Composition of Matter-41 (CPSA-MCM-41) was assessed for these reactions under similar reaction conditions. The washed CPSA-SBA-15(0.2) (W-CPSA-SBA-15(0.2)) catalyst was prepared using an easy chemical method for the complete removal of non-framework CuO nanoparticle species on the surface of pristine CPSA-SBA-15(0.2) (p-CPSA-SBA-15(0.2) prepared with 0.2 wt% of Cu, and its catalytic activity was evaluated with different reaction parameters, oxidants and solvents. In order to confirm the catalytic stability, the recyclability was assessed, and the performance of hot-filtration experiments was also evaluated. All the catalysts used for these catalytic reactions were characterized using many instrumental techniques to pinpoint the mesoporous nature and active sites of the catalysts. The proposed reaction mechanism has been well documented on the basis of catalytic results obtained for solvent-free oxidation of aromatics. Based on the catalytic results, we found that W-CPSA-SBA-15(0.2) is a very ecofriendly catalyst with exceptional catalytic activity.
采用一种可持续的方法,通过在锚定在圣巴巴拉无定形材料-15(CPSA-SBA-15)催化剂表面的含介孔Cu(II)丙基水杨醛亚胺上对芳烃进行无溶剂苄基氧化来制备芳香酮。为了进行比较,在相似的反应条件下评估了锚定在Mobil Composition of Matter-41(CPSA-MCM-41)上的含介孔Cu(II)丙基水杨醛亚胺用于这些反应的情况。采用一种简便的化学方法制备了洗涤后的CPSA-SBA-15(0.2)(W-CPSA-SBA-15(0.2))催化剂,以完全去除原始CPSA-SBA-15(0.2)(p-CPSA-SBA-15(0.2),含0.2 wt%的Cu)表面的非骨架CuO纳米颗粒物种,并在不同反应参数、氧化剂和溶剂条件下评估了其催化活性。为了确认催化稳定性,评估了其可回收性,还评估了热过滤实验的性能。使用多种仪器技术对用于这些催化反应的所有催化剂进行了表征,以确定催化剂的介孔性质和活性位点。基于芳烃无溶剂氧化的催化结果,对所提出的反应机理进行了充分的记录。根据催化结果,我们发现W-CPSA-SBA-15(0.2)是一种非常环保的催化剂,具有出色的催化活性。