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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Organosuperbase dendron manganese complex grafted on magnetic nanoparticles; heterogeneous catalyst for green and selective oxidation of ethylbenzene, cyclohexene and oximes by molecular oxygen
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Organosuperbase dendron manganese complex grafted on magnetic nanoparticles; heterogeneous catalyst for green and selective oxidation of ethylbenzene, cyclohexene and oximes by molecular oxygen

机译:在磁性纳米粒子上移植的有机uperbase dendron锰络合物; 用于绿色和选择性氧化乙苯,环己烯和肟通过分子氧的非均相催化剂

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Magnetic Fe3O4 nanoparticles as a support were modified with an amino-terminated organosilicon and cyanoric choloride ligands. The novel manganese complex was grafted on modified magnetic support (Mn(II)-Met@MMNPs). The nanocatalyst structure, particle size, morphology and surface properties was well characterized by elemental analysis, ICP-AES, MS, EDS, FT-IR, SEM, TEM, DLS, VSM, TGA, XRD and XPS. In order to develop an effective heterogeneous nanocatalyst for eco-friendly aerobic, highly active and selective catalytic reactions, synthesized nanocatalyst was applied in oxidation of various organic compounds. The catalytic performance of the manganese nanocatalyst in the aerobic oxidation of ethylbenzene (EB), cyclohexene (CYHE) and various aldoximes and ketoxime were studied. Selective aerobic oxidation of EB and CYHE and various oximes were catalyzed by the Mn-nanocatalyst using N-hydroxyphthalimide (NHPI) with molecular oxygen as the green oxidant without the need of any reducing agent, and respectively the acetophenone (AcPO) as a benzylic product, 2-cyclohexene-1-one (CYHE=O) as an allylic product and corresponding carbonyl compounds were obtained. The oxidation process has been optimized for Mn-nanocatalyst by considering the effect of different parameters such as the ratio and amount of Mn-nanocatalystiNHPI, reaction time and solvent for achieving maximum conversion and selectivity to products. Due to their significant low cost, informal preparation, easy magnetically separation from reaction mixture, excellent catalytic performance, simple recovery and reusability without any metal leaching, the Mn-nanocatalyst has huge application prospect in selective and green oxidation process. (C) 2018 Published by Elsevier Ltd.
机译:用氨基封端的有机硅和氰基胆晶配体改性作为载体的磁Fe3O4纳米颗粒。在改性磁性载体上嫁接了新的锰络合物(Mn(II)-mmnps)。通过元素分析,ICP-AES,MS,EDS,FT-IR,SEM,TEM,DLS,VSM,TGA,XRD和XPS,颗粒致催化剂结构,粒度,形态和表面性质的特征良好。为了开发有效的异质纳米催化剂,用于生态友好的需氧,高活性和选择性催化反应,合成的纳米催化剂用于各种有机化合物的氧化。研究了锰纳米催化剂在乙苯(EB),环己烯(Cyhe)和各种醛氧化物和酮肟的好氧氧化中的催化性能。使用N-羟丙炔丙炔丙炔丙炔丙炔体催化EB和Cyhe的选择性有氧氧化和各种肟,其具有分子氧作为绿色氧化剂,而不需要任何还原剂,以及苯乙酮(ACPO)作为苄基产物,得到2-环己烯-1-α(Cyhe = O)作为烯丙基产物和相应的羰基化合物。通过考虑不同参数的效果,例如Mn-NanocatalystinHPI,反应时间和溶剂,以实现对产品的最大转化和选择性的不同参数的影响,已经针对MN-NaN催化剂进行了优化了氧化过程。由于其显着低成本,非正式制备,易于磁性分离反应混合物,优异的催化性能,简单的恢复和可重用性而无需任何金属浸出,Mn-Nanocatalyst在选择性和绿色氧化过程中具有巨大的应用前景。 (c)2018年由elestvier有限公司发布

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