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Nano-silica functionalized with thiol-based dendrimer as a host for gold nanoparticles: An efficient and reusable catalyst for chemoselective oxidation of alcohols

机译:纳米二氧化硅用基于硫醇的树突式作为金纳米粒子的宿主官能化:用于醇的化学选择性氧化的有效和可重复使用的催化剂

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摘要

In this paper, we present the synthesis of Au nanoparticles supported on nanosilica thiol based dendrimer, nSTDP. The catalyst was prepared by reduction of HAuCl4 with NaBH4 in the presence of nSTDP. The resulting Au np -nSTDP materials were characterized by FT-IR and UV-vis spectroscopic methods, SEM, TEM, TGA, XPS and ICP analyses. The characterization of the catalyst showed that Au nanoparticles with the size of 2-6 nm are homogeneously distributed on the nSTDP dendrimer with a catalyst loading of about 0.19 mmol/g of catalyst. The Au-np-nSTDP catalyst was used in the oxidation of alcohols with tert-butyl hydroperoxide (TBHP) as oxidant. The influence of vital reaction parameters such as solvent, oxidant and amount of catalyst on the oxidation of alcohols was investigated. These reactions were best performed in an acetonitrile/water mixture (3:2) in the presence of 0.76 mol% of the catalyst on the basis of the Au content at 80 degrees C under atmospheric pressure of air to afford the desired products in high yields (80-93% for benzyl alcohols). The Au-np-nSTDP catalyst exhibited a high selectivity toward the corresponding aldehyde and ketone (up to 100%). Reusabiliy and stability tests demonstrated that the Au-np-nSTDP catalyst can be recycled with a negligible loss of its activity. Also this catalytic exhibited a good chemoselectivity in the oxidation of alcohols.
机译:在本文中,我们介绍了在NSTDP中纳米硅基硫醇基硫醇的Au纳米粒子的合成。通过在NST​​DP存在下通过用NaBH 4还原HauCl4来制备催化剂。得到的Au NP -NSTDP材料的特征在于FT-IR和UV-Vis光谱方法,SEM,TEM,TGA,XPS和ICP分析。催化剂的表征表明,尺寸为2-6nm的Au纳米颗粒在NSTDP树枝状聚合物上均匀分布,催化剂负载为约0.19mmol / g催化剂。使用Au-NP-NSTDP催化剂用于用氧化剂的叔丁基氢过氧化物(TBHP)氧化醇。研究了重要反应参数如溶剂,氧化剂和催化剂的氧化量在醇氧化中的影响。这些反应在乙腈/水混合物(3:2)中最佳地在0.76mol%的催化剂的基础上在80℃的常压下,在空气中的大气压下,以高产的高产率提供所需产物(苄醇的80-93%)。 AU-NP-NSTDP催化剂对相应的醛和酮(最高100%)表现出高选择性。 Reusabiliy和稳定性测试证明AU-NP-NSTDP催化剂可以回收,其损失可忽略不计。此催化剂也在醇的氧化中表现出良好的化学选择性。

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