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Bimetallic Au-Pd/MgO as efficient catalysts for aerobic oxidation of benzyl alcohol: A green bio-reducing preparation method

机译:双金属Au-Pd / MgO作为有氧氧化苯甲醇的有效催化剂:一种绿色生物还原制备方法

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摘要

The oxidation of benzyl alcohol, with molecular oxygen at atmospheric pressure in an aqueous medium, is investigated using Au-Pd/MgO bimetallic catalysts to examine the effect of catalyst parameters (viz. preparation method, Au/Pd molar ratio, and calcinations temperature) and reaction conditions (viz. reaction temperature and oxygen flow rate) on conversion and selectivity. The bimetallic catalysts were prepared via two novel reduction methods with bio-reducing agents and were characterized by transmission electron microscopy, X-ray diffraction, diffuse reflectance UV-vis spectroscopy, and thermogravimetric analysis to understand synergistic interactions between Au and Pd. Under optimal conditions, the Au-Pd bimetallic catalysts, with a 1:1 molar ratio and 9.7±1.3nm particle size, exhibited remarkably enhanced catalytic activity (>52%) and selectivity (~100%) compared with their monometallic counterparts. Moreover, the activity of the catalysts was maintained after six recycles without agglomeration.
机译:使用Au-Pd / MgO双金属催化剂,在大气压力下于水介质中用分子氧氧化苄醇,以研究催化剂参数(即制备方法,Au / Pd摩尔比和煅烧温度)的影响反应条件(即反应温度和氧气流速)对转化率和选择性的影响。通过使用生物还原剂的两种新型还原方法制备双金属催化剂,并通过透射电子显微镜,X射线衍射,漫反射紫外可见光谱和热重分析来了解金和钯之间的协同相互作用。在最佳条件下,Au-Pd双金属催化剂的摩尔比为1:1,粒径为9.7±1.3nm,与单金属催化剂相比,具有显着增强的催化活性(> 52%)和选择性(〜100%)。此外,在六次循环后没有结块,保持了催化剂的活性。

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