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首页> 外文期刊>Indian journal of chemical technology >Synthesis, characterization and relative catalytic study of ZrOsubx/sub-MnCOsub3/sub, – MnOsub2/subor -Mnsub2/subOsub3 /subdeposited on highly reduced graphene oxide nanocomposites for aerobic oxidation of secondary alcohols
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Synthesis, characterization and relative catalytic study of ZrOsubx/sub-MnCOsub3/sub, – MnOsub2/subor -Mnsub2/subOsub3 /subdeposited on highly reduced graphene oxide nanocomposites for aerobic oxidation of secondary alcohols

机译:ZrO x -MnCO 3 ,– MnO 2 或-Mn 2 O的合成,表征和相对催化研究 3 沉积在高度还原的氧化石墨烯纳米复合材料上,用于仲醇的好氧氧化

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摘要

Zirconia nanoparticles doped MnCOsub3 /subhave been successfully immobilized on various percentages of highly reduced graphene oxide (HRG)[(X%)HRG/MnCOsub3/sub–(1%)ZrOsubx/sub](where, X=0–7)],via a facile and straight forward co-precipitation method. Upon calcination, the as-obtained materials have yielded different types of HRG/manganese oxide nanocomposites at different temperatures i.e.[(X%)HRG/MnOsub2/sub–(1%)ZrOsubx/sub] and [(X%)HRG/Mnsub2/subOsub3/sub–(1%)ZrOsubx/sub]. A detail investigation was carried out to compare the catalytic performance of carbonates and oxides based nanocomposites for the selective oxidation of secondary alcohols.? For this purpose, molecular oxygen was employed as an environmentally benign oxidant under base-free conditions. The reaction conditions were optimized with different weight percentages of HRG, reaction times, calcination temperatures, catalyst dosages, and reaction temperatures using 1-phenylethanol as a substrate model. The catalytic performance of the nanocomposites was enhanced significantly due to the presence of HRG as a support material. The catalyst with (1%)HRG/MnCOsub3/sub–(1%)ZrOsubx /subexhibited outstanding performance as well as excellent selectivity in the aerobic oxidation of 1-phenylethanol. In this case, 100% conversion in 4 min with more than 99% selectivity was achieved with excellent specific activity of 60.0 mmol.gsup?1/sup.hsup?1/sup. Moreover, catalyst can be efficiently reused 5 times without discernible decrease in its activity and selectivity. Apart from this, various other alcohols were also selectively oxidized to their corresponding carbonyls with complete conversion in short reaction times under optimal conditions without over-oxidation to the carboxylic acids.
机译:掺杂氧化锆纳米粒子的MnCO 3 已成功固定在不同百分比的高度还原的氧化石墨烯(HRG)[(X%)HRG / MnCO 3 –(1%)ZrO < sub> x ](其中X = 0–7)],通过一种简单直接的共沉淀方法。煅烧后,所获得的材料在不同温度下产生了不同类型的HRG /氧化锰纳米复合物,即[(X%)HRG / MnO 2 –(1%)ZrO x ]和[(X%)HRG / Mn 2 O 3 –(1%)ZrO x ]。进行了详细研究,以比较碳酸盐和氧化物基纳米复合材料对仲醇选择性氧化的催化性能。为此目的,在无碱条件下将分子氧用作环境友好的氧化剂。以1-苯基乙醇为底物模型,以不同的HRG重量百分比,反应时间,煅烧温度,催化剂用量和反应温度对反应条件进行了优化。由于HRG作为载体材料的存在,纳米复合材料的催化性能显着提高。具有(1%)HRG / MnCO 3 –(1%)ZrO x 的催化剂在1-苯基乙醇的好氧氧化中表现出出色的性能和出色的选择性。在这种情况下,在4分钟内100%的转化率和99%以上的选择性获得了优异的比活,为60.0 mmol.g ?1 .h ?1 。而且,催化剂可以有效地重复使用5次而不会明显降低其活性和选择性。除此之外,还可以在最佳条件下,在短的反应时间内,将各种其他醇选择性氧化为相应的羰基,并在短时间内完全转化,而不会过度氧化为羧酸。

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