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A Facile Synthesis of ZrOx-MnCO3/Graphene Oxide (GRO) Nanocomposites for the Oxidation of Alcohols using Molecular Oxygen under Base Free Conditions

机译:基于基质条件下使用分子氧氧化醇的ZrOx-MnCo 3 /石墨烯氧化物(GA)纳米复合材料的容易合成

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摘要

Graphene and its nanocomposites are showing excellent potential in improving the catalytic performances of different materials. However, the synthetic protocol and its form, such as graphene oxide (GRO) or highly reduced graphene oxide (HRG), influence the catalytic efficiencies. Here, we present, a facile synthesis of graphene oxide (GRO) and ZrOx-MnCO3-based nanocomposites [(1%)ZrOx−MnCO3/(x%)GRO] and their outcome as an oxidation catalyst for alcohol oxidation under mild conditions using O2 as a clean oxidant. The ZrOx−MnCO3/GRO catalyst prepared by incorporating GRO to pre-calcined ZrOx-MnCO3 using ball milling showed remarkable enhancement in the catalytic activities as compared to pristine ZrOx−MnCO3, ZrOx−MnCO3 supported on HRG or ZrOx−MnCO3/GRO prepared by in-situ growth of ZrOx−MnCO3 onto GRO followed by calcination. The catalyst with composition (1%)ZrOx−MnCO3/(1%)GRO exhibited superior specific activity (57.1 mmol/g·h) with complete conversion and >99% selectivity of the product within a short period of time (7 min) and at a relatively lower temperature (100 °C). The catalyst could be recycled at least five times with a negligible decrease in efficiency and selectivity. The catalytic study was extended to different aromatic as well as aliphatic alcohols under optimized conditions, which confirmed the efficiency and selectivity of the catalyst.
机译:石墨烯及其纳米复合材料显示出改善不同材料催化性能的优异潜力。然而,合成方案及其形式,例如石墨烯(GA)或高度减少的氧化石墨烯(HRG),影响催化效率。在这里,我们存在,将石墨烯(GA)和基于ZrOx-MnCo 3的纳米复合材料[(1%)ZrOx-mnCo 3 /(X%)Gro]及其作为在温和条件下的醇氧化的氧化催化剂的结果O2作为干净的氧化剂。通过在HRG或ZrOx-MNCO3 / GA上掺入使用球磨机的GROX-MNCO3,ZrOx-MNCO3相比,通过将GRO至预煅烧的ZrOx-MnCo3掺入Gro至预煅烧的ZrOx-MnCo3来制备的ZrOx-MnCo 3 / GROx催化剂。 Zroox-MnCo3的原位生长到GRO之后煅烧。具有组合物(1%)ZrOx-MnCo 3 /(1%)Gro的催化剂在短时间内具有完全转化的优异的比活性(57.1mmol / g·h),并在短时间内(7分钟)并且在相对较低的温度(100°C)。催化剂可以通过效率和选择性降低至少五次再循环。在优化条件下,催化研究延伸到不同的芳族以及脂族醇,这证实了催化剂的效率和选择性。

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