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首页> 外文期刊>Journal of Colloid and Interface Science >Functionalized white graphene – Copper oxide nanocomposite: Synthesis, characterization and application as catalyst for thermal decomposition of ammonium perchlorate
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Functionalized white graphene – Copper oxide nanocomposite: Synthesis, characterization and application as catalyst for thermal decomposition of ammonium perchlorate

机译:官能化的白色石墨烯 - 氧化铜纳米复合材料:合成,表征和应用作为高氯酸铵热分解的催化剂

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摘要

Graphical abstract Display Omitted Abstract Reactivity is of great importance for metal oxide nanoparticles (MONP) used as catalysts and advanced materials, but seeking for higher reactivity seems to be conflict with high chemical stability required for MONP. There is direct balance between reactivity and stability of these MONP. This could be acheived for metal oxide by dispersing them in a substrate. Here, we report a simple, efficient and high-yield process for the production of copper oxide (CuO) nanoparticles dispersed on a chemically inert material, few-layer hexagonal boron nitride (h-BN) with a thickness around 1.7nm and lateral dimensions mostly below 200nm. The mechano-chemical reaction which take place at atmospheric pressure and room temperature involves a urea assisted exfoliation of pristine boron nitride. Copper oxide nanoparticles dispersed on the surface of these few layered h-BN reduced its tendency for aggregation. The optimum concentration of CuO:h-BN was found to be 2:1 which shows highest catalytic activity for the thermal decomposition of ammonium perchlorate. The high catalytic activity of the in situ synthesized CuO-h-BN composite may be attributed to uniform distribution of CuO nanoparticles on the few layered h-BN which in turn provide a number of active sites on the surface due to non aggregation. ]]>
机译:<![CDATA [ 图形抽象 显示中省略 抽象 反应性是非常重要的金属氧化物纳米粒子(自然人流动) ,但寻求更高的反应似乎是与自然人流动所需的高化学稳定性的冲突。有这些自然人流动的反应性和稳定性之间的直接平衡。这可以通过在衬底将它们分散地来达到的金属氧化物。这里,我们报告一个简单,有效和高产率的方法用于生产氧化铜(CuO的)纳米颗粒分散在化学惰性材料,少层六方氮化硼(h-BN),厚度约1.7 纳米和横向尺寸大多低于200 纳米。的机械化学反应,该反应发生在大气压力和室温下涉及原始氮化硼的尿素辅助剥离。分散这些少数层状的h-BN的表面上氧化铜纳米颗粒降低了其倾向聚集。 CuO的最佳浓度:的h-BN被认为是2:1,其示出了用于高氯酸铵的热分解最高的催化活性。在原位的催化活性高的合成的CuO-的h-BN的复合可以归因于在几个分层的h-BN的CuO纳米粒子的均匀分布而这又提供了许多表面上由于非聚合活性位点的 ]]>

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