Key Laboratory of Energy Materials Chemistry, Ministry of Education, Key Laboratory of Advanced Functional Materials, Autonomous Region, Institute of Applied Chemistry, Xinjiang University , Urumqi, Xinjiang 830046, China.
ACS Appl Mater Interfaces. 2017 May 17;9(19):16128-16137. doi: 10.1021/acsami.7b01142. Epub 2017 May 5.
CoO nanomaterials with diverse morphologies were usually synthesized in liquid phase accompanied by the template or surfactant under harsh conditions, which further restricted their practical application. Herein, we reported an extremely simple and practical solid-state chemical method to synthesize CoO-octahedrons, -plates, and -rods. Among these, the shape control of CoO-octahedrons and CoO-plates involve variation of the amount of reactant, and the formation of CoO-rods with {110} facet can be achieved by replacing the reactant. The formation of the CoO nanomaterials with different morphologies originated from the different microenvironments of reaction and the structure of reactants. The catalytic activity of CoO samples for CO oxidation was evaluated in normal feed gas. The as-prepared CoO-rods exposed {110} facet exhibited superior catalytic activity for CO oxidation, which can be attributed to more oxygen defects on CoO-rods surface. Additionally, CoO-rods exhibited excellent durablility (without pretreatment) in normal feed gas, even in the presence of moisture, comparable or better than that reported in the literature. The practical and environmental friendly solvent-free strategy provided a new promising route for large-scale preparation of (metal) oxide with remarkable CO oxidation performance for practical application.
具有不同形态的 CoO 纳米材料通常在液相中通过模板或表面活性剂在苛刻条件下合成,这进一步限制了它们的实际应用。在此,我们报道了一种极其简单实用的固态化学方法来合成 CoO-八面体、-板和-棒。在这些形态中,CoO-八面体和 CoO-板的形态控制涉及反应物用量的变化,而通过替换反应物可以得到具有{110}面的 CoO-棒。不同形态的 CoO 纳米材料的形成源于反应的不同微环境和反应物的结构。在正常进料气中评估了 CoO 样品对 CO 氧化的催化活性。所制备的暴露{110}面的 CoO-棒对 CO 氧化表现出优异的催化活性,这归因于 CoO-棒表面更多的氧缺陷。此外,CoO-棒在正常进料气中(无需预处理)表现出优异的耐久性,即使存在水分,其性能也可与文献中报道的相媲美或更好。这种实用且环保的无溶剂策略为大规模制备具有显著 CO 氧化性能的(金属)氧化物提供了一条有前景的新途径,有望实际应用。