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Self-assembled hybrid precursors towards more efficient propane ODH NiMoO4 catalysts

机译:自组装混合前体向更多高效的丙烷ODH NiMoO4催化剂

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This work shows a novel method to synthesize bulk NiMoO4 from hybrid materials made of guest ions ( Ni and Mo precursors) and a polyampholytic comb-like copolymer displaying a supramolecular organization. This supramolecular organization is crucial because the copolymer serves as a nanostructuring template. While non-porous alpha-NiMoO4 is obtained with classical methods, mesoporous beta-NiMoO4 is prepared here. The beta-phase is more efficient in the oxidative dehydrogenation of propane ( ODHP). Our strategy assumed that the properties of a catalyst strongly depend on the features of the precursor from which it comes. This is why the precursors were meticulously characterized. Homogeneous hybrids were successfully synthesized where MoO42- anions establish electrostatic interactions with the copolymer's positive charges. The nickel cations are stabilized inside the matrix thanks to their coordination by the copolymer COO- functions. By bridging two copolymers, such coordination bonds reinforce the copolymer organization and enable to generate the organized hybrids. Some hybrids were then calcined, characterized and tested in the ODHP reaction. Preparing the beta-phase generally requires temperatures beyond 600 degrees C which favours sintering and makes NiMoO4 poorly active. The use of supramolecularly organized precursors and the possibility it offers to form oxides under "soft conditions" lead to mesoporous beta-NiMoO4. The most propene selective beta-NiMoO4 is generated here without sacrificing its specific surface area, maintaining its remarkably high activity level. This enables reaching higher propene yields than usual.
机译:这显示了一个新颖的方法来合成大部分工作NiMoO4混合材料制成的客人离子(倪和莫前体)和polyampholyticcomb-like共聚物显示超分子组织。由于共聚物作为至关重要纳米结构模板。与经典方法alpha-NiMoO4获得,介孔beta-NiMoO4准备。测试阶段氧化效率更高丙烷脱氢(ODHP)。认为催化剂的性质强烈依赖于前体的特点淡味。精心的特点。混合动力车成功合成MoO42 -阴离子建立静电与共聚物的积极的互动指控。矩阵由于协调的共聚物COO -功能。共聚物,加强协调债券共聚物组织和启用生成有组织的混合动力车。ODHP煅烧,和测试的反应。需要的温度超过600摄氏度有利于烧结,使NiMoO4不活跃。利用超分子有组织的前兆和它提供的可能性,形成氧化物在“软条件”导致介孔beta-NiMoO4。在不牺牲beta-NiMoO4生成其比表面积,维护它活动水平非常高。达到提高丙烯产量比平常。

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