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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Macroscopic Hexagonal Co3O4 Tubes Derived from Controllable Two-Dimensional Metal-Organic Layer Single Crystals: Formation Mechanism and Catalytic Activity
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Macroscopic Hexagonal Co3O4 Tubes Derived from Controllable Two-Dimensional Metal-Organic Layer Single Crystals: Formation Mechanism and Catalytic Activity

机译:衍生自可控二维金属 - 有机层单晶的宏观六方二氧化碳管:形成机制和催化活性

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摘要

Macroscopic Co3O4 hexagonal tubes were successfully synthesized using hollow two-dimensional (2D) MOL (metal-organic layer) single crystals as sacrificial templates. The hollow 2D MOL single crystals were prepared under hydrothermal conditions with acetonitrile (MeCN) as an interference agent. The formation of hollow-structured 2D MOL single crystals was tracked by time-dependent experiments, and two simultaneous paths-namely, the crystal-to-crystal transformation in solution and the dissolution + migration (toward the external surface) of inner crystallites-were identified as playing a key role in the formation of the unique hollow structure. The calculated change in Gibbs free energy (Delta G = -1.18 eV) indicated that the crystal-to-crystal transformation was spontaneous at 393 K. Further addition of MeCN as an interference agent eventually leads to the formation of macroscopic hexagonal tubes. Among all of the as-synthesized Co3O4, Co-MeCN-O with a hexagonal tube morphology exhibited the best catalytic performance in toluene oxidation, it achieved a toluene conversion of 90% (T-90) at similar to 227 degrees C (a space velocity of 60 000 mL g(-1) h(-1)) and the activity energy (E-a) is 69.5 kJ mol(-1). A series of characterizations were performed to investigate the structure-activity correlation. It was found that there are more structure defects, more adsorbed surface oxygen species, more surface Co3+ species, and higher reducibility at low temperatures on the Co-MeCN-O than on other Co3O4 samples; these factors are responsible for its excellent catalytic performance. The in situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) characterization showed that, when there is no oxygen in the atmosphere, the lattice oxygen may be involved in the activation of toluene, and the gas-phase oxygen replenished by the oxygen vacancies was essential for the total oxidation of toluene on the surface of the Co-MeCN-O catalysts, it also proves the importance of oxygen vacancies. Moreover, for the Co-MeCN-O catalysts, no obvious decrease in catalytic performance was observed after 120 h at 220 degrees C and it is still stable after cycling tests, which indicates that it exhibits excellent stability for toluene oxidation. This study sheds lights on the controllable synthesis of macroporous-microporous materials in single-crystalline form without an external template, and, thus, it may serve as a reference for future design and synthesis of hollow porous materials with outstanding catalytic performance.
机译:使用中空二维(2D)摩尔(金属 - 有机层)单晶作为牺牲模板,成功地合成了宏观CO 3O4六方管。在用乙腈(MECN)的水热条件下制备中空2D摩尔单晶作为干扰剂。通过时间依赖性实验跟踪中空结构化2D摩尔单晶的形成,以及两个同时路径 - 即溶液中的晶体至晶体变换和内微晶的溶解+迁移(朝向外表面) - 是确定为在形成独特的空心结构中发挥关键作用。 Gibbs自由能量(Delta G = -1.18eV)的计算变化表明,晶体至晶体转化为393k。作为干扰剂的进一步添加Mecn最终导致宏观六边形管的形成。在所有作为合成的CO 3O4中,具有六边形管形态的CO-MECN-O表现出最佳的甲苯氧化催化性能,它达到了90%(T-90)的甲苯转化,类似于227℃(空间速度为60 000ml g(-1)H(-1))和活性能量(EA)为69.5 kJ摩尔(-1)。进行了一系列表征以研究结构 - 活性相关性。发现存在更多的结构缺陷,更吸附的表面氧物质,更多的表面CO 3 +物种,并且在CO-MECN-O上的低温下的更高的再减少性而不是在其他CO3O4样品上;这些因素负责其优异的催化性能。原位漫反射红外傅里叶变换光谱(漂移)表征显示,当大气中没有氧气时,晶格氧可以参与甲苯的活化,并且通过氧空缺补充的气相氧是必不可少的对于甲苯的总氧化在CO-MECN-O催化剂的表面上,它还证明了氧空位的重要性。此外,对于共-Mecn-O催化剂,在220℃下120小时后观察到催化性能明显降低,循环试验后仍然稳定,表明它表现出优异的甲苯氧化稳定性。本研究揭示了在单晶形式中以单晶形式可控合成的灯,无需外部模板,因此,它可以作为未来设计和合成中空多孔材料的参考,具有出色的催化性能。

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