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Synthesis of γ-AIOOH nanocrystals with different morphologies due to the effect of sulfate ions and the corresponding formation mechanism study

机译:硫酸根离子作用合成不同形态的γ-AlOOH纳米晶及其形成机理的研究

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摘要

The investigation of the metal oxide/inorganic ion interface at the atomic level represents a fundamental issue for the understanding of chemical and physical processes involved in several fields such as catalysis, adsorption, directed synthesis and the mechanistic study of crystal growth. In this paper, a combined hydrothermal synthesis and computational approach based on DFT theory is adopted to investigate the effects of sulfate ions on the final morphology of y-AIOOH. The quantum mechanical calculations reveal that the sulfate ions interact with y-AIOOH facets through surface hydroxyls and act as a morphology-directing agent. The adsorption type and chemical bonds between the sulfate ion and y-AIOOH are discussed. The formation of nanosheets and nanorods of y-AIOOH is controlled by thermodynamic factors. Moreover, the HR-TEM images reveal the growth directions and exposed planes of boehmite, indicating an oriented-aggregation process which is consistent with the DFT calculations. Overall, all the morphologies of boehmite suggested by the calculations are confirmed by experimental results.
机译:在原子水平上对金属氧化物/无机离子界面的研究代表了一个基本问题,对于理解涉及催化,吸附,定向合成和晶体生长机理等多个领域的化学和物理过程是一个基本问题。本文采用基于DFT理论的水热合成与计算相结合的方法研究了硫酸根离子对y-AIOOH最终形态的影响。量子力学计算表明,硫酸根离子通过表面羟基与y-AIOOH面相互作用,并充当形态学指导剂。讨论了硫酸根离子与γ-AlOOH之间的吸附类型和化学键。 γ-AlOOH的纳米片和纳米棒的形成受热力学因素控制。此外,HR-TEM图像揭示了勃姆石的生长方向和暴露平面,表明了定向聚集过程,该过程与DFT计算一致。总体而言,计算结果表明勃姆石的所有形态均由实验结果证实。

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