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Supersaturation-ControIIed Shape Evolution of α-Fe2O3 Nanocrystals and Their Facet-Dependent Catalytic and Sensing Properties

机译:α-Fe2O3纳米晶体的过饱和控制形状演变及其与面有关的催化和传感特性

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摘要

Surface engineering of crystals at nanoscale level by precisely and rationally exposing specific facets proved to be highly effective in enhancing the performance of inorganic functional nanocrystals. To do so, a comprehensive understanding of the growth mechanism was of great importance. By using hematite (α-Fe2O3) as an example, in this paper we demonstrated high effectiveness of controlling supersaturation of growth monomers in engineering the exposed facets of nanocrystals. Under surfactant-free hydrothermal conditions, a series of morphology evolution of α-Fe2O3 nanocrystals from {012} faceted pseudocubes to {113} faceted hexagonal bipyramids and {001} faceted nanoplates were successfully activated through concentration-, reaction time-, and solvent-dependent hydrolysis of ferric acetylacetonate. High supersaturation was eventually proven to be conducive to the formation of facets with high surface energy. Furthermore, the α-Fe2O3 nanocrystals enclosed with facets of high surface energy exhibited excellent catalytic activity and gas-sensing ability. The present work will deepen our understanding of thermodynamics and kinetic control over the morphology of nanocrystals as well as our understanding of surface-related performance of inorganic functional nanocrystals.
机译:通过精确合理地暴露特定小平面,对纳米级的晶体进行表面工程处理被证明对增强无机功能纳米晶体的性能非常有效。为此,全面了解增长机制非常重要。通过以赤铁矿(α-Fe2O3)为例,我们证明了在控制纳米晶体裸露面的过程中,控制生长单体过饱和的高效性。在无表面活性剂的水热条件下,通过浓度,反应时间和溶剂的作用,成功激活了α-Fe2O3纳米晶体从{012}多面假立方到{113}多面六面体双锥和{001}多面纳米板的一系列形貌演化。乙酰丙酮酸铁的非依赖性水解。最终,高过饱和度被证明有助于形成具有高表面能的小平面。此外,被高表面能的小面包围的α-Fe2 O 3纳米晶体表现出优异的催化活性和气敏能力。本工作将加深我们对纳米晶体形态的热力学和动力学控制的理解,以及对无机功能纳米晶体的表面相关性能的理解。

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