Structural characteristics of Bi2O2CO3 nanosheets synthesized by nano-pulsed discharges in water

IF 5.2 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
A. V. Nomine, J. Ghanbaja, A. Redjaimia, T. Belmonte
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Abstract

A comprehensive analysis of Bi2O2CO3 nanosheets, which were synthesized using nanosecond-pulsed discharges in water between bismuth electrodes, was conducted in order to investigate the crystallographic features of this material. Electron diffraction, X-ray diffraction and electron energy-loss spectrometry techniques revealed the presence of a stoichiometric tetragonal Bi2O2CO3 structure, labelled BOC in this study. It crystallizes in the body-centred tetragonal Bravais lattice and belongs to the I4/mmm space group (No. 139), with the following lattice parameters: a = 3.91, c = 13.77 Å. The nanosheets adopt square shapes. This shape is dictated by the symmetry elements of its point group (4/mmm) under the prevailing local conditions. From the energetic point of view, this shape, dictated by the 4/m2/m2/m point group and therefore a pinacoid, corresponds to an absolute extremum, an indicator of the stability of these BOC nanosheets. Most nanosheets are crossed by equal-inclination fringes or bend contours. These bend contours reflect the fact that the BOC nanosheets contain crystal defects and/or are so thin that they bend elastically, leading to rotation of the lattice planes towards the diffracting Bragg position. The diffraction patterns corresponding to bend contours intersecting along the [001] zone axis have been studied in detail. Extra reflections are superimposed on the diffraction pattern of the BOC crystallographic structure. These extra reflections are essentially attributed to two phenomena: multiple diffraction and local disorder–order transformations of the BOC crystal structure, passing from a body-centred tetragonal to a primitive Bravais lattice. A mechanism related to the ledge mechanism (kinks and jogs), explaining the formation of nanosheets in a metallic matrix, has been adapted and proposed for the formation of BOC nanosheets in water. When the nanosheets are removed from the water, they become carbonated once in the air, leading to the formation of BOC that inherits the nanosheet morphology.

Abstract Image

水中纳米脉冲放电合成的 Bi2O2CO3 纳米片的结构特征
为了研究这种材料的晶体学特征,我们对在铋电极之间的水中利用纳秒脉冲放电合成的 Bi2O2CO3 纳米片进行了全面分析。电子衍射、X 射线衍射和电子能损耗谱技术揭示了一种共生四方 Bi2O2CO3 结构的存在,本研究将其标记为 BOC。它在体心四方布拉维晶格中结晶,属于 I4/mmm 空间群(编号 139),晶格参数如下:a = 3.91,c = 13.77 Å。纳米片呈正方形。这种形状是由其点群(4/mmm)的对称元素在当地普遍条件下决定的。从能量的角度来看,这种由 4/m2/m2/m 点群决定的形状(因此是一个针状体)相当于一个绝对极值,是这些 BOC 纳米片稳定性的一个指标。大多数纳米片上都有等倾角条纹或弯曲轮廓线。这些弯曲轮廓线反映出 BOC 纳米片含有晶体缺陷和/或非常薄,以至于会发生弹性弯曲,从而导致晶格平面向布拉格衍射位置旋转。我们对沿 [001] 区轴线相交的弯曲轮廓对应的衍射图样进行了详细研究。在 BOC 晶体结构的衍射图样上叠加了额外的反射。这些额外的反射主要归因于两种现象:BOC 晶体结构的多重衍射和局部无序阶跃转变,即从体心四方晶格转变为原始布拉维晶格。在解释金属基质中纳米片的形成时,我们采用了一种与边缘机制(扭结和点动)相关的机制,并提出了在水中形成 BOC 纳米片的机制。当纳米片从水中移出时,一旦在空气中就会碳化,从而形成继承了纳米片形态的 BOC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied Crystallography
Journal of Applied Crystallography CHEMISTRY, MULTIDISCIPLINARYCRYSTALLOGRAPH-CRYSTALLOGRAPHY
CiteScore
7.80
自引率
3.30%
发文量
178
期刊介绍: Many research topics in condensed matter research, materials science and the life sciences make use of crystallographic methods to study crystalline and non-crystalline matter with neutrons, X-rays and electrons. Articles published in the Journal of Applied Crystallography focus on these methods and their use in identifying structural and diffusion-controlled phase transformations, structure-property relationships, structural changes of defects, interfaces and surfaces, etc. Developments of instrumentation and crystallographic apparatus, theory and interpretation, numerical analysis and other related subjects are also covered. The journal is the primary place where crystallographic computer program information is published.
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