NOMATEN Centre for Excellence - National Centre for Nuclear Research, A. Soltana 7, 05-400, Otwock-Swierk, Poland.
Institute of Physical Chemistry, Polish Academy of Sciences, M. Kasprzaka 44/52, 01-224, Warszawa, Poland.
Sci Rep. 2023 Jan 26;13(1):1469. doi: 10.1038/s41598-023-28557-5.
With decreasing size of crystals the number of their surface atoms becomes comparable to the number of bulk atoms and their powder diffraction pattern becomes sensitive to a changing surface structure. On the example of nanocrystalline gold supported on also nanocrystalline [Formula: see text] we show evolution of (a) the background pattern due to chemisorption phenomena, (b) peak positions due to adsorption on nonstoichiometric [Formula: see text] particles, (c) Au peaks intensity. The results of the measurements, complemented with mass spectrometry gas analysis, point to (1) a multiply twinned structure of gold, (2) high mobility of Au atoms enabling transport phenomena of Au atoms to the surface of ceria while varying the amount of Au in the crystalline form, and (3) reversible [Formula: see text] peaks position shifts on exposure to He-X-He where X is O, H, CO or CO oxidation reaction mixture, suggesting solely internal alternations of the [Formula: see text] crystal structure. We found no evidence of ceria lattice oxygen being consumed/supplied at any stage of the process. The work shows possibility of structurally interpreting different contributions to the multi-phase powder diffraction pattern during a complex physico-chemical process, including effects of physi-, chemisorption and surface evolution. It shows a way to structurally interpret heterogeneous catalytic reactions even if no bulk phase transition is involved.
随着晶体尺寸的减小,其表面原子的数量变得与体相原子数量相当,并且它们的粉末衍射图案对表面结构的变化变得敏感。以负载在纳米晶[Formula: see text]上的纳米金为例,我们展示了(a)由于化学吸附现象引起的背景图案,(b)由于非化学计量[Formula: see text]颗粒吸附引起的峰位置,以及(c)Au 峰强度的演变。测量结果,辅以质谱气体分析,表明(1)金的多重孪晶结构,(2)Au 原子的高迁移率使 Au 原子能够在晶相形式的金含量变化的情况下迁移到氧化铈表面,以及(3)在 He-X-He 暴露时[Formula: see text]峰位置的可逆偏移,其中 X 是 O、H、CO 或 CO 氧化反应混合物,仅表明[Formula: see text]晶体结构的内部交替。我们没有发现任何证据表明在该过程的任何阶段铈晶格氧被消耗/供应。该工作表明,即使没有体相相变,也有可能在复杂的物理化学过程中对多相粉末衍射图案的不同贡献进行结构解释,包括物理、化学吸附和表面演化的影响。它展示了一种对涉及非均相催化反应的结构进行解释的方法,即使没有涉及体相相变。