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Size-dependent stability of ultra-small α-/β-phase tin nanocrystals synthesized by microplasma

机译:微等离子体合成的超小α-/β相锡纳米晶体的尺寸依赖性稳定性

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摘要

Nanocrystals sometimes adopt unusual crystal structure configurations in order to maintain structural stability with increasingly large surface-to-volume ratios. The understanding of these transformations is of great scientific interest and represents an opportunity to achieve beneficial materials properties resulting from different crystal arrangements. Here, the phase transformation from α to β phases of tin (Sn) nanocrystals is investigated in nanocrystals with diameters ranging from 6.1 to 1.6 nm. Ultra-small Sn nanocrystals are achieved through our highly non-equilibrium plasma process operated at atmospheric pressures. Larger nanocrystals adopt the β-Sn tetragonal structure, while smaller nanocrystals show stability with the α-Sn diamond cubic structure. Synthesis at other conditions produce nanocrystals with mean diameters within the range 2–3 nm, which exhibit mixed phases. This work represents an important contribution to understand structural stability at the nanoscale and the possibility of achieving phases of relevance for many applications.
机译:纳米晶体有时采用不同寻常的晶体结构构型,以维持结构稳定性,并具有越来越大的表面积与体积之比。对这些转变的理解具有重大的科学意义,并且代表了通过不同的晶体排列获得有益材料性能的机会。在此,研究了直径为6.1至1.6?nm的纳米晶体中锡(Sn)纳米晶体从α相到β相的相变。通过我们在大气压力下运行的高度非平衡等离子体工艺可实现超小锡纳米晶体。较大的纳米晶体采用β-Sn四方结构,而较小的纳米晶体具有α-Sn金刚石立方结构的稳定性。在其他条件下的合成会产生纳米晶体,其平均直径在2-3 nm范围内,呈现出混合相。这项工作为理解纳米级的结构稳定性以及实现许多应用相关阶段的可能性做出了重要贡献。

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