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Metastability of the atomic structures of size-selected gold nanoparticles

机译:原子结构的亚稳定性size-selected金纳米粒子

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All nanostructures are metastable - but some are more metastable than others. Here we employ aberration-corrected electron microscopy and atomistic computer simulations to demonstrate the hierarchy of metastability in deposited, size-selected gold nanoparticles (clusters), an archetypal class of nanomaterials well known for the catalytic activity which only appears on the nanometer-scale. We show that the atomic structures presented by "magic number" Au-561, Au-742 and Au-923 clusters are "locked". They are in fact determined by the solidification which occurs from the liquid state early in their growth (by assembly from atoms in the gas phase) followed by template growth. It is quite likely that transitions from a locked, metastable configuration to a more stable (but still metastable) structure, as observed here under the electron beam, will occur during catalytic reactions, for example.
机译:纳米结构都是亚稳态,但一些人比其他人更亚稳态。aberration-corrected电子显微镜和原子论的计算机模拟演示在沉积的亚稳定性等级,size-selected金纳米粒子(集群)典型的纳米材料而闻名只出现在的催化活性纳米级。结构提出的“幻数”非盟- 561,非盟- 742和非盟- 923集群“锁定”。事实上由凝固在他们的早期发生的液态增长(由气相中的原子组装)其次是模板的增长。转换从一个锁,亚稳态配置到一个更稳定的(但仍亚稳结构,观察下电子束,将发生在催化反应,例如。

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