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首页> 外文期刊>Annual Review of Physical Chemistry >From Artificial Atoms to Nanocrystal Molecules: Preparation and Properties of More Complex Nanostructures
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From Artificial Atoms to Nanocrystal Molecules: Preparation and Properties of More Complex Nanostructures

机译:从人造原子到纳米晶体分子:更复杂的纳米结构的制备和性质

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摘要

Quantum clots, which have found widespread use in fields such as biomedicine, photovoltaics, and electronics, are often called artificial atoms due to their size-dependent physical properties. Here this analogy is extended to consider artificial nanocrystal molecules, formed from well-defined groupings of plasmonically or electronically coupled single nanocrystals. Just as a hydrogen molecule has properties distinct from two uncoupled hydrogen atoms, a key feature of nanocrystal molecules is that they exhibit properties altered from those of the component nanoparticles due to coupling. The nature of the coupling between nanocrystal atoms and its response to vibrations and deformations of the nanocrystal molecule bonds are of particular interest. We discuss synthetic approaches, predicted and observed physical properties, and prospects and challenges toward this new class of materials.
机译:量子凝块在生物医学,光伏技术和电子学等领域已得到广泛使用,由于其与尺寸有关的物理特性,它们通常被称为人造原子。在这里,这种类比扩展到考虑了人工纳米晶体分子,该分子是由等离激元或电子耦合的单个纳米晶体的明确定义的群形成的。正如氢分子的性质不同于两个未偶合的氢原子一样,纳米晶体分子的一个关键特征是由于偶合,其分子性质与组分纳米粒子不同。纳米晶体原子之间的偶联的性质及其对纳米晶体分子键的振动和变形的响应特别受关注。我们讨论了合成方法,预测和观察到的物理特性,以及对这类新型材料的前景和挑战。

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