这就是所谓的 量子尺寸效应 ( quantum size effects )或团簇尺寸效应(cluster size effects),这正是诸多研究的焦点。最近又成功地利用STM作单原子操作,制备出了Si原子链[11]。
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These nanometer particle effects have been interrelated by author in terms of adsorption concentration effect, adsorption orientation effect and quantum size effect.
作者用纳米颗粒的吸附浓集效应、吸附定向效应、和量子尺寸效应来解释这些效应。
The growth and the electronic state of quantum dots, quantum size-dependent effects, Coulomb blockade effects and dielectric effects are described.
对玻璃中半导体量子点的生长过程、量子点的电子态,量子尺寸效应、库仑阻塞效应及介电效应,做了比较全面的介绍。
The unique characteristics of micro-size materials such as surface trait, the little size and quantum effects, make them have a wide application prospect in many aspects.
超细材料所具有的表面效应、小尺寸效应、量子效应等独特性能使其在许多方面有着广阔的应用前景。
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