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Interplay between quantum size effect and strain effect on growth of nanoscale metal thin film.

机译:量子尺寸效应和应变效应对纳米金属薄膜生长的相互作用。

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摘要

The focus of this dissertation is to explore novel effects in metal nanofilms, particularly, the quantum size effect (QSE) and strain effect, through the methodology of first-principles density functional theory (DFT) calculations. The QSE has already been shown to affect many properties of metal nanofilms, such as surface energy, work function, and even superconducting transition temperature. Based on the extensive DFT calculations that I carried out in the last five years, we further demonstrate that several new properties of metal nanofilms, including edge/surface stress, elastic constants, and adatom-adatom binding energy can also be modulated by QSE to exhibit strong thickness dependence. Specifically, this dissertation includes the following five chapters of topics: (1) interplay between strain effect and quantum size effect in metal nanofilm; (2) quantum manifestation of elastic constants in nanostructures; (3) QSE on adatom-adatom binding energy and island nucleation; (4) quantum manifestations of graphene edge stress and edge instability; (5) bistability of nanoscale islands induced by anisotropic stress. Overall, my dissertation research not only has explained a number of puzzling experimental observations and resolved some existing controversies, but also made some interesting theoretical predictions in novel quantum aspects of thin film growth and nanomechanics. It is my hope that these studies will further our fundamental understanding of QSE and strain effect in metal nanofilms, with broader implications in other low-dimensional nanostructures as well as in potential technological applications of nanostructures.
机译:本论文的重点是通过第一原理密度泛函理论(DFT)的计算方法,探索金属纳米膜的新颖效应,特别是量子尺寸效应(QSE)和应变效应。已经证明,QSE影响金属纳米膜的许多特性,例如表面能,功函,甚至超导转变温度。根据我在过去五年中进行的大量DFT计算,我们进一步证明了QSE还可调节金属纳米膜的几个新特性,包括边缘/表面应力,弹性常数和吸附原子与吸附原子的结合能,以显示厚度依赖性强。具体而言,本论文包括以下五个章节:(1)金属纳米膜的应变效应与量子尺寸效应的相互作用。 (2)纳米结构中弹性常数的量子表现; (3)QSE对吸附原子-吸附原子的结合能和岛形核的影响; (4)石墨烯边缘应力和边缘不稳定性的量子表现; (5)各向异性应力引起的纳米岛的双稳态。总的来说,我的论文研究不仅解释了许多令人费解的实验观察结果,解决了一些现有的争论,而且在薄膜生长和纳米力学的新颖量子方面做出了一些有趣的理论预测。我希望这些研究将加深我们对金属纳米薄膜中QSE和应变效应的基本理解,对其他低维纳米结构以及纳米结构的潜在技术应用具有更广泛的意义。

著录项

  • 作者

    Liu, Miao.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Chemistry Inorganic.;Engineering Materials Science.;Physics Quantum.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 85 p.
  • 总页数 85
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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