Literature DB >> 21598956

Large surface dipole moments in ZnO nanorods.

S Dag1, Shuzhi Wang, Lin-Wang Wang.   

Abstract

A self-consistent linear scaling three-dimensional fragment (LS3DF) method is used to study the dipole moments and internal electric fields of large ZnO nanorods. Our ab initio calculations reveal that the ZnO nanorod with unpassivated (1010) side surface has a side surface contribution per Zn-O dimer 10 times larger than the bulk contribution per Zn-O bond. Detailed analysis is used to decompose the total dipole moment into different contributions. It is found that the total dipole moment of a nanorod can be calculated from the different parts with their dielectric screening described by a continuous model. We also show the effect of the dipole moment on the interior electronic structure of the nanorod.

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Year:  2011        PMID: 21598956     DOI: 10.1021/nl200647e

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  4 in total

1.  Molecular Mechanisms of ZnO Nanoparticle Dispersion in Solution: Modeling of Surfactant Association, Electrostatic Shielding and Counter Ion Dynamics.

Authors:  Patrick Duchstein; Theodor Milek; Dirk Zahn
Journal:  PLoS One       Date:  2015-05-11       Impact factor: 3.240

2.  Low-Temperature PLD-Growth of Ultrathin ZnO Nanowires by Using Zn x Al1-x O and Zn x Ga1-x O Seed Layers.

Authors:  Alexander Shkurmanov; Chris Sturm; Helena Franke; Jörg Lenzner; Marius Grundmann
Journal:  Nanoscale Res Lett       Date:  2017-02-20       Impact factor: 4.703

3.  Vacancy driven surface disorder catalyzes anisotropic evaporation of ZnO (0001) polar surface.

Authors:  Zhen Wang; Jinho Byun; Subin Lee; Jinsol Seo; Bumsu Park; Jong Chan Kim; Hu Young Jeong; Junhyeok Bang; Jaekwang Lee; Sang Ho Oh
Journal:  Nat Commun       Date:  2022-09-24       Impact factor: 17.694

4.  Dipole-like electrostatic asymmetry of gold nanorods.

Authors:  Ji-Young Kim; Myung-Geun Han; Miao-Bin Lien; Sergei Magonov; Yimei Zhu; Heather George; Theodore B Norris; Nicholas A Kotov
Journal:  Sci Adv       Date:  2018-02-09       Impact factor: 14.136

  4 in total

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