| Literature DB >> 25686629 |
Siwei Luo1, Guolin Hao, Yinping Fan, Liangzhi Kou, Chaoyu He, Xiang Qi, Chao Tang, Jin Li, Kai Huang, Jianxin Zhong.
Abstract
Ripple is a common deformation in two-dimensional materials due to localized strain, which is expected to greatly influence the physical properties. The effects of the ripple deformation in the MoS2 layer on their physics, however, are rarely addressed experimentally. We here grow atomically thin MoS2 nanostructures by employing a vapor phase deposition method without any catalyst and observed the ripples in MoS2 nanostructures. The MoS2 ripples exhibit quasi-periodical ripple structures in the MoS2 surface. The heights of the ripples vary from several angstroms to tens of nanometers and the wavelength is in the range of several hundred nanometers. The growth mechanism of rippled MoS2 nanostructures is elucidated. We have also simultaneously investigated the electrostatic properties of MoS2 ripples by using Kelvin probe force microscopy, which shows inhomogeneous surface potential and charge distributions for MoS2 ripple nanostructures with different local strains.Entities:
Year: 2015 PMID: 25686629 DOI: 10.1088/0957-4484/26/10/105705
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874