| Literature DB >> 26890721 |
Shujing Wu, He Zheng, Shuangfeng Jia, Huaping Sheng, Fan Cao, Lei Li, Shuaishuai Hu, Penghui Zhao, Dongshan Zhao, Jianbo Wang.
Abstract
The optimization of nanopore-based devices is closely related to the nanopore three-dimensional (3D) structures. In this paper, faceted nanopores were fabricated in magnesium (Mg) by aligning the electron beam (e-beam) along the [0001] direction. Detailed structural characterization by transmission electron microscopy reveals the existence of two 3D structures: hexagonal prism-shaped and hourglass-shaped 3D morphologies. Moreover, the 3D structures of nanopores are also found to depend on the widest nanopore diameter-to-thickness ratio (D/t). A plausible formation mechanism for different 3D structures is discussed. Our results incorporate a critical piece of information regarding the nanopore 3D structures in Mg and may serve as an important design guidance for the size- and shape-controllable fabrication of solid-state nanopores applying the e-beam sculpting technique.Entities:
Year: 2016 PMID: 26890721 DOI: 10.1088/0957-4484/27/12/125603
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874