| Literature DB >> 26925866 |
Jiaqi Zhang1,2,3, Wenfeng Xiang4,5,6, Yuan Liu7,8, Minghao Hu9,10, Kun Zhao11,12.
Abstract
A facile and high-yield route, dropping method, has been used to synthesize Ni nanowires (NWs) with a high aspect ratio. Compared to the conventional chemical reduction method, the diameter of Ni NWs prepared by the dropping method distinctively decreased and the surface roughness was improved. After optimizing the process parameters such as the Ni ion concentration and volume of the dropped NiCl2·6H2O solution, the diameter and aspect ratio of the NWs are 70 nm and ~600, respectively. The possible synthesized process of the dropping method was discussed. This work presents a preferred approach to fabricate high-quality one-dimensional magnetic materials which have potential applications in electrochemical devices, magnetic sensors, and catalytic agents.Entities:
Keywords: Diameter and surface roughness; Dropping method; Magnetic materials; Nanocrystalline materials; Ni nanowires
Year: 2016 PMID: 26925866 PMCID: PMC4771680 DOI: 10.1186/s11671-016-1330-z
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1XRD patterns and EDX spectrum of Ni NWs. a XRD patterns of the DM-NWs and CM-NWs. b EDX spectrum of the DM-NWs
Fig. 2SEM images of nickel NWs. a SEM images of nickel NWs prepared by the dropping method. b SEM images of nickel NWs prepared by the conventional method
Fig. 3TEM micrograph and SAED pattern of Ni NWs. a TEM micrograph of Ni NWs synthesized by the dropping method. b SAED pattern of Ni NWs synthesized by the dropping method
Fig. 4Schematic illustration of the synthesis of Ni NWs. a, b The process to synthesize CM-NWs. c, d The process to synthesize DM-NWs. In the figure, the yellow spots represent the Ni nanoparticles, the dashed lines represent the magnetic induction line, and the drop-shaped area bounded by the dotted line indicates the diffusion region of the NiCl2·6H2O solution followed by the reaction time
Fig. 5SEM image of NWs synthesized by the dropping method with the optimized process parameters. At the optimized process, the diameter of the NWs is ~70 nm and the length is ~45 μm