| Literature DB >> 25392708 |
Zhiqiang Zhang1, Congcong Ma1, Lian He1, Shijin Zhu1, Xiaodong Hao1, Wanyi Xie2, Wei Zhang2, Yuxin Zhang3.
Abstract
In this work, an ultrafast and facile method is developed to synthesize Au(I)-dodecanethiolate nanotubes (Au(I)NTs) with the assistance of glycyl-glycyl-glycine (G-G-G). Transmission electron microscopy (TEM) images reveal that the as-prepared Au(I)NTs can be obtained in a 2-h reaction instead of a previous 24-h reaction and are uniform with a hollow structure and smooth surface by virtue of the G-G-G peptide tubular template. According to structural analysis, a possible preparative mechanism is proposed that the G-G-G peptide could help to curl into tube-like morphology in alkaline situation spontaneously to accelerate the formation of Au(I)NTs. Meanwhile, PVDF-stabilized Au(I)NT-modified glassy carbon electrodes present their promising potential for Hg(2+) detection.Entities:
Keywords: Functional; Multilayer structure; Nanocomposite; Self-assembly; Sensor
Year: 2014 PMID: 25392708 PMCID: PMC4226189 DOI: 10.1186/1556-276X-9-601
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1TEM images. (a, b) TEM images of the as-prepared Au(I)-dodecanethiolate nanotubes with gly-gly-gly in 2 h. (c) HRTEM image of the as-prepared Au(I)-dodecanethiolate nanotubes. (d) TEM image of the products without gly-gly-gly in 2 h.
Figure 2XRD patterns, FTIR spectrum, and TGA spectrum. (a) XRD patterns, (b) FTIR spectrum, and (c) TGA spectrum of the as-prepared Au(I)-dodecanethiolate nanotubes with gly-gly-gly in 2 h.
Figure 3Schematic illustrations. Schematic illustrations of the as-prepared Au(I)-dodecanethiolate nanotubes with gly-gly-gly in 2 h.
Figure 4Square wave anodic stripping voltammetry. SWASV response for 0 and 5 μM Hg2+ in 0.1 M HCl. SWASV conditions: quiet time, 10 s; frequency, 30 Hz; potential increment, 4 mV; amplitude of the square wave, 25 mV.