Facile synthesis of Ag@Au core-sheath nanowires with greatly improved stability against oxidation.
Publication
, Journal Article
Yang, M; Hood, ZD; Yang, X; Chi, M; Xia, Y
Published in: Chemical communications (Cambridge, England)
February 2017
We report a facile synthesis of Ag@Au core-sheath nanowires through the conformal deposition of Au atoms onto the surface of pre-synthesized Ag nanowires. The resulting Ag@Au nanowires showed morphology and optical properties almost identical to the pristine Ag nanowires, but with greatly improved stability under different corrosive environments.
Duke Scholars
Published In
Chemical communications (Cambridge, England)
DOI
EISSN
1364-548X
ISSN
1359-7345
Publication Date
February 2017
Volume
53
Issue
12
Start / End Page
1965 / 1968
Related Subject Headings
- Organic Chemistry
- 40 Engineering
- 34 Chemical sciences
- 03 Chemical Sciences
Citation
APA
Chicago
ICMJE
MLA
NLM
Yang, M., Hood, Z. D., Yang, X., Chi, M., & Xia, Y. (2017). Facile synthesis of Ag@Au core-sheath nanowires with greatly improved stability against oxidation. Chemical Communications (Cambridge, England), 53(12), 1965–1968. https://doi.org/10.1039/c6cc09878a
Yang, Miaoxin, Zachary D. Hood, Xuan Yang, Miaofang Chi, and Younan Xia. “Facile synthesis of Ag@Au core-sheath nanowires with greatly improved stability against oxidation.” Chemical Communications (Cambridge, England) 53, no. 12 (February 2017): 1965–68. https://doi.org/10.1039/c6cc09878a.
Yang M, Hood ZD, Yang X, Chi M, Xia Y. Facile synthesis of Ag@Au core-sheath nanowires with greatly improved stability against oxidation. Chemical communications (Cambridge, England). 2017 Feb;53(12):1965–8.
Yang, Miaoxin, et al. “Facile synthesis of Ag@Au core-sheath nanowires with greatly improved stability against oxidation.” Chemical Communications (Cambridge, England), vol. 53, no. 12, Feb. 2017, pp. 1965–68. Epmc, doi:10.1039/c6cc09878a.
Yang M, Hood ZD, Yang X, Chi M, Xia Y. Facile synthesis of Ag@Au core-sheath nanowires with greatly improved stability against oxidation. Chemical communications (Cambridge, England). 2017 Feb;53(12):1965–1968.
Published In
Chemical communications (Cambridge, England)
DOI
EISSN
1364-548X
ISSN
1359-7345
Publication Date
February 2017
Volume
53
Issue
12
Start / End Page
1965 / 1968
Related Subject Headings
- Organic Chemistry
- 40 Engineering
- 34 Chemical sciences
- 03 Chemical Sciences