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Hydrazine detection by shape-controlled palladium nanostructures on carbon nanotube thin films

Title
Hydrazine detection by shape-controlled palladium nanostructures on carbon nanotube thin films
Author
성기훈
Keywords
Carbon nanotube; Palladium nanostructures; Hydrazine detection; Electrochemical deposition
Issue Date
2013-06
Publisher
KOREAN BIOCHIP SOCIETY-KBCS
Citation
BIOCHIP JOURNAL, v. 7, NO. 2, Page. 156-163
Abstract
In this article, the electrodeposition of palladium (Pd) nanostructures on flexible and transparent single-walled carbon nanotube (SWCNT) thin films was described. Four different morphologies of Pd nanostructures were synthesized by controlling the potentials. Octahedral-like and flower-like nanostructures were observed at +0.3V and -0.1V, respectively. With a further driving potential decrease, cubic and spherical nanostructures were obtained in turn at 0.0 V and -0.5 V. The Pd nanostructures were confirmed by XRD data. Subsequently, the fabricated Pd nanostructures on SWCNT thin films were employed as electrodes for hydrazine detection. The electrochemical oxidation of hydrazine by Pd nanostructures was investigated by cyclic voltammetry and amperometry. As results, the specific sensitivities of four Pd nanostructures were 1123 mu A mM cm(-2) (octahedron), 899 mu A mM cm(-2) (flower), 827 mu A mM cm(-2) (cube), and 275 RA mM cm-2 (sphere). The detection limits were 5.90 mu M (octahedron), 2.56 mu M (flower), 2.85 mu M (cube), and 4.83 mu M (sphere).The morphology effect of Pd nanostructures on hydrazine oxidation is dependent on the relative fraction of (100), (110), and (111) facets which are associated with the shape. The (111) facet dominant Pd nanostructures exhibited the higher catalytic activities than Pd nanostructures with (100) and (110) facets.
URI
https://link.springer.com/article/10.1007/s13206-013-7209-5https://repository.hanyang.ac.kr/handle/20.500.11754/183548
ISSN
1976-0280;2092-7843
DOI
10.1007/s13206-013-7209-5
Appears in Collections:
COLLEGE OF ENGINEERING SCIENCES[E](공학대학) > BIONANO ENGINEERING(생명나노공학과) > Articles
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