Surface morphology and electrocatalytic properties of nickel nanoparticles formed in track pores
- Авторы: Ziganshina S.A.1,2, Chuklanov A.P.1, Biziaev D.A.1, Bukharaev A.A.1,2
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Учреждения:
- Kazan E. K. Zavoisky Physical-Technical Institute, Kazan Scientific Center
- Kazan Federal University
- Выпуск: Том 10, № 5 (2016)
- Страницы: 942-948
- Раздел: Article
- URL: https://journals.rcsi.science/1027-4510/article/view/189661
- DOI: https://doi.org/10.1134/S1027451016050207
- ID: 189661
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Аннотация
Structures, each of which is composed of a conducting substrate with a protective dielectric layer containing an array of equal-sized pores formed under the action of high-energy ions and chemical etching, are created. The created pores are electrochemically filled with nickel nanoparticles. With atomic-force microscopy (AFM), it is established that Ni nanoparticles are generated exclusively within ion tracks without film formation on the surface of a silicon-dioxide layer. Histograms illustrating the nanoparticle-diameter distribution are constructed, and areas of the nickel nanoparticles are calculated. The electrochemical and electrocatalytic properties of Ni nanoparticles inherent to ethanol-oxidation reactions are investigated. The catalytic activity per unit area of the nanocatalyst is estimated using voltammograms, AFM data, and histograms characterizing the particle size distribution.
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Об авторах
S. Ziganshina
Kazan E. K. Zavoisky Physical-Technical Institute, Kazan Scientific Center; Kazan Federal University
Автор, ответственный за переписку.
Email: sufia@mail.ru
Россия, Kazan, 420029; Kazan, 420008
A. Chuklanov
Kazan E. K. Zavoisky Physical-Technical Institute, Kazan Scientific Center
Email: sufia@mail.ru
Россия, Kazan, 420029
D. Biziaev
Kazan E. K. Zavoisky Physical-Technical Institute, Kazan Scientific Center
Email: sufia@mail.ru
Россия, Kazan, 420029
A. Bukharaev
Kazan E. K. Zavoisky Physical-Technical Institute, Kazan Scientific Center; Kazan Federal University
Email: sufia@mail.ru
Россия, Kazan, 420029; Kazan, 420008
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