Morphological Investigations of Oxide Nanotubes Grown on Zircaloy-4 Cladding

Authors

  • G. Ali Physics Division, PINSTECH, Nilore Islamabad
  • G. Shabbir Physics Division, PINSTECH, Nilore Islamabad
  • S. Karim Physics Division, PINSTECH, Nilore Islamabad
  • M. Khan Physics Division, PINSTECH, Nilore Islamabad
  • A. Nisar Physics Division, PINSTECH, Nilore Islamabad
  • M. Ahmad Physics Division, PINSTECH, Nilore Islamabad

Abstract

 

Self-organized, highly ordered and vertically oriented nanotubes have been fabricated on the surface of Zircaloy-4 (Zr-4) sheet using an electrochemical route. Anodization is carried out in ethylene glycol (EG) and glycerol electrolyte containing ammonium fluoride and de-ionized water. The morphology of nanotubes was studied using field emission scanning electron microscope (FESEM) and high resolution transmission electron microscope (HRTEM). Electron microscopy showed that self-organized nanotubes with regular ordered and extremely smooth wall morphology were obtained in glycerol based electrolyte. The diameter of the nanotubes could be tailored by anodization parameters. The TEM and SAED results revealed that the as-prepared nanotubes are closed at the bottom surface and have crystalline structure.

Author Biographies

G. Ali, Physics Division, PINSTECH, Nilore Islamabad

Nanomaterials Research Group

G. Shabbir, Physics Division, PINSTECH, Nilore Islamabad

Central Diagnostic Laboratory

S. Karim, Physics Division, PINSTECH, Nilore Islamabad

Nanomaterials Research Group

M. Khan, Physics Division, PINSTECH, Nilore Islamabad

Nanomaterials Research Group

A. Nisar, Physics Division, PINSTECH, Nilore Islamabad

Nanomaterials Research Group,

M. Ahmad, Physics Division, PINSTECH, Nilore Islamabad

Nanomaterials Research Group

References

References

M. Billone, Y. Yan, T. Burtsevaand and R. Daum, “Cladding embrittlement during postulated loss-of-coolant accidents”, NUREG/CR–6967 ANL–07/04,Nuclear Engineering Division, Argonne National Laboratory, 9700 South Cass Avenue Argonne, IL 60439, July 2008.

P. Chemelle, D.B. Knorr, J.B. V.D. Sande and R.M. Pelloux, “Morphology and composition of second phase particles in zircaloy-2”, J. Nucl. Mater. vol. 113, pp. 58-64, 1983.

Preliminary Lessons Learned from the Fukushima Daiichi Accident for Adanced Nuclear Power Plant Technology Development”, IAEA, Vienna, 2013.

https://www.iaea.org/sites/default/files/gc57inf-2-att2_en_0.pdf

H.H. Kim, J.H. Kim, J.Y. Moon, H.S. Lee, J.J. Kim and Y.S. Chai, “High-temperature Oxidation Behavior of Zircaloy-4 and Zirlo in Steam Ambient”, J. Mater. Sci. Technol., vol. 26, pp. 827- 832, 2010.

H.S. Ahn, C. Lee, H. Kim, H.J. Jo, S.H. Kang, J.W. Kim, J. Shin and M.H. Kim, “Pool boiling CHF enhancement by micro/nanoscale modification of zircaloy-4 surface”, Nucl. Eng. Des., vol. 240, pp. 3350-3360, 2010.

C. Lee, H. Kim, H.S. Ahn, M.H. Kim and J.W. Kim, “Micro/nanostructure evolution of zircaloy surface using anodization technique: Application to nuclear fuel cladding modification”, Appl. Surf. Sci., vol. 258, pp. 8724- 8731, 2012.

J. Li, X. Bai, D. Zhang and H. Li, “Characterization and structure study of the anodic oxide film on Zircaloy-4 synthesized using NaOH electrolytes at room temperature”, Appl. Surf. Sci., vol. 252, 7436-7441, 2006.

G. Ali, M. Ahmad, J.I. Akhter, M. Maqbool and S.O. Cho, “Novel structure formation at the bottom surface of porous anodic alumina fabricated by single step anodization process”, Micron, vol. 41, pp. 560-564, 2010.

G. Ali, S.H. Yoo, J.M.Kum, Y.N. Kimand and S.O. Cho, “A novel route to large-scale and robust free-standing TiO2 nanotube membranes based on N2 gas blowing combined with methanol wetting”, Nanotechnology, vol. 22, pp. 245602, 2011.

G. Ali, C. Chen, S.H. Yoo, J.M. Kum, Y.N. Kim, and S.O. Cho, “Fabrication of complete titaniananoporous structures via electrochemical anodization of Ti”, Nano Res. Lett., vol. 6, pp. 332, 2011.

S. Li, G. Zhang, D. Guo, L. Yu and W. Zhang, “Anodization fabrication of highly ordered TiO2 nanotubes”, J. Phys. Chem. C, vol. 113, pp. 12759- 12765, 2009.

K. Yasuda and P. Schmuki, “Control of morphology and composition of self-organized zirconium titanate nanotubes formed in (NH 4) 2 SO 4/NH 4 F electrolytes”, Electrochimica Acta, vol. 52, pp. 4053-4061, 2007.

A. Ghicov, S. Aldabergenova, H. Tsuchiya and P. Schmuki, “TiO2–Nb2O5 nanotubes with electrochemically tunable morphologies”, Angew. Chem. Int. Ed., vol. 45, pp. 6993-6996, 2006.

H. Tsuchiya, S. Berger, J.M. Macak, A.G. Munoz and P. Schmuki, “Self-organized porous and tubular oxide layers on TiAl alloys”, Electrochem. Commun., vol. 9, pp. 2397-2402, 2007.

D. Wang, Y. Liu, Bo. Yu, C. Wang, F. Zhou and W. Liu, “TiO2 nanotubes with tunable morphology, diameter, and length: synthesis and photo-electrical/catalytic performance”, Chem. Mater. vol. 21, pp. 1198- 1206, 2009.

R.A. Ploc and M.A. Miller, “Transmission and scanning electron microscopy of oxides anodically formed on zircaloy-2”, J. Nucl. Mater., vol. 64, pp. 71- 85, 1977.

J.Li, X. Bai, D. Zhang and H. Li, “Characterization and structure study of the anodic oxide film on Zircaloy-4 synthesized using NaOH electrolytes at room temperature”, App. Surf. Sci., vol. 252, pp. 7436- 7441, 2006.

G. Ali, S.H. Yoo, J.M. Kum, H.S. Raza, D. Chen and S.O. Cho, “Formation of hierarchical TiO2 nanoporous structure from free-standing TiO2 nanotubes layers”, J. Nanopart. Res., vol. 14, pp. 1047(2012).

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Published

30-06-2016

How to Cite

[1]
G. Ali, G. Shabbir, S. Karim, M. Khan, A. Nisar, and M. Ahmad, “Morphological Investigations of Oxide Nanotubes Grown on Zircaloy-4 Cladding”, The Nucleus, vol. 53, no. 2, pp. 78–81, Jun. 2016.

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