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The influence of thermal annealing on structure and oxidation of iron nanowires Cover

The influence of thermal annealing on structure and oxidation of iron nanowires

Open Access
|Mar 2015

References

  1. 1. Chertok, B., Moffat, B. A., David, A. E., Yu, F., Bergemann, C., Ross, B. D., & Yang, V. C. (2008). Iron oxide nanoparticles as a drug delivery vehicle for MRI monitored magnetic targeting of brain tumors.(4), 487–496. DOI: 10.1016/j.biomaterials.2007.08.050.
  2. 2. Zhang, X. X., Wen, G. H., Huang, S., Dai, L., Gao, R., & Wang, Z. L. (2001). Magnetic properties of Fe nanoparticles trapped at the tips of the aligned carbon nanotubes.,(1), 9–12. DOI: 10.1016/S0304-8853(01)00134-2.
  3. 3. Bolm, C., Legros, J., Le Paih, J., & Zani, L. (2004). Iron-catalyzed reactions in organic synthesis.,(12), 6217–6254. DOI: 10.1021/cr040664h.
  4. 4. Getzlaff, M., Bansmann, J., & Schonhense, G. (1995). Oxygen on Fe(100) and Fe(110).,(5/8), 743–747. DOI: 10.1007/BF00321362.
  5. 5. Zeeshan, M. A., Pane, S., Youn, S. K., Pellicer, E., Schuerle, S., Sort, J., Fusco, S., Lindo, A. M., Park, H. G., & Nelson, B. J. (2013). Graphite coating of iron nanowires for nanorobotic applications: Synthesis, characterization and magnetic wireless manipulation.,(7), 823–831. DOI: 10.1002/adfm.201202046.
  6. 6. Lin, W. S., Jian, Z. J., Lin, H. M., Lai, L. C., Chiou, W. A., Hwu, Y. K., Wu, S. H., Chen, W. C., & Yao, Y. D. (2013). Synthesis and characterization of iron nanowires.,(1), 85–91. DOI: 10.1002/jccs.201200263.
  7. 7. Jubb, A. M., & Allen, H. C. (2010). Vibrational spectroscopic characterization of hematite, maghemite, and magnetite thin films produced by vapor deposition.,(10), 2804–2812. DOI: 10.1021/am1004943.
  8. 8. Cornell, R. M., & Schwertmann, U. (2003).. Weinheim, Germany: Wiley-VCH.
  9. 9. Wang, C. M., Baer, D. R., Amonette, J. E., Engelhard, M. H., Antony, J., & Qiang, Y. (2009). Morphology and electronic structure of the oxide shell on the surface of iron nanoparticles.,(25), 8824–8832. DOI: 10.1021/ja900353f.
  10. 10. Long, G. J., Hautot, D., Pankhurst, Q. A., Vandormael, D., Grandjean, F., Gaspard, J. P., Briois, V., Hyeon, T., & Suslick, K. S. (1998). Mossbauer-Bauer-effect and x-ray-absorption spectral study of sonochemically prepared amorphous iron.,(17), 10716–10722. DOI: 10.1103/PhysRevB.57.10716.
  11. 11. Machala, L., Zboril, R., & Gedanken, A. (2007). Amorphous iron(III) oxide – a review.,(16), 4003–4018. DOI: 10.1021/jp064992s.
  12. 12. Cao, X., Koltypin, Y., Katabi, G., & Prozorov, R. (1997). Preparation and characterization of amorphous nanometre sized FeOpowder.,(6), 1007–1009. DOI: 10.1039/a606739e.
  13. 13. Petrov, Y. I., & Shafranovsky, E. A. (2012). On the conditions eliciting a detailed structure in the hyperfine field distribution atFe nuclei.,, 96–101. DOI: 10.1016/j.nimb.2011.10.014.
DOI: https://doi.org/10.1515/nuka-2015-0004 | Journal eISSN: 1508-5791 (formerly 0029-5922) | Journal ISSN: 0029-5922
Language: English
Page range: 87 - 91
Submitted on: Jun 18, 2014
Accepted on: Nov 2, 2014
Published on: Mar 12, 2015
Published by: Institute of Nuclear Chemistry and Technology
In partnership with: Paradigm Publishing Services
Related subjects:

© 2015 Marcin Krajewski, Katarzyna Brzózka, Bogumił Górka, Wei-Syuan Lin, Hong-Ming Lin, Tadeusz Szumiata, Michał Gawroński, Dariusz Wasik, published by Institute of Nuclear Chemistry and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.