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Articles

Study of the use of ionizing radiation for the modification of CoO/Co0.65Zn0.35 nanostructures

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Pages 279-290 | Received 20 Jun 2019, Accepted 13 Sep 2019, Published online: 30 Mar 2020

References

  • Smith, P.A.; Nordquist, C.D.; Jackson, T.N.; Mayer, T.S.; Martin, B.R.; Mbindyo, J.; Mallouk, T.E. Electric-field Assisted Assembly and Alignment of Metallic Nanowires. Appl. Phys. Lett. 2000, 77 (9), 1399–1401.
  • Kottmann, J.P.; Martin, O.J. Plasmon Resonant Coupling in Metallic Nanowires. Opt. Express 2001, 8 (12), 655–663.
  • Akimov, A.V.; Mukherjee, A.; Yu, C.L.; Chang, D.E.; Zibrov, A.S.; Hemmer, P.R.; Park, H.; Lukin, M.D. Generation of Single Optical Plasmons in Metallic Nanowires Coupled to Quantum Dots. Nature 2007, 450 (7168), 402–406.
  • Patolsky, F.; Weizmann, Y.; Willner, I. Actin-based Metallic Nanowires as Bio-Nanotransporters. Nat. Mater. 2004, 3 (10), 692–695.
  • Zdorovets, M.V.; Borgekov, D.B.; Kenzhina, I.E.; Kozlovskiy, A.L. Effect of Ionizing Radiation on Structural and Conductive Properties of Copper Nanotubes. Phys. Lett. A 2018, 382 (4), 175–179.
  • Weeber, J.-C.; Dereux, A.; Girard, C.; Krenn, J.R.; Goudonnet, J.-P. Plasmon Polaritons of Metallic Nanowires for Controlling Submicron Propagation of Light. Phys. Rev. B 1999, 60 (12), 9061–9068.
  • Tulebayeva, D.Z.; Kozlovskiy, A.L.; Korolkov, I.V.; Gorin, Y.G.; Kazantsev, A.V.; Abylgazina, L.; Shumskaya, E.E.; Kaniukov, E.Y.; Zdorovets, M.V. Modification of Fe3O4 Nanoparticles with Carboranes. Mater. Res. Express 2018, 5 (10), 105011.
  • Yin, A.J.; Li, J.; Jian, W.; Bennett, A.J.; Xu, J.M. Fabrication of Highly Ordered Metallic Nanowire Arrays by Electrodeposition. Appl. Phys. Lett. 2001, 79 (7), 1039–1041.
  • Ebaid, M.; Min, J.-W.; Zhao, C.; Ng, T.K.; Idriss, H.; Ooi, B.S. Water Splitting to Hydrogen Over Epitaxially Grown InGaN Nanowires on a Metallic Titanium/Silicon Template: Reduced Interfacial Transfer Resistance and Improved Stability to Hydrogen. J. Mater. Chem. A 2018, 6 (16), 6922–6930.
  • Cheng, C.; Weissmüller, J.; Ngan, A.H. Fast and Reversible Actuation of Metallic Muscles Composed of Nickel Nanowire-Forest. Adv. Mater. 2016, 28 (26), 5315–5321.
  • Kozlovskiy, A.; Shlimas, D.; Zdorovets, M. Investigation of the Effect of Ionizing Radiation on the Structural and Conductive Characteristics of Ni Nanostructures. Vacuum 2019, 163, 103–109.
  • Kozlovskiy, A.; Shlimas, D.; Kenzhina, I.; Zdorovets, M. Study of the use of Ionizing Radiation to Improve the Efficiency of Performance of Nickel Nanostructures as Anodes of Lithium-ion Batteries. Mater. Res. Express 2019, 6 (5), 055026.
  • Honey, S.; Naseem, S.; Ishaq, A.; Maaza, M.; Bhatti, M.T.; Wan, D. Large Scale Silver Nanowires Network Fabricated by MeV Hydrogen (H+) ion Beam Irradiation. Chin. Phys. B. 2016, 25 (4), 046105.
  • Wang, J.; Mao, C.; Wu, Z.; Xi, W.; Zhao, Y.; Xia, R.; Yang, J.; Chen, Y. Reduction of Electrical Conductivity in Ag Nanowires Induced by Low-Energy Electron Beam Irradiation. J. Phys. Chem. Solids 2019, 124, 89–93.
  • Li, H.; Jiang, P.; Zhang, W.; Chen, S.; Li, F. In Situ Growing of Metallic Cu on Cu2O Nanowires for Improved Photocatalytic Performance. Nanosci Nanotechnol Lett 2019, 11 (1), 31–37.
  • Camara, O.; Hanif, I.; Tunes, M.; Harrison, R.; Greaves, G.; Donnelly, S.; Hinks, J. Shape Modification of Germanium Nanowires During Ion Irradiation and Subsequent Solid-Phase Epitaxial Growth. Adv. Mater. Interfaces. 2018, 5 (13), 1800276.
  • Korolkov, I.V.; Kozlovskiy, A.L.; Gorin, Y.G.; Kazantsev, A.V.; Shlimas, D.I.; Zdorovets, M.V.; Ualieva, N.K.; Rusakov, V.S. Immobilization of Carborane Derivatives on Ni/Fe Nanotubes for BNCT. J. Nanopart. Res. 2018, 20 (9), 240.
  • Smith, K.A.; Savva, A.I.; Wu, Y.; Tenne, D.A.; Butt, D.P.; Xiong, H.; Wharry, J.P. Effects of Intermediate Energy Heavy-ion Irradiation on the Microstructure of Rutile TiO2single Crystal. J. Am. Ceram. Soc. 2018, 101 (9), 4357–4366.
  • Suzuki, V.Y.; de Paula, N.H.; Gonçalves, R.; Li, M.S.; Pereira, E.C.; Longo, E.; La Porta, F.A. Exploring Effects of Microwave-Assisted Thermal Annealing on Optical Properties of Zn2GeO4 Nanostructured Films. Mater Sci Eng: B 2019, 246, 7–12.
  • Dupeyrón, D.; Rieumont, J.; Solorzano, G.; Martinez, R. Formation of Carbon-Based Nanotubular Structures by in Situ Electron Irradiation. Nucl. Instrum. Methods Phys. Res., Sect. B 2019, 451, 18–23.
  • Rahimian, H.; Mokhtari, H.; Shirmardi, S.P. An Investigation of the Electron Beam Irradiation Effect on Optical Properties of Nd3+ Doped Chlorophosphate Glasses. Optik 2018, 175, 63–70.
  • Ghosh, B.; Ray, S.C.; Pattanaik, S.; Sarma, S.; Mishra, D.K.; Pontsho, M.; Pong, W.F. Tuning of the Electronic Structure and Magnetic Properties of Xenon ion Implanted Zinc Oxide. J. Phys. D: Appl. Phys. 2018, 51 (9), 095304.
  • Wang, J.; Jiu, J.; Zhang, S.; Sugahara, T.; Nagao, S.; Suganuma, K.; He, P. The Comprehensive Effects of Visible Light Irradiation on Silver Nanowire Transparent Electrode. Nanotechnol 2018, 29 (43), 435701.
  • Huang, Q.-Z.; Tao, Z.-J.; Ye, L.-Q.; Yao, H.-C.; Li, Z.-J. Mn 0.2 Cd 0.8 S Nanowires Modified by CoP 3 Nanoparticles for Highly Efficient Photocatalytic H 2 Evolution Under Visible Light Irradiation. Appl. Catal., B 2018, 237, 689–698.
  • Kenzhina, I.E.; Zdorovets, M.V.; Kozlovskiy, A.L.; Kadyrzhanov, K.K. Synthesis and Properties of Cu/CuO Nanostructures Obtained by Electrochemical Deposition. Mater. Res. Express 2018, 5 (3), 035052.
  • Kim, T.Y.; Lee, M.J.; Moon, D.G. Picosecond Pulsed Laser Irradiation of Silver Nanowire Films Coated on the Polyethylene Terephthalate Substrates. Mol. Cryst. Liq. Cryst. 2018, 663 (1), 40–46.
  • Wu, J.; Wang, B.; Yi, F.; Deng, S.; Xu, N.; Chen, J. Change in Crystalline Structure of W 18 O 49 Nanowires Induced by X-ray Irradiation and its Effects on Field Emission. RSC Adv. 2018, 8 (2), 752–760.
  • Zadorozhnyi, I.; Li, J.; Pud, S.; Hlukhova, H.; Handziuk, V.; Kutovyi, Y.; Petrychuk, M.; Vitusevich, S. Effect of Gamma Irradiation on Dynamics of Charge Exchange Processes Between Single Trap and Nanowire Channel. Small 2018, 14 (2), 1702516.
  • Wang, H.; Naghadeh, S.B.; Li, C.; Cherrette, V.L.; Fang, P.; Xu, K.; Zhang, J.Z. Enhanced Photoelectrochemical and Photocatalytic Properties of CdS Nanowires Decorated with Ni3S2 Nanoparticles Under Visible Light Irradiation. J. Electrochem. Soc. 2019, 166 (5), H3146–H3153.
  • Kozlovskii, A.L.; Kaikanov, M.I.; Tikhonov, A.V.; Ponomarev, D.V.; Zdorovets, M.V. Targeted Modification of Ni Nanotubes by Electron Irradiation. Inorg. Mater. 2018, 54 (4), 386–391.
  • Khan, M.R.; Rauf Khan, M.A.; Ahmad, I.; Khan, M.A.; Iqbal, T.; Ifeanyichukwu Ezema, F.; Malek, M. Joining of Individual Silicon Carbide Nanowires via Proton Beam Irradiation. Curr. Nanosci. 2018, 14 (5), 354–359.
  • Shumskaya, A.E.; Kaniukov, E.Y.; Kozlovskiy, A.L.; Zdorovets, M.V.; Rusakov, V.S.; Kadyrzhanov, K.K. Structure and Physical Properties of Iron Nanotubes Obtained by Template Synthesis. Phys. Solid State 2017, 59 (4), 784–790.
  • Chen, Z.; Yang, J.; Yang, X.; Zhao, Y.; Kang, J.; Yang, F.; Zhang, Y.; Cheng, M.; Wang, G.; Duanmu, Q. Porous Si/TiO2 Nanowire Photoanode for Photoelectric Catalysis Under Simulated Solar Light Irradiation. Appl. Organomet. Chem. 2018, 32 (6), e4356.
  • Zheng, X.-D.; Ren, F.; Wu, H.-Y.; Qin, W.-J.; Jiang, C.-Z. Formation of Tungsten Oxide Nanowires by Ion Irradiation and Vacuum Annealing. Nanotechnol 2018, 29 (15), 155301.
  • Kozlovskiy, A.; Kenzhina, I.; Kaikanov, M.; Stepanov, A.; Shamanin, V.; Zdorovets, M.; Tikhonov, A. Effect of Electronic Modification on Nanostructures Stability to Degradation. Mater. Res. Express 2018, 5 (7), 075010.
  • Horio, A.; Sakurai, T.; Kayama, K.; Lakshmi, G.B.V.S.; Kumar Avasthi, D.; Sugimoto, M.; Yamaki, T.; Chiba, A.; Saito, Y.; Seki, S. Remarkable Effect of Halogenation of Aromatic Compounds on Efficiency of Nanowire Formation Through Polymerization/Crosslinking by High-Energy Single Particle Irradiation. Radiat. Phys. Chem. 2018, 142, 100–106.
  • Kozlovskiy, A.; Akhmetzhan, S.; Ivanitskaya, N.; Kenzhina, I.; Zdorovets, M. Study of the Effect of Irradiation with Ca5+ Ions on the Increase in Ni Nanotubes Lifetime, Applicable as the Basis for Lithium-ion Batteries. Mater. Res. Express 2019, 6 (8), 085074.
  • Panchal, S.; Chauhan, R.P. Variation in Structural, Electrical and Optical Properties of Selenium Nanowires After Irradiation with Ni 6+ Ions. Electron. Mater. Lett. 2019, 15 (2), 216–226.
  • Kumar, V.; Kumar, R. Low Energy Kr5+ Ion Beam Engineering in the Optical, Structural, Surface Morphological and Electrical Properties of RF Sputtered TiO2 Thin Films. Opt. Mater. 2019, 91, 455–469.
  • Aramesh, M. Ion-Beam Sculpting of Nanowires. Physica Status Solidi (RRL)–Rapid Res Lett 2018, 12 (1), 1700333.
  • Asikuzun, E.; Ozturk, O. Theoretical and Experimental Approaches to Measuring Mechanical Properties of Zn 1− x Co x O Binary Tetrahedral Bulk Semiconductors. J. Mater. Sci.: Mater. Electron. 2018, 10, 1–8.
  • Mohammed, M.K.; Ahmed, D.S.; Mohammad, M.R. Studying Antimicrobial Activity of Carbon Nanotubes Decorated with Metal-doped ZnO Hybrid Materials. Mater. Res. Express 2019, 6 (5), 055404.
  • Zdorovets, M.V.; Kozlovskiy, A.L. Argon ion Irradiation Effect on Zn Nanotubes. J. Mater. Sci.: Mater. Electron. 2018, 29 (5), 3621–3630.
  • Dauletbekova, A.; Kozlovskyi, A.; Akilbekov, A.; Seitbayeva, A.; Alzhanova, A. Synthesis of ZnO Nanocrystals in a-SiO2/Si Ion Track Templates. Surf. Coat. Technol. 2018, 355, 11–15.
  • Kadyrzhanov, D.B.; Zdorovets, M.V.; Kozlovskiy, A.L.; Kenzhina, I.E.; Petrov, A.V. Modification of Structural and Conductive Properties of Zn Nanotubes by Irradiation with Electrons with an Energy of 5 MeV. Mater. Res. Express 2017, 4 (12), 125023.
  • Hessien, M.; Da’na, E.; AL-Amer, K.; Khalaf, M.M. Nano ZnO (Hexagonal Wurtzite) of Different Shapes Under Various Conditions: Fabrication and Characterization. Mater. Res. Express 2019, 6 (8), 085057.
  • Ibragimova, M.A.; Kozlovskiy, A.L.; Kenzhina, I.E.; Zdorovets, M.V. Influence of the Applied Potentials Difference on Structural and Conductive Properties of CoZnO Nanotubes. Mater. Res. Express 2018, 5 (4), 045010.
  • Zdorovets, M.V.; Kadyrzhanov, D.B.; Kenzhina, I.E.; Ivanov, I.A.; Kozlovskiy, A.L. Study of Irradiation Effect of Xe+22 and Kr+14 Ions on Structural Properties of Zn Nanotubes. J. Phys.: Condens. Matter 2018, 30 (12), 125301.
  • Kozlovskiy, A.; Kenzhina, I.; Zdorovets, M.; Petrov, A.; Kadyrzhanov, K. Effect of Irradiation with C2+ and O2+ Ions on the Structural and Conductive Characteristics of Copper Nanostructures. Mater. Res. Express 2019, 6 (7), 075072.
  • Gladkikh, T.; Kozlovskiy, A.; Kenzhina, I.; Dukenbayev, K.; Zdorovets, M. Changes in Optical and Structural Properties of AlN After Irradiation with C2+ Ions of 40 keV. Vacuum 2019, 161, 103–110.
  • Dukenbayev, K.; Kozlovskiy, A.; Korolkov, I.; Zdorovets, M. Investigation of Radiation Resistance of AlN Ceramics. Vacuum 2019, 159, 144–151.
  • Kozlovskiy, A.; Kenzhina, I.; Zdorovets, M. Synthesis, Phase Composition and Magnetic Properties of Double Perovskites of A (FeM) O4-x type (A=Ce; M=Ti). Ceram. Int. 2019, 45 (7), 8669–8676.

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