Have a personal or library account? Click to login
Fabrication of Si nanopowder and application to hydrogen generation and photoluminescent material Cover

Fabrication of Si nanopowder and application to hydrogen generation and photoluminescent material

Open Access
|Dec 2017

References

  1. [1] F. Erogbogbo, T. Lin, P. M. Tucciarone, K. M. Lajoie, L. Lai, G. D. Patki, P. N. Prasad and M. T. Swihart, “On-Demand Hydrogen Generation using Nanosilicaon, Splitting Water without Light, Heat, or Electricity”, Nano Lett. 13, (2013) 451-456.10.1021/nl304680w
  2. [2] G. Conibeer, Applications of Si Nanoparticles Photovoltaic Solar Cells Silicon Nanocrystals, PAVESI, L. TURAN, R. ed., Silicon Nanocrytals. Weinheim”, Wiley-VCH Verlag GmbH & Co.KGaA; 2010.p.555-561.10.1002/9783527629954.ch20
  3. [3] S. Yang, W. Li, B. Cao, H. Zeng and W. Cai, “Origin of Blue Emission from Silicon Nanoparticles”, Direct Transition and Interface Recombination, J.Phys Chem.C 115, (2011) 21056-21062.10.1021/jp2075836
  4. [4] L. Mangolini, “Synthesis, Properties, and Applicaion of Silicon Nanocrystals”, J.Vac.Sci.Technol. B31 (2013) 020801-1-29.10.1116/1.4794789
  5. [5] O. Gusev, A. N. Poddubny, A. A. Prokofiev and I. N. Yassievich, “Light Emission from Silicon Nanocrystals”, Semiconductors 47 (2013) 183-202.10.1134/S1063782613020103
  6. [6] W. T. Leach, J.-H. Zhu and J. G. Ekerdt, “Thermal Desorption Effects Chemical Vapor Deposition of Silicon Nanoparticles”, J.Crystal Growth 243 (2002) 30-40.10.1016/S0022-0248(02)01472-0
  7. [7] K. Watanabe, K. Sawada, M. Koshiba, M. Fujii and S. Hayashi, “Photoluminescence Decay-Dynamics of Si Nanoparticles Prepared by Pulsed Laser Ablation”, Appl.Surf.Sci. 197-198 (2002) 635-638.10.1016/S0169-4332(02)00431-2
  8. [8] S.-M. Liu, M. SATO, S. Kobayashi and K. Kimura, “Synthesis of Silicon Nanowires and Nanoparticles by Arc-Discharge Water”, Chem.Commun.(2005) 4690-4692.10.1039/b506995e16175294
  9. [9] D. Arquier, G. Calleja, G. Cerveau and R. J. P. Corriu, “A New Solution Route for the Synthesis of Silicon Nanoparticles Presenting Different Surface Substituents”, C.R.Chimie 10 (2007) 795-802.10.1016/j.crci.2007.05.002
  10. [10] C.-S. Yang, R. A. Bley, S. M. Kauzlarich, H. W. H. Lee and G. R. Delgado, “Synthesis of Alkyl-Terminated Silicon Nanoclusters by a Solution Route”, Y J.Am.Chem.Soc., 121 (1999) 5191-5195.
  11. [11] M. Maeda, K. Imaura, T. Matsumoto and H. Kobayashi, “Fabrication of Si Nanoparticles from Si swarf and application to solar cells”, Appl.Surf.Sci. 312 (2014) 39-42.10.1016/j.apsusc.2014.02.131
  12. [12] K. Imamura, K. Kimura, S. Fujie and H. Kobauyashi, “Hydrogen Generation from Water Using Si Nanopowder Fabricated from Si Swarf”, J. Nanoparticle Research, 18 (2016) 116-1-7.
  13. [13] K. Kimura, T. Matsumoto and H. Kobayashi, to be submitted.
  14. [14] T. Matsumoto, M. Maeda and H. Kobayashi, “Photoluminescence Enhancement of Adsorbed Species on Si, Nanoscale”, Res.Lett. 11 (2016) 7-1-6.
  15. [15] T. Matsumoto, M. Maeda, J. Furukawa, W.-B. Kim and H. Kobayashi, “Si Nanoparticles fabricated from Si swarf by Photochemical Etching Method Matsumoto” J.Nanopart.Res., 16, (2014) 2240-1-7.10.1007/s11051-013-2240-y
  16. [16] T. Sun, E. Liu, X. Liang, X. Hu and J. Fan, “Enhanced Hydrogen Evolution from Water Splitting Using Fe-Ni Codoped and Ag Deposited Anatase TiO2 Synthesized by Solvothermal Method”, J.Appl.Surf.Sci. 347 (2015) 696-703.10.1016/j.apsusc.2015.04.162
  17. [17] M. Y. Xie, K. Y. Su, R. J. Peng-wu, M. Chaveli and W. C. Chang, “Hydrogen Production by Photocatalytic Water-Splitting on Pt-Doped TiO2-ZnO under Visible Light”, Taiwan Inst. Chem. Eng., 70 (2017) 161-167.10.1016/j.jtice.2016.10.034
  18. [18] X. Liu, L. Zhao, K. Domen and K. Takanabe, “Photocatalytic Hydrogen Production Using Visible-Light-Responsive Ta3N5 Photocatalyst Supported on Monodisperse Spherical SiO2 Particles”, Mater.Res.Bull. 49 (2014) 58-65.10.1016/j.materresbull.2013.08.069
  19. [19] S. Litvinenko, S. Alekseev, V. Lysenko, A. Venturello, F. Geobaldo, L. Gulina, G. Kuznetsov, V. Tolstoy, V. Skryshevsky, E. Garrone and BARBIER, “Hydrogen Production from Nano-Porous Si Powder Formed by Stain Etching”, Inter. J. Hyd. Ener., 35 (2010) 6773-6778.
  20. [20] C. Zhan, P. K. Chu, D. Ren, Y. Xin, K. Huo, Y. Zou and N. K. Huang, “Release of Hydrogen during Transformation from Porous Silicon to Silicon Oxide at Normal Temperature”, Inter.J.Hyd.Ener. 36 (2011) 4513-4517.10.1016/j.ijhydene.2011.01.003
  21. [21] C. P. Maurizi, “Alzheimer’s Disease”, oles for Mitochondrial Damage, the Hydroxyl Radical, and Cerebrospinal Fluid Deficiency of Melatonin”, Med.Hypotheses. 57 (2001) 156-160.10.1054/mehy.2001.1324
  22. [22] Y. Ihara, M. Chuda, S. Kuroda and T. Hayabata, “Hydroxyl Radical and Superoxide Dismutase Blood of Patients with Parkinson’s Disease: Relationship to Clinical Data”, J. Neurol. Sci. 170 (1999) 90-95.
  23. [23] D. Charvin, P. Vanhoutte, C. Pages and E. CABOCHE. J. Borrelli, “Unraveling a Role for Dopamine Huntington’s Disease: The Dual Role of Reactive Oxygen Species and D2 Receptor Simulation”, J.Proc.Natl.Acad.Sci. 102 (2005) 12218-12223.10.1073/pnas.0502698102
  24. [24] Z. Kang, Y. Liu and S.-T Lee, “Small-sized Silicon Nanoparticles”, New Nanolights and Nanocatalysts, 3, (2011) 777-791.10.1039/C0NR00559B
  25. [25] Y. Zhu, H. Wang and P. P. Ong, “Evidence of Photoluminescence Related to Subsurface Si-O-Si Bonds Sputtered Silicon Nanoparticles”, Solid State Commun. 116 (2000) 427-429.10.1016/S0038-1098(00)00355-0
  26. [26] M. Inada, H. Nakagawa, I. Umezu and A. Sugimura, “Effect of Hydrogenation on Photoluminescnence of Si Nanoparticles Formed by Pulsed Laser Ablation”, Mater.Sci.Eng. B101 (2003) 283-285.10.1016/S0921-5107(02)00702-X
  27. [27] T. Matsumoto, M. Maeda and H. Kobayashi, “Photoluminescence Enhancement of Adsorbed Species on SI”, Nanoscale Res. Lett., 11 (2016) 7-1-6.
  28. [28] Y. V. Ryabchikov, S. A. Alekseev, V. Lysenko, G. Bremond and J. M. Bluet, “Photoluminescence of Silicon Nanoparticles Chemically Modified by Alkyl Groups and Dispersed Low-Polar Liquids”, J.Nanopart.Res. 15 (2013) 1535-1-9.10.1007/s11051-013-1535-3
  29. [29] F. J. Himpsel, F. R. Mcfeely, A. YARMOFF, J. A. Taleb-Ibrahimi and G. Hollinger, “Microscopic Structure of the SiO2 /Si Interface”, Phys.Rev. B 38 (1988) 6084-6096.10.1103/PhysRevB.38.6084
  30. [30] H. Kobayashi, T. Ishida, Y. Nakato and H. Tsubomura, “Mechanism of Carrier Transport Highly Efficient Solar Cells Having Indium Tin Oxide/Si Junctions”, J.Appl.Phys. 69 (1991) 1736-1743.10.1063/1.347220
  31. [31] O. Renault, R. Marlier, N. T. Barrett, E. Martinez, T. Baron, M. Gely and B. D. Saivo, “Modeling the XPS Si 2p Core-Level Intensities of Silicon Nanocrystals for Determination of Oxide Shell Thickness”, Surf.Interface Anal. 38 (2006) 486-488.10.1002/sia.2223
  32. [32] H. Kobayashi, O. Asuha-maeda, T. Takahashi and H. Iwasa, “Nitiric Acid Oxidation of Si to Form Ultrathin Silicon Dioxide Layers with a Low Leakage Current Density”, J.Appl.Phys. 94 (2003) 7328-7335.10.1063/1.1621720
  33. [33] M. F. Hochella Jr. and A. H. Carim, “A Reassessment of Electron Escape Depths Silicon and Thermally Grown Silicon Dioxide Thin Films”, Surf.Sci. 197 (1988) L260-L268.10.1016/0039-6028(88)90625-5
  34. [34] B. E. Deal and A. S. Grove, “General Relationship for the Thermal Oxidation of Silicon”, J.Appl.Phys. 36 (1965) 3770-3778.10.1063/1.1713945
  35. [35] D. D. Eley and P. R. Wilkinson, “Adsorption and Oxide Formation on Aluminum Films”, Proc.R.Soc.London A 254 (1960) 327-342.10.1098/rspa.1960.0023
  36. [36] S. Azuma and S. Sato, “Size Regulation of Si Nanoparticles through Photon-Enhanced Chemical Etching”, Chem.Lett. 40 (2011) 1294-1296.10.1246/cl.2011.1294
  37. [37] J. D. Holmes, K. J. Ziegler, R. C. Doty, L. E. Pell, K. P. Johnston and B. A. Korgel, “Highly Luminescent Silicon Nanocrystals with Discrete Optical Transitions”, J.Am.Chem.Soc. 123 (2001) 3743-3748.10.1021/ja002956f11457106
  38. [38] K. Ohno, “Simple Calculations of Franck-Condon Factors for Electronic Transition Bands of Polyacenes”, Chem.Phys.Lett. 53 (1978) 571-577.10.1016/0009-2614(78)80072-4
DOI: https://doi.org/10.1515/jee-2017-0050 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 17 - 23
Submitted on: Apr 23, 2017
|
Published on: Dec 29, 2017
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2017 Yuki Kobayashi, Kentaro Imamura, Taketoshi Matsumoto, Hikaru Kobayashi, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.