Tài liệu tham khảo |
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Chi tiết |
[1] Anand, V. and V. C. Srivastava, “Zinc oxide nanoparticles synthesis by electrochemical method: Optimization of parameters for maximization of productivity and characterization,” J. Alloys Compd., vol. 636, pp. 282–292, 2015 |
Sách, tạp chí |
Tiêu đề: |
Zinc oxide nanoparticles synthesis by electrochemical method: Optimization of parameters for maximization of productivity and characterization,” "J. Alloys Compd |
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[2] Anh, V., L. Anh, T. Quang, V. Ngoc, and N. Van Quy, “Enhanced NH 3 gas sensing properties of a QCM sensor by increasing the length of vertically orientated ZnO nanorods,” Appl. Surf. Sci., vol. 265, pp. 458–464, 2013 |
Sách, tạp chí |
Tiêu đề: |
Enhanced NH 3 gas sensing properties of a QCM sensor by increasing the length of vertically orientated ZnO nanorods,” "Appl. Surf. Sci |
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[3] Baruah, S., & Dutta, J., “Hydrothermal growth of ZnO nanostructures,” Sci. Technol. Adv. Mater., vol. 10, no. 1, pp. 013001, 2009 |
Sách, tạp chí |
Tiêu đề: |
Hydrothermal growth of ZnO nanostructures,” "Sci. "Technol. Adv. Mater |
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[4] Bharti, D. B., & Bharati, A. V., “Synthesis of ZnO nanoparticles using a hydrothermal method and a study its optical activity,” Luminescence, vol |
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Tiêu đề: |
Synthesis of ZnO nanoparticles using a hydrothermal method and a study its optical activity,” "Luminescence |
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[5] Chen, C. H., S. J. Chang, S. P. Chang, M. J. Li, I. C. Chen, T. J. Hsueh, and C. L. Hsu, “Electroluminescence from n-ZnO nanowires/p-GaN heterostructure light-emitting diodes,” Appl. Phys. Lett., vol. 95, no. 22, pp.223101, 2009 |
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Tiêu đề: |
Electroluminescence from n-ZnO nanowires/p-GaN heterostructure light-emitting diodes,” "Appl. Phys. Lett |
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[6] Chen, D., X. Jiao, and G. Cheng, “Hydrothermal synthesis of zinc oxide powders with different morphologies,” Solid State Commun., vol. 113(6), pp.363–366, 2000 |
Sách, tạp chí |
Tiêu đề: |
Hydrothermal synthesis of zinc oxide powders with different morphologies,” "Solid State Commun |
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[7] Choo, T. F., N. U. Saidin, and K. Y. Kok, “Hydrogen sensing enhancement of zinc oxide nanorods via voltage biasing,” R. Soc. Open Sci., vol. 5, no. 5, pp.172372, 2018 |
Sách, tạp chí |
Tiêu đề: |
Hydrogen sensing enhancement of zinc oxide nanorods via voltage biasing,” "R. Soc. Open Sci |
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[8] Danks, A. E., S. R. Hall, and Z. Schnepp, “the evolution of „sol-gel‟ chemistry as a technique for materials synthesis,” Mater. Horizons, vol. 3, pp.91–112, 2016 |
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Tiêu đề: |
the evolution of „sol-gel‟ chemistry as a technique for materials synthesis,” "Mater. Horizons |
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[9] Dem‟yanets, L. N., L. E. Li, and T. G. Uvarova, “Zinc oxide: Hydrothermal growth of nano- and bulk crystals and their luminescent properties,” J. Mater.Sci., vol. 41, no. 5, pp. 1439–1444, 2006 |
Sách, tạp chí |
Tiêu đề: |
Zinc oxide: Hydrothermal growth of nano- and bulk crystals and their luminescent properties,” "J. Mater. "Sci |
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[10] Duoc, V. T., D. Thi, T. Le, N. D. Hoa, and N. Van Duy, “New Design of ZnO Nanorod- and Nanowire-Based NO 2 Room-Temperature Sensors Prepared by Hydrothermal Method,” pp. 1–9, 2019 |
Sách, tạp chí |
Tiêu đề: |
New Design of ZnO Nanorod- and Nanowire-Based NO 2 Room-Temperature Sensors Prepared by Hydrothermal Method |
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[11] Gupta, A. K., V. Kashyap, B. K. Gupta, S. P. Nandi, K. Saxena, and N. Khare, “Synthesis of ZnO Nanorods by Electrochemical,” vol. 3, pp. 348–352, 2013 |
Sách, tạp chí |
Tiêu đề: |
Synthesis of ZnO Nanorods by Electrochemical |
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[12] Hadis Morkoỗ, ĩ. ệ., Zinc Oxide: Fundamentals, Materials and Device Technology, WILEY-VCH, 2009 |
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Tiêu đề: |
Zinc Oxide: Fundamentals, Materials and Device Technology |
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[13] Hasnidawani, J. N., H. N. Azlina, H. Norita, and N. N. Bonnia, “Synthesis of ZnO Nanostructures Using Sol-Gel Method,” Procedia Chem., vol. 19, pp.211–216, 2016 |
Sách, tạp chí |
Tiêu đề: |
Synthesis of ZnO Nanostructures Using Sol-Gel Method,” "Procedia Chem |
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[14] Hayashi, H. and Y. Hakuta, “Hydrothermal Synthesis of Metal Oxide Nanoparticles in Supercritical Water,” Materials (Basel)., vol. 3(7), pp. 3794–3817, 2010 |
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Tiêu đề: |
Hydrothermal Synthesis of Metal Oxide Nanoparticles in Supercritical Water,” "Materials (Basel) |
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[15] Hong, H. and G. Chung, “Controllable growth of oriented ZnO nanorods using Ga-doped seed layers and surface acoustic wave humidity sensor,”Sensors Actuators B. Chem., vol. 195, pp. 446–451, 2014 |
Sách, tạp chí |
Tiêu đề: |
Controllable growth of oriented ZnO nanorods using Ga-doped seed layers and surface acoustic wave humidity sensor,” "Sensors Actuators B. Chem |
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[16] Jang, J., S. Kim, H. Choi, J. Kim, and W. Jung, “Morphology change of self- assembled ZnO 3D nanostructures with different pH in the simple hydrothermal process,” Mater. Chem. Phys., vol. 113(1), pp. 389–394, 2009 |
Sách, tạp chí |
Tiêu đề: |
Morphology change of self-assembled ZnO 3D nanostructures with different pH in the simple hydrothermal process,” "Mater. Chem. Phys |
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[17] Jiang, J., J. Pi, and J. Cai, “The Advancing of Zinc Oxide Nanoparticles for Biomedical Applications,” Bioinorg. Chem. Appl., vol. 2018, pp. 1–18, 2018 |
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Tiêu đề: |
The Advancing of Zinc Oxide Nanoparticles for Biomedical Applications,” "Bioinorg. Chem. Appl |
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[18] Lee, M. W., M. H. Lai, A. Tubtimtae, and G. J. Wang, “ZnO-nanorod dye- sensitized solar cells: New structure without a transparent conducting oxide layer,” Int. J. Photoenergy, vol. 2010, pp. 1–5, 2010 |
Sách, tạp chí |
Tiêu đề: |
ZnO-nanorod dye-sensitized solar cells: New structure without a transparent conducting oxide layer,” "Int. J. Photoenergy |
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[19] Li, J., Wu, Z., Xu, Y., Pei, Y., & Wang, G., “Stability Analysis of Multi Process Parameters for Metal-Organic Chemical Vapor Deposition Reaction Cavity,” vol. 24, pp. 876, 2019 |
Sách, tạp chí |
Tiêu đề: |
Stability Analysis of Multi Process Parameters for Metal-Organic Chemical Vapor Deposition Reaction Cavity |
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[21] Marimuthu, T., N. Anandhan, and R. Thangamuthu, “Electrochemical synthesis of one-dimensional ZnO nanostructures on ZnO seed layer for DSSC applications,” Appl. Surf. Sci., vol. 428, pp. 385–394, 2018 |
Sách, tạp chí |
Tiêu đề: |
Electrochemical synthesis of one-dimensional ZnO nanostructures on ZnO seed layer for DSSC applications,” "Appl. Surf. Sci |
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