硼硅酸盐玻璃中金属纳米颗粒的合成方法及研究进展
Research Progress and Synthesis of Metal Nanoparticles in Borosilicate Glass
DOI: 10.12677/OJNS.2021.91010, PDF,    科研立项经费支持
作者: 陈 慧, 盛嘉伟*:浙江工业大学,材料科学与工程学院,浙江 杭州;浙江工业大学,温州科学技术研究院,浙江 温州;孙 青, 张 俭:浙江工业大学,材料科学与工程学院,浙江 杭州;严 俊:浙江工业大学,温州科学技术研究院,浙江 温州
关键词: 硼硅酸盐玻璃金属纳米颗粒合成方法发展趋势Borosilicate Glass Metal Nanoparticles Formation Development Trend
摘要: 金属纳米颗粒玻璃复合材料具有优越的非线性光学特性和与光通讯器件有良好的相容性等特点,在光电子技术、信息、催化、能源和生物等领域有广泛的应用前景。本文综述了在硼硅酸盐玻璃中合成金属纳米颗粒的方法及研究进展,并对今后金属纳米颗粒硼硅酸盐玻璃复合材料的发展方向和突破点进行了展望。
Abstract: Metallic nanoparticle glass composites have excellent nonlinear optical properties and good compatibility with optical communication devices. They have a wide range of applications in optoelectronic technology, information, catalysis, energy and biology. In this paper, the methods and research progress of synthesizing metal nanoparticles in borosilicate glass were reviewed, and the development direction and breakthrough point of metal nanoparticles borosilicate glass composites in the future were prospected.
文章引用:陈慧, 孙青, 张俭, 严俊, 盛嘉伟. 硼硅酸盐玻璃中金属纳米颗粒的合成方法及研究进展[J]. 自然科学, 2021, 9(1): 72-78. https://doi.org/10.12677/OJNS.2021.91010

参考文献

[1] Shustova, O.V., Zhurikhina, V.V., Lipovskii, A.A. and Svirko, Y.P. (2016) Control of Glass-Metal Composite Optical Nonlinearity via Nanostructuring. Plasmonics, 11, 581-585. [Google Scholar] [CrossRef
[2] Han, L.Y., Yin, D.W., Xu, Q., Yang, X.Y., Gao, X.L., Lu, X., et al. (2016) Study on the Highly Transmitted Ag-In2O3/Glass Nanocomposite Material: Fabrication, Microstructure and Nonlinear Absorption Effects. Journal of Physics D: Applied Physics, 49, Article ID: 445307. [Google Scholar] [CrossRef
[3] Zhang, B., Sato, R., Oyo-shi, K., Mamiya, H., Ohnuma, M. and Takeda, Y. (2019) Dispersion of Third-Order Susceptibility of Au Nanoparticles Fabricated by Ion Implantation. Nuclear Instruments & Methods in Physics Research. Section B, Beam Interactions with Materials and Atoms, 447, 38-42. [Google Scholar] [CrossRef
[4] Mota-Santiago, P., Cre-spo-Sosa, A., Jiménez-Hernández, J., Silva-Pereyra, H.-G., Reyes-Esqueda, J.-A. and Oliver, A. (2012) Size Character-isation of Noble-Metal Nano-Crystals Formed in Sapphire by Ion Irradiation and Subsequent Thermal Annealing. Ap-plied Surface Science, 259, 574-581. [Google Scholar] [CrossRef
[5] Won-in, K. and Dararutana P. (2012) Soda-Based Glass Fabricated from Thailand Quartz Sands Doped with Silver Compound. Optical Materials, 34, 2108-2111. [Google Scholar] [CrossRef
[6] Zhang, J. and Xiang, W. (2017) Sol-Gel Syn-thesis and Third-Order Nonlinear Optical Properties of Cu3.8Ni Nanoparticles Doped Glass. Journal of Non-Crystalline Solids, 462, 17-22. [Google Scholar] [CrossRef
[7] Viswambari, D.R., Doble, M. and Ver-ma, R.S. (2015) Nanomaterials for Early Detection of Cancer Biomarker with Special Emphasis on Gold Nanoparticles in Immunoassays/Sensors. Biosensors and Bioelectronics, 68, 688-698. [Google Scholar] [CrossRef] [PubMed]
[8] Bai, S., Li, Q., Zhang, H., Chen, X.X., Luo, S., Gong, H.M., et al. (2015) Large Third-Order Nonlinear Refractive Index Coefficient Based on Gold Nanoparticle Aggregate Films. Applied Physics Letters, 107, Article ID: 141111. [Google Scholar] [CrossRef
[9] Lakshminarayana, P., Venkatram, N., Ji, W. and Xu, Q.-H. (2009) Opti-cal-Limiting Properties of Oleylamine-Capped Gold Nanoparticles for both Femtosecond and Nanosecond Laser Pulses. ACS Applied Materials & Interfaces, 10, 2298-2303. [Google Scholar] [CrossRef] [PubMed]
[10] Husinsky, W., Aja-mi, A., Nekvindova, P., Svecova, B., Pesicka, J. and Janecek, M. (2012) Z-Scan Study of Nonlinear Absorption of Gold Nano-Particles Prepared by Ion Implantation in Various Types of Silicate Glasses. Optics Communications, 285, 2729-2733. [Google Scholar] [CrossRef
[11] Dousti, M.R. (2014) Plasmonic Effect of Silver Nanoparticles on the Upconversion Emissions of Sm3+-Doped Sodium-Borosilicate Glass. Measurement, 56, 117-120. [Google Scholar] [CrossRef
[12] Lin, G., Pan, H., Qiu, J. and Zhao, Q.Z. (2011) Nonlinear Optical Properties of Lead Nanocrystals Embedding Glass Induced by Thermal Treatment and Femtosecond Laser Irradi-ation. Chemical Physics Letters, 516, 186-191. [Google Scholar] [CrossRef
[13] Zhang, J. and Sheng, J.W. (2015) Copper Quantum Dots For-mation in a Borosilicate Glass. Journal of Nano Research, 32, 66-70. [Google Scholar] [CrossRef
[14] Zhang, J. and Sheng, J.W. (2009) Formation and Optical Properties of Copper Nanoclusters in a Silicate Glass. International Journal of Hydrogen Energy, 34, 3531-3534. [Google Scholar] [CrossRef
[15] Wang, Q.Q., Han, J.B., Gong, H.M., Chen, D.-J., Zhao, X.-J., Feng, J.-Y. and Ren, J.-J. (2006) Linear and Nonlinear Optical Properties of Ag Nanowire Polarizing Glass. Advanced Functional Materials, 16, 2405-2408. [Google Scholar] [CrossRef
[16] Malinský, P., Macková, A., Bočan, J., Švecová, B. and Nekvindová, P. (2009) Au Implantation into Various Types of Silicate Glasses. Nuclear Instruments & Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 267, 1575-1578. [Google Scholar] [CrossRef
[17] Svecova, B., Pavla, N., Stanislan, S., Vytykacova, S., Mackova, A., Malinsky, P., et al. (2016) The Effect of Various Silicate-Glass Matrixes on Gold-Nanoparticle Formation. Ceram-ics-Silikáty, 61, 52-58. [Google Scholar] [CrossRef
[18] Gao, H., Xiang, W., Ma, X., Ma, L., Huang, Y., Ni, H., et al. (2015) Sol-Gel Synthesis and Third-Order Optical Nonlinearity of Au Nanoparticles Doped Monolithic Glass. Gold Bulletin, 48, 153-159. [Google Scholar] [CrossRef
[19] Xiang, W., Gao, H., Ma, L., Ma, X., Huang, Y., Pei, L., et al. (2015) Valence State Control and Third-Order Nonlinear Optical Properties of Copper Embedded in Sodium Borosilicate Glass. ACS Applied Materials & Interfaces, 7, 10162-10168. [Google Scholar] [CrossRef] [PubMed]
[20] Liu, M., Zhong, J., Ma, X., Huang. Y. and Xiang, W. (2019) Sodium Borosilicate Glass Doped with Ni Nanoparticles: Structure, Formation Mechanism and Nonlinear Optical Properties. Journal of Non-Crystalline Solids, 522, Article ID: 119560. [Google Scholar] [CrossRef
[21] Huang, Y., Xiang, W., Lin, S., Cao, R., Zhang, Y., Zhong, J., et al. (2017) The Synthesis of Bimetallic Gold Plus Nickel Nanoparticles Dispersed in a Glass Host and Behav-ior-Enhanced Optical Nonlinearities. Journal of Non-Crystalline Solids, 459, 142-149. [Google Scholar] [CrossRef
[22] Zhang, Y., Jin, Y., He, M., Zhou, L., Xu, T., Yuan, R., et al. (2018) Optical Properties of Bimetallic Au-Cu Nanocrystals Embedded in Glass. Materials Research Bulletin, 98, 94-102. [Google Scholar] [CrossRef
[23] Huang, Y., Xiang, W., Yang, R., Yan, L. and Liang, X. (2017) Sol-Gel Derived Glass Nanocomposites Embedded with Phase-Controlled Cu-Ni Nanostructures and Their Opti-cal Nonlinearities. Materials Letters, 189, 184-187. [Google Scholar] [CrossRef
[24] Teng, Y., Zhou, J., Luo, F., Lin, G. and Qiu, J. (2011) Control-lable Space Selective Precipitation of Copper Nanoparticles in Borosilicate Glasses Using Ultrafast Laser Irradiation. Journal of Non-Crystalline Solids, 357, 2380-2383. [Google Scholar] [CrossRef
[25] Sheng, J.W., Chen, S., Zhang, J., Li, J. and Yu, J. (2009) UV-Light Irradiation Induced Copper Nanoclusters in a Silicate Glass. International Journal of Hydrogen Energy, 34, 1119-1122. [Google Scholar] [CrossRef
[26] 洪俊, 聂秋华, 王公平, 等. 金银纳米颗粒的制备和表征及其掺杂玻璃三阶非线性研究进展[J]. 武汉理工大学学报, 2007, 29(E01): 61-67.
[27] Almeida, J.M.P., De Boni, L., Avansi, W., Ribeiro, C., Longo, E., Hernandes, A.C. and Mendonca, C.R. (2012) Generation of Copper Nanoparticles Induced by fs-Laser Irradiation in Borosilicate Glass. Optics Express, 20, 15106-15113. [Google Scholar] [CrossRef
[28] Dai, Y., Yu, G., He, M., Yan, X. and Ma, G. (2011) High Repetition Rate Femtosecond Laser Irradiation-Induced Elements Redistribution in Ag-Doped Glass. Applied Physics B, 103, 663-667. [Google Scholar] [CrossRef
[29] Teng, Y., Qian, B., Jiang, N., Liu, Y., Luo, F., Ye, S., et al. (2010) Light and Heat Driven Precipitation of Copper Nanoparticles Inside Cu2+-Doped Borate Glasses. Chemical Phys-ics Letters, 485, 91-94. [Google Scholar] [CrossRef
[30] Abdel Wahab, E., Koubisy, M., Sayyed, M., Mahmoud, K.A., Zatsepin, A.F., Makhlouf, S.A., et al. (2020) Novel Borosilicate Glass System: Na2B4O7-SiO2-MnO2: Synthesis, Aver-age Electronics Polarizability, Optical Basicity, and Gamma-Ray Shielding Features. Journal of Non-Crystalline Solids, Article ID: 120509. [Google Scholar] [CrossRef
[31] Mhareb, M.H.A., Alajerami, Y.S.M., Sayyed, M.I., Dwai-kat, N., Alqahtani, M., Alshahri, F., et al. (2020) Radiation Shielding, Structural, Physical, and Optical Properties for a Series of Borosilicate Glass. Journal of Non-Crystalline Solids, 550, Article ID: 120360. [Google Scholar] [CrossRef
[32] 陈慧, 孙青, 张俭, 等. 高硼硅玻璃材料结构及性能研究进展[J]. 自然科学, 2020, 8(6): 603-610. [Google Scholar] [CrossRef