钛酸锶钡纳米颗粒的粒径调控和分散性改善研究
Grain Size Regulation and Dispersion Improvement of Barium Strontium Tiatanate Nanaopowder
DOI: 10.12677/MS.2017.73053, PDF, HTML, XML,  被引量 下载: 1,707  浏览: 3,906  国家自然科学基金支持
作者: 邓梦杰, 夏晓红:湖北大学材料科学与工程学院,湖北 武汉
关键词: 钛酸锶钡油酸粒径分散性Barium Strontium Titanate Oleic Acid Particle Size Dispersibility
摘要: 本文用水热法制备了钛酸锶钡纳米颗粒,研究了分散剂的添加对粉末粒径的调控及分散性能的影响,分析了退火处理对最终产物分散性能的影响。研究表明:通过添加油酸为分散剂能有效减小钛酸锶钡粉末的晶粒尺寸,当油酸量为0.5 ml时,粉末粒径最小,大约15~25 nm。退火处理后,钛酸锶钡纳米颗粒的分散性得到明显改善。
Abstract: Barium strontium titanate nanopowder was synthesized by hydrothermal method. The function of dispersant on the particle size regulation and the improvement of powder agglomeration were studied. Effect of annealing on the dispersion of the nanopowder was also investigated. The results turned out that the addition of oleic acid could effectively decrease the particle size of Barium strontium titanate powder, and the smallest particle size could be achieved with the addition of 0.5 ml oleic acid which is about 15 - 25 nm. The dispersibility of the powder was obviously improved by post annealing of the hydrothermal synthesized powder, while the particle size was kept unchanged.
文章引用:邓梦杰, 夏晓红. 钛酸锶钡纳米颗粒的粒径调控和分散性改善研究[J]. 材料科学, 2017, 7(3): 395-402. https://doi.org/10.12677/MS.2017.73053

参考文献

[1] Zhuang, H.R., Yang, J.A., Li, Y.H., Gan, X.P., Zhang, D. and Zhou, K.C. (2012) Preparation and Dielectric Properties of Barium Strontium Tianate Ceramic. Materials Science and Engineering of Powder Metallurgy, 17, 650-656.
[2] Zhao, C., Huang, X.Y., Gao, H. and Gao, C.H. (2007) Effect of Y2O3 and Dy2O3 on Dielectric Properties of Ba0.7Sr0.3TiO3 Series Capacitor Ceramics. Journal of Rare Earths, 25, 197-200.
[3] Hu, T., Jantunen, H. and Uusimaki, A. (2002) Ba0.7Sr0.3TiO3 Powders with B2O3 Additive Prepared by the Sol-Gel Method for Use as Micro-wave Material. Materials Science in Semiconductor Processing, 5, 215-221.
[4] Ioachim, A., Toacsan, M., Banciu, M., Nedelcu, L., Vasiliu, F., Alexandru, H., Berbecaru, C. and Stoica, G. (2007) Barium Strontium Titanate-Based Perovskite Materials for Microwave Applications. Progress in Solid State Chemistry, 35, 513-520.
[5] Jeon, J. (2004) Effect of SrTiO3 Concentration and Sintering Temperature on Microstructure and Dielectric Constant of Ba1−xSrxTiO3. Journal of the European Ceramic Society, 24, 1045-1048.
[6] Wu, G., Li, P., Xu, D., Luo, B., Hong, Y., Shi, W. and Liu, C. (2015) Hydrothermal Synthesis and Visible-Light-Dri- ven Photocatalytic Degradation for Tetracycline of Mn-Doped SrTiO3 Nanocubes. Applied Surface Science, 333, 39- 47.
[7] Che, H., Chen, J., Huang, K., Hu, W., Hu, H., Liu, X., Che, G. and Li, C. (2016) Construction of SrTiO3/Bi2O3 Heterojunction towards to Improved Separation Efficiency of Charge Carriers and Photocatalytic Activity under Visible Light. Journal of Alloys and Compounds, 688, 882-890.
[8] He, G.-L., Zhong, Y.-H., Chen, M.-J., Li, X., Fang, Y.-P. and Xu, Y.-H. (2016) One-Pot Hydrothermal Synthesis of SrTiO3-Reduced Grapheme Oxide Composites with Enhanced Photocatalytic Activity for Hydrogen Pro-duction. Journal of Molecular Catalysis A: Chemical, 423, 70-76.
[9] Yu, K., Zhang, C., Chang, Y., Feng, Y., Yang, Z., Yang, T., Lou, L.-L. and Liu, S. (2017) Novel Three-Dimensionally Ordered Macroporous SrTiO3 Photocatalysts with Remarkably Enhanced Hydrogen Production Performance. Applied Catalysis B, 200, 514-520.
[10] Xiao, C.J., Lei, C.Q. and Zou, W.J. (2007) New Sintering Method and Novel Characteristics of Nanocrystalline BaTiO3 Ceramics. Materials Review, 21, 11-13.
[11] Xiao, S.H., Jiang, W.F., Luo, K., Xia, J.H. and Zhang, L. (2011) Structure and Fer-roelectric Properties of Barium Titanate Films Synthesised by Sol-Gel Method. Materials Chemistry and Physics, 127, 420-425.
[12] Simões, A.Z., Moura, F., Onofre, T.B., Ramirez, M.A., Varela, J.A. and Longo, E. (2010) Micro-wave-Hydrothermal Synthesis of Barium Strontium Titanate Nanoparticles. Journal of Alloys and Compounds, 508, 620 -624.
[13] Li, J., Jin, D., Zhou, L. and Cheng, J. (2012) Dielectric Properties of Barium Strontium Titanate (BST) Ceramics Synthesised by Using Mixed-Phase Powders Calcined at Varied Temperatures. Materials Letters, 76, 100-102.
[14] Qian, G.R., Sun, D.D., Tay, J.H. and Lai, Z.Y. (2002) Hydrothermal React Ion and Autoclave Stability of Mg Bearing RO Phase in Steel Slag. Advances in Applied Ceramics, 101, 159-164.
[15] Milestone, N.B. and Ahari, G.K. (2007) Hydrothermal Processing of Xonotlite Based Compositions. Advances in Applied Ceramics, 106, 302-307.
https://doi.org/10.1179/174367607X228124
[16] Dong, D., Liu, X.B., Yu, H.X. and Hu, W.C. (2011) Fabrication of Highly Dispersed Crystallized Nanoparticles of Barium Strontium Titanate in the Presence of N,N-Dimethylacetamide. Ceramics International, 37, 579-583.