去合金化法制备纳米多孔钛及钛合金的研究进展(4)

来源:功能材料与器件学报 【在线投稿】 栏目:期刊导读 时间:2021-02-08
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摘要:[7] Huang Bensheng, Peng Hao, Chen Quan, et al. Preparation and characterization of porous copper by powder sintering method [J].Nonferrous Metals Engineering, 2018(1): 11-15(in Chinese). 黄本生, 彭

[7] Huang Bensheng, Peng Hao, Chen Quan, et al. Preparation and characterization of porous copper by powder sintering method [J].Nonferrous Metals Engineering, 2018(1): 11-15(in Chinese).

黄本生, 彭 昊, 陈 权, 等. 粉末烧结法制备多孔铜及其性能研究 [J]. 有色金属工程, 2018(1): 11-15.

[8] Balazic M, Kopac J, Jackson M J, et al. Review: titanium and titanium alloy applications in medicine [J]. International Journal of Nano and Biomaterials, 2007, 1(1): 3-34.

[9] Abdel-Hady M, Fuwa H, Hinoshita K, et al. Phase stability change with Zr content in β-type Ti-Nb alloys [J]. ScriptaMaterialia, 2007, 57(11): 1000-1003.

[10] Chen Y, Frith J E, Dehghan-Manshadi A, et al. Mechanical properties and biocompatibility of porous titanium scaffolds for bone tissue engineering [J]. Journal of the Mechanical Behavior of Biomedical Materials, 2017, 75: 169-174.

[11] Zhao D, Hao Q, Xu C. Nanoporous TiO2/Co3O4composite as an anode material for lithium-ion batteries [J]. Acta Electrochimica, 2016, 211: 83-91.

[12] Salimon A, Bréchet Y, Ashby M F, et al. Potential applications for steel and titanium metal foams [J]. Journal of Materials Science, 2005, 40(22): 5793-5799.

[13] Xiao Jian, Qiu Guibao. Research progress in preparation methods of titanium foams or porous titanium [J]. Rare Metal Materials and Engineering, 2017(6): 1734-1748(in Chinese).

肖 健, 邱贵宝. 泡沫或多孔钛的制备方法研究进展 [J]. 稀有金属材料与工程, 2017(6): 1734-1748.

[14] Nielsen L P, Besenbacher F, Stensgaard I, et al. "Dealloying" phase separation during growth of Au on Ni(110) [J]. Physical Review Letters, 1995, 74(7): 1159.

[15] Jayaraj J, Park B J, Kim D H, et al. Nanometer-sized porous Ti-based metallic glass [J]. Scripta Materialia, 2006, 55(11): 1063-1066.

[16] Jayaraj J, Park J M, Gostin P F, et al. Nano-porous surface states of Ti-Y-Al-Co phase separated metallic glass [J]. Intermetallics, 2009, 17(12): 1120-1123.

[17] Panagiotopoulos N T, Jorge A M, Rebai I, et al. Nanoporous titanium obtained from a spinodally decomposed Ti alloy [J]. Microporous & Mesoporous Materials, 2016, 222: 23-26.

[18] Fan Junpeng. The study of preparation and application about nano-porous silver and titanium [D]. Jinan: Shandong University, 2014(in Chinese).

樊军鹏. 纳米多孔银、钛材料的制备及应用研究 [D].济南: 山东大学, 2014.

[19] Zhao Yuanyuan, Yin Huiming, He Meifeng, et al. Fabrication of nanoporous PtTiCu electrocatalysts and their electrocatalytic oxidation performance [J]. Journal of Functional Materials, 2017, 48(4): 4066-4071(in Chinese).

赵圆圆, 印会鸣, 何美凤, 等. 纳米多孔PtTiCu催化剂的制备及其电化学性能的研究 [J]. 功能材料, 2017, 48(4): 4066-4071.

[20] Duan H, Hao Q, Xu C. Hierarchical nanoporous PtTi alloy as highly active and durable electrocatalyst toward oxygen reduction reaction [J]. Journal of Power Sources, 2015, 280: 483-490.

[21] Ding Y, Erlebacher J. Nanoporous metals with controlled multimodal pore size distribution [J]. Journal of the American Chemical Society, 2003, 125(26): 7772.

[22] Zhou Huan. Fabrication of Three-dimensional nanoporous titanium based composite films and their electrochemical properties [D].Hangzhou: Zhejiang University,2014(in Chinese).

周 环. 三维纳米多孔钛基复合膜的制备与电化学性能研究 [D].杭州: 浙江大学, 2014.

[23] Guo W, Kato H. Submicron-porous NiTi and NiTiNb shape memory alloys with high damping capacity fabricated by a new top-down process [J]. Materials & Design, 2015, 78: 74-79.

[24] Wang D, Yu Y, Zhu J, et al. Morphology and activity tuning of Cu3Pt/C ordered intermetallic nanoparticles by selective electrochemical dealloying [J]. Nano Letters, 2015, 15(2): 1343-1348.

[25] Li Yaning, Li Guangzhong, Zhang Wenyan, et al. Nanoporous Ti alloy foam prepared by dealloying [J]. Rare Metal Materials and Engineering, 2013, 42(10): 2197-2200(in Chinese).

李亚宁, 李广忠, 张文彦, 等. 脱合金法制备纳米多孔泡沫钛合金 [J]. 稀有金属材料与工程, 2013, 42(10): 2197-2200.

[26] Chen P C, Hsieh S J, Zou J, et dealloyed Ti/TiO2network nanostructures for supercapacitor application [J]. Materials Letters, 2014, 133(133): 175-178.

[27] Mccue I, Gaskey B, Geslin P A, et al. Kinetics and morphological evolution of liquid metal dealloying [J]. Acta Materialia, 2016, 115: 10-23.

[28] Kim J W, Tsuda M, Wada T, et al. Optimizing niobium dealloying with metallic melt to fabricate porous structure for electrolytic capacitors [J]. Acta Materialia, 2015, 84: 497-505.

[29] Wada T, Kato H. Three-dimensional open-cell macroporous iron, chromium and ferritic stainless steel [J]. Scripta Materialia, 2013, 68(9): 723-726.

[30] Harrison J D, Wagner C. The attack of solid alloys by liquid metals and salt melts [J]. Acta Metallurgica, 1959, 7(11): 722-735.

[31] Wada T, Yubuta K, Inoue A, et al. Dealloying by metallic melt [J]. Materials Letters, 2011, 65(7): 1076-1078.

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