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泡沫SiC基亚氧化钛电极的制备及电催化氧化酸性橙G的性能
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作者 余章俊 王项 +2 位作者 邓泽军 马莉 魏秋平 《粉末冶金材料科学与工程》 2024年第3期221-230,共10页
采用溶胶−凝胶烧结法制备三维泡沫SiC基亚氧化钛(SiC/Ti_(n)O_(2n−1))电极。采用扫描电子显微镜、X射线衍射仪和电化学工作站表征亚氧化钛电极的表面形貌、相组成和电化学性能,利用紫外−可见光分光光度计测试其对有机污染物的降解效果... 采用溶胶−凝胶烧结法制备三维泡沫SiC基亚氧化钛(SiC/Ti_(n)O_(2n−1))电极。采用扫描电子显微镜、X射线衍射仪和电化学工作站表征亚氧化钛电极的表面形貌、相组成和电化学性能,利用紫外−可见光分光光度计测试其对有机污染物的降解效果。结果表明:1050℃/2 h烧结制备的泡沫SiC基亚氧化钛电极涂层质量较好,分布连续、均匀,且导电相Ti_(4)O_(7)的含量最高(质量分数为37.5%)、薄膜电荷转移电阻最低(16.75Ω),对模拟污染物酸性橙G表现出更快的降解速率(反应速率常数为0.60 h^(-1))和更低的能耗(11.63(kW·h)/m^(3))。·OH和SO_(4)^(·-)均参与降解酸性橙G,且·OH和SO_(4)^(·-)对去除酸性橙G的贡献几乎相同。无机离子HCO_(3)^(-)、NO_(3)^(-)、H_(2)P O_(4)^(-)的存在对酸性橙G的降解均具有抑制作用,而Cl^(−)会促进酸性橙G的降解。电极在多次降解中表现出较高的稳定性。 展开更多
关键词 亚氧化钛电极 泡沫SiC基体 电化学性能 废水降解 电化学氧化
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镀铂多孔金属钛性能的研究 被引量:4
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作者 杜继红 杨升红 +1 位作者 张玉萍 李晴宇 《表面技术》 EI CAS CSCD 北大核心 2009年第6期19-20,共2页
钛镀铂作为不溶性阳极、阴极,已广泛应用于电解工业。采用电镀技术在多孔钛表面沉积了均匀的铂金属层,分析了多孔钛镀铂后的表面状态及电化学性能,并与IrTi涂层阳极及镀铂钛网阴极进行比较,结果显示:多孔钛板开孔孔隙表面可均匀沉积结... 钛镀铂作为不溶性阳极、阴极,已广泛应用于电解工业。采用电镀技术在多孔钛表面沉积了均匀的铂金属层,分析了多孔钛镀铂后的表面状态及电化学性能,并与IrTi涂层阳极及镀铂钛网阴极进行比较,结果显示:多孔钛板开孔孔隙表面可均匀沉积结合力良好的铂层,镀层厚度为2μm;镀铂多孔钛阴极析氢电位比镀铂钛网高,且在大电流下,阳极析氧电位比IrTi涂层阳极高。因此采用这种方法制备出的电极可大幅降低能耗,使用寿命得以延长,对电解工业节能具有重要意义。 展开更多
关键词 多孔钛电极 镀铂 性能
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Powder metallurgy with space holder for porous titanium implants:A review 被引量:5
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作者 Alejandra Rodriguez-Contreras Miquel Punset +3 位作者 JoséA.Calero Francisco Javier Gil Elisa Ruperez JoséMaría Manero 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第17期129-149,共21页
One of the biggest challenges in the biocompatibility of implantable metals is the prevention of the stress shielding effect,which is related to the coupling of the bone-metal mechanical properties.This stress shieldi... One of the biggest challenges in the biocompatibility of implantable metals is the prevention of the stress shielding effect,which is related to the coupling of the bone-metal mechanical properties.This stress shielding phenomenon provokes bone resorption and the consequent adverse effects on prosthesis fixation.However,it can be inhibited by adapting the stiffness of the implant material.Since the use of titanium(Ti)porous structures is a great alternative not only to inhibit this effect but also to improve the osteointegration of orthopedic and dental implants,a brief description of the techniques used for their manufacturing and a review of the current commercialized implants produced from porous Ti assemblies are compiled in this work.As powder metallurgy(PM)with space holder(SH)is a powerful technology used to produce porous Ti structures,it is here discussed its potential for the fabrication of medical devices from the perspectives of both design and manufacture.The most important parameters of the technique such as the size and shape of the initial metallic particles,the SH and binder type of materials,the compaction pressure of the green form,and in the sintering stage,the temperature,atmosphere,and time are reviewed according to the bibliography reported.Furthermore,the importance of the porosity and its types together with the influence of the mentioned parameters in the final porosity and,consequently,in the ultimate mechanical properties of the structure are discussed.Finally,a few examples of the PM-SH application for the manufacturing of orthopedic implants are presented. 展开更多
关键词 Powder metallurgy Space holder method Porous titanium structures Medical devices Stress shielding effect Porous materials permeability Interconnected porosity Porous bone substitute materials open-cell titanium foams Sintering-dissolution technique
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