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Magneli phase titanium sub-oxide conductive ceramic Ti_nO_(2n-1) as support for electrocatalyst toward oxygen reduction reaction with high activity and stability 被引量:3
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作者 伍秋美 阮建明 +1 位作者 周忠诚 桑商斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1212-1219,共8页
Magneli phase titanium sub-oxide conductive ceramic Tin O2n-1 was used as the support for Pt due to its excellent resistance to electrochemical oxidation, and Pt/Tin O2n-1 composites were prepared by the impregnation-... Magneli phase titanium sub-oxide conductive ceramic Tin O2n-1 was used as the support for Pt due to its excellent resistance to electrochemical oxidation, and Pt/Tin O2n-1 composites were prepared by the impregnation-reduction method. The electrochemical stability of Tin O2n-1 was investigated and the results show almost no change in the redox region after oxidation for 20 h at 1.2 V(vs NHE) in 0.5 mol/L H2SO4 aqueous solution. The catalytic activity and stability of the Pt/Tin O2n-1 toward the oxygen reduction reaction(ORR) in 0.5 mol/L H2SO4 solution were investigated through the accelerated aging tests(AAT), and the morphology of the catalysts before and after the AAT was observed by transmission electron microscopy. At the potential of 0.55 V(vs SCE), the specific kinetic current density of the ORR on the Pt/Tin O2n-1 is about 1.5 times that of the Pt/C. The LSV curves for the Pt/C shift negatively obviously with the half-wave potential shifting about 0.02 V after 8000 cycles AAT, while no obvious change takes place for the LSV curves for the Pt/Tin O2n-1. The Pt particles supported on the carbon aggregate obviously, while the morphology of the Pt supported on Tin O2n-1 remains almost unchanged, which contributes to the electrochemical surface area loss of Pt/C being about 2times that of the Pt/Tin O2n-1. The superior catalytic stability of Pt/Tin O2n-1 toward the ORR could be attributed to the excellent stability of the Tin O2n-1 and the electronic interaction between the metals and the support. 展开更多
关键词 magneli phase tino2n-1 support oxygen reduction reaction stability
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微波加热Mg-TiO2混合物的研究
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作者 居殿春 武兆勇 +3 位作者 张荣良 王海风 王锋 严定鎏 《材料导报》 EI CAS CSCD 北大核心 2020年第S01期140-143,共4页
在氩气气氛下微波辐射加热Mg-TiO2混合物,通过XRD、SEM研究了不同n(Mg)/n(TiO2)和反应温度对产物物相、形貌的影响。n(Mg)/n(TiO2)影响产物中Mg-TiO2化合物的种类和亚氧化钛的生成,对产物的形貌没有明显影响。反应温度影响产物的物相比... 在氩气气氛下微波辐射加热Mg-TiO2混合物,通过XRD、SEM研究了不同n(Mg)/n(TiO2)和反应温度对产物物相、形貌的影响。n(Mg)/n(TiO2)影响产物中Mg-TiO2化合物的种类和亚氧化钛的生成,对产物的形貌没有明显影响。反应温度影响产物的物相比例,温度升高会导致产物的颗粒烧结粗大。使用微波加热Mg-TiO2虽然生成了钛酸镁及亚氧化钛,但生成量少、分离困难,因此该制备方法不可取。 展开更多
关键词 钛酸镁 Mg 2TiO4 亚氧化钛 微波加热
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