The corrosion resistance and antibacterial properties of Ti−3Cu alloy prepared by selective laser melting were evaluated using electrochemical experiments and a variety of antibacterial characterization.It is found th...The corrosion resistance and antibacterial properties of Ti−3Cu alloy prepared by selective laser melting were evaluated using electrochemical experiments and a variety of antibacterial characterization.It is found that the charge transfer resistance of Ti−3Cu alloy was 4.89×10^(5)Ω∙cm^(2),which was doubled the data obtained by CP-Ti alloy.The antibacterial rates of Ti−3Cu alloy against S.mutans and P.gingivalis were 45.0%and 54.5%.And the antibacterial rates increased with the prolongation of cultivation time,reaching up to 62.8%and 68.6%,respectively.The in-situ nano Ti_(2)Cu precipitates were homogeneously distributed in the matrix of the Ti−3Cu alloy,which was the key reason of increasing the corrosion resistance.Additionally,the microscale electric fields between theα-Ti matrix and the Ti_(2)Cu was responsible for the enhancement of the antibacterial properties.展开更多
分析Ti-β分子筛催化1-己烯环氧化反应过程中的失活的原因,研究其失活过程及再生方法;采用^(13)C MAS NMR和GC-MS等手段分析Ti-β分子筛的积炭情况,并采用XPS、UV-Vis和EDX等手段研究其钛物种变化;进一步以二甲基亚砜溶剂处理失活Ti-β...分析Ti-β分子筛催化1-己烯环氧化反应过程中的失活的原因,研究其失活过程及再生方法;采用^(13)C MAS NMR和GC-MS等手段分析Ti-β分子筛的积炭情况,并采用XPS、UV-Vis和EDX等手段研究其钛物种变化;进一步以二甲基亚砜溶剂处理失活Ti-β分子筛,对其进行再生研究。结果表明:Ti-β分子筛循环使用10次以后,1-己烯转化率降低至新鲜剂的30%以下;在此过程中,Ti-β分子筛中的部分骨架钛转化为非骨架钛,同时1,2-己二醇副产物堵塞孔道或者覆盖活性中心,两者共同导致Ti-β分子筛失活。以二甲基亚砜在160℃条件下对失活的Ti-β分子筛处理可以脱除大部分吸附的1,2-己二醇,使其催化1-己烯环氧化反应的活性恢复至新鲜剂的83%。展开更多
Ti at the oxidation states of Ti^(3+)and Ti^(4+),was used to enhance the performance of Na_(3)V_(2)(PO_(4))_(2)F_(2)O by partially substituting vanadium.After doping Ti,the crystallographic volume is decreased due to ...Ti at the oxidation states of Ti^(3+)and Ti^(4+),was used to enhance the performance of Na_(3)V_(2)(PO_(4))_(2)F_(2)O by partially substituting vanadium.After doping Ti,the crystallographic volume is decreased due to the less radii of Ti^(3+/4+),and the valence of Ti is demonstrated identical to V.During sodium insertion in Ti-doped Na_(3)V_(2)(PO_(4))_(2)F_(2)O,the two discharge plateaus split into three because of the rearrangement of local redox environment.Consequently,the optimized Na_(3)V_(0.96)Ti_(0.04)(PO_(4))_(2)F_(2)O shows a specific capacity of 123 and 63 mA·h/g at 0.1C and 20C,respectively.After 350 cycles at 0.5C,the capacity is gradually reduced corresponding to a retention of 71.05%.The significantly improved performance is attributed to the rapid electrochemical kinetics,and showcases the strategy of replacing V^(3+/4+)with Ti^(3+/4+)for high-performance vanadium-based oxyfluorophosphates.展开更多
基金financially supported by the National Natural Science Foundation of China(No.51404302)the Natural Science Foundation of Hunan Province,China(Nos.2020JJ4732,2022JJ30897)the Natural Science Foundation of Changsha City,China(No.kq2202430).
文摘The corrosion resistance and antibacterial properties of Ti−3Cu alloy prepared by selective laser melting were evaluated using electrochemical experiments and a variety of antibacterial characterization.It is found that the charge transfer resistance of Ti−3Cu alloy was 4.89×10^(5)Ω∙cm^(2),which was doubled the data obtained by CP-Ti alloy.The antibacterial rates of Ti−3Cu alloy against S.mutans and P.gingivalis were 45.0%and 54.5%.And the antibacterial rates increased with the prolongation of cultivation time,reaching up to 62.8%and 68.6%,respectively.The in-situ nano Ti_(2)Cu precipitates were homogeneously distributed in the matrix of the Ti−3Cu alloy,which was the key reason of increasing the corrosion resistance.Additionally,the microscale electric fields between theα-Ti matrix and the Ti_(2)Cu was responsible for the enhancement of the antibacterial properties.
文摘分析Ti-β分子筛催化1-己烯环氧化反应过程中的失活的原因,研究其失活过程及再生方法;采用^(13)C MAS NMR和GC-MS等手段分析Ti-β分子筛的积炭情况,并采用XPS、UV-Vis和EDX等手段研究其钛物种变化;进一步以二甲基亚砜溶剂处理失活Ti-β分子筛,对其进行再生研究。结果表明:Ti-β分子筛循环使用10次以后,1-己烯转化率降低至新鲜剂的30%以下;在此过程中,Ti-β分子筛中的部分骨架钛转化为非骨架钛,同时1,2-己二醇副产物堵塞孔道或者覆盖活性中心,两者共同导致Ti-β分子筛失活。以二甲基亚砜在160℃条件下对失活的Ti-β分子筛处理可以脱除大部分吸附的1,2-己二醇,使其催化1-己烯环氧化反应的活性恢复至新鲜剂的83%。
文摘Ti at the oxidation states of Ti^(3+)and Ti^(4+),was used to enhance the performance of Na_(3)V_(2)(PO_(4))_(2)F_(2)O by partially substituting vanadium.After doping Ti,the crystallographic volume is decreased due to the less radii of Ti^(3+/4+),and the valence of Ti is demonstrated identical to V.During sodium insertion in Ti-doped Na_(3)V_(2)(PO_(4))_(2)F_(2)O,the two discharge plateaus split into three because of the rearrangement of local redox environment.Consequently,the optimized Na_(3)V_(0.96)Ti_(0.04)(PO_(4))_(2)F_(2)O shows a specific capacity of 123 and 63 mA·h/g at 0.1C and 20C,respectively.After 350 cycles at 0.5C,the capacity is gradually reduced corresponding to a retention of 71.05%.The significantly improved performance is attributed to the rapid electrochemical kinetics,and showcases the strategy of replacing V^(3+/4+)with Ti^(3+/4+)for high-performance vanadium-based oxyfluorophosphates.