KIT‐6 mesoporous silica aged at 40,100,and 150°C were used as hard templates to prepare different mesoporous MnO2 catalysts,marked as Mn‐40,Mn‐100,and Mn‐150,*** catalytic activities of these catalysts and th...
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KIT‐6 mesoporous silica aged at 40,100,and 150°C were used as hard templates to prepare different mesoporous MnO2 catalysts,marked as Mn‐40,Mn‐100,and Mn‐150,*** catalytic activities of these catalysts and the effect of pore sizes on ethanol catalytic oxidation were ***‐40,Mn‐100,and Mn‐150 have triple,double,and single pore systems,*** decreasing the aging temperature of KIT‐6,the pore sizes of KIT‐6 decrease and that of mesoporous MnO2 catalysts *** pore sizes and catalytic activities increase in the order:Mn‐40>Mn‐100>Mn‐***‐40 catalyst has a higher TOF(0.11 s–1 at 120°C)and the best catalytic activity for ethanol oxidation because of a bigger pore size with three pore systems with maximum distribution at 1.9,3.4,and 6.6 nm,decrease in symmetry and degree of order,more surface lattice oxygen species,oxygen vacancies resulting from more Mn3+ions,and better low‐temperature reducibility.
二价汞离子作为一种重要的环境污染物,一直以来受到国内外广泛关注。基于T-T错配的Hg^(2+)检测极大依赖于汞选择性寡聚核苷酸(MSO)的设计,利用SYBR Green I对目前所报道的汞离子探针进行了优化,研究了若干种MSO探针与Hg^(2+)的结合响应...
详细信息
二价汞离子作为一种重要的环境污染物,一直以来受到国内外广泛关注。基于T-T错配的Hg^(2+)检测极大依赖于汞选择性寡聚核苷酸(MSO)的设计,利用SYBR Green I对目前所报道的汞离子探针进行了优化,研究了若干种MSO探针与Hg^(2+)的结合响应,在对探针二级结构进行分析和讨论的基础上,提出最优的富T探针序列,并由此建立了一种基于SYBR Green I的水中汞离子快速、便捷的荧光检测方法。最终测得3种实际水样的加标回收率在82.8%~101.8%之间,相对标准偏差小于15%,表明该方法受环境基质的影响较小,可应用于实际水样中的汞离子检测。
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