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敏感性有序大孔水凝胶的模板合成与表征 总被引:1,自引:0,他引:1
多孔材料由于孔道相互连通、比表面积大等特性而在吸附、离子交换,特别是在催化等领域中具有广泛应用价值.当孔道均匀且有序排列时,如果其间距与可见光波长相匹配时,则可对光产生调制作用,得到光子带隙材料,在未来的信息处理等方面将发挥重要作用.目前,人们以单分散的微粒有序排列的胶体晶为模板制备了各种有序大孔材料, 相似文献
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报道了在有序介孔碳基体中一步合成负载Fe、Co、Ni纳米晶的方法. 以间二苯酚和甲醛为碳源, F127为模板剂, Fe、Co、Ni的硝酸盐为前驱体, 通过软模板组装路线在酸性条件下合成了负载型有序介孔碳复合材料. 采用X射线衍射(XRD)、透射电镜(TEM)和氮气吸附等手段对所合成材料进行了表征. 结果表明: 合成的材料具有类似于SBA-15的有序介孔结构, 有序介孔碳负载Fe、Co、Ni纳米晶复合材料的比表面积分别为586、626和698 m2·g-1. XRD和TEM表征结果证实了金属物种以高分散纳米晶的形式分布在介孔碳基体中. 相似文献
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金属纳米颗粒经常被用作纳米猝灭剂构建高效荧光传感平台.在本工作中,以FAM标记的DNA为模板,通过还原Ag+制备得到银纳米颗粒(AgNPs).由于AgNPs与DNA间稳固的结合,模板合成AgNPs呈现出很高的猝灭效率并可用作超猝灭剂以构建生物荧光传感平台.作为一种尝试,模板合成的DNA-AgNPs复合物被用作生物硫醇荧光检测.通过形成S-Ag键,硫醇与AgNPs发生作用并将FAM标记DNA从AgNPs表面取代下来,FAM荧光恢复.由于低的荧光背景信号,该传感器具有高信背比.此外,DNA-AgNPs复合物呈现出很好的稳定性,可应用于复杂的实际样品.为验证其在实际样品中检测生物硫醇的可行性,测定了人类尿样中的硫醇含量,其结果显示人类尿样中的硫醇总含量为229μM到302μM.为验证结果的可靠性,少量Cys被额外加入到尿样中,其回收率经测定为98%~103%. 相似文献
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Sol—Gel Template Synthesis and Photocatalytic Activity of TiO2 Nanofibrils Loaded on Al2O3 Template 总被引:1,自引:0,他引:1
TiO2 nanofibrils were prepared within the pores of alumina template membranc by use of sol-gel chemistry ,The TiO2 nanofibrils have good crystallinity and size,There is agglomcration frce among the particulates of TiO2 and the fibrils show high catalytic activity. 相似文献
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Co nanowire arrays were prepared by anodic alumina oxide template,which formed during DC superposed pulse source anodization process. The structure of porous alumina template and properties of optical polarization of Co nanowire arrays are studied with the help of the scanning electron microscope, X-ray diffraction and infrared spectroscopy. The results showed that Co nanowire arrays have an excellent polarization property in near infrared region in 2700nm. We also found that the properties of optical polarization can also be controlled by adulterating kinds of electrodepositing metal and its alloys, by controlling length of nanowire, and by changing incidence angle. 相似文献
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Ni亚微米管装填Co金属丝同心复合结构有序阵列的模板合成及其磁性质 总被引:1,自引:0,他引:1
An ordered array of Ni submicrotubes with up to 35 μm in length has been successfully prepared by electrodeposition in the pores of alumina membrane modified with methyl-γ-diethylenetriaminopropyl-dimethoxysilane as pore-wall-modifying agent. Furthermore, using the array of Ni submicrotubes with an alumina membrane support as a “second-order-template”, the concentric composite structure of Co wires filling Ni submicrotubes was prepared by electrodeposition method. Magnetization measurements on the array of the Ni submicrotubes and the concentric composite structure of Co wires filling Ni submicrotubes revealed different uniaxial magnetic anisotropy. 相似文献
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