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 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.展开更多
We have prepared ordered porous alumina membrane. Metal Zn was deposited within the pores of alumina membrane by direct current. The alumina membrane with Zn in the pores was immersed in HgCl 2 solution and Hg 2Cl 2/A...We have prepared ordered porous alumina membrane. Metal Zn was deposited within the pores of alumina membrane by direct current. The alumina membrane with Zn in the pores was immersed in HgCl 2 solution and Hg 2Cl 2/Al 2O 3 ordered array was synthesized by utilizing Zn reduced HgCl 2. The XRD and TEM measuring demonstrated Hg 2Cl 2 located in the pores of alumina membrane and the diameters range from 30 to 80 nm.展开更多
An ordered array of Ni submicrotubes with up to 35 ìm in length has been successfully prepared by electrodeposition in the pores of alumina membrane modified with methyl-?-diethylenetriaminopropyl-dimethoxysilane...An ordered array of Ni submicrotubes with up to 35 ìm in length has been successfully prepared by electrodeposition in the pores of alumina membrane modified with methyl-?-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.展开更多
文摘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.
文摘We have prepared ordered porous alumina membrane. Metal Zn was deposited within the pores of alumina membrane by direct current. The alumina membrane with Zn in the pores was immersed in HgCl 2 solution and Hg 2Cl 2/Al 2O 3 ordered array was synthesized by utilizing Zn reduced HgCl 2. The XRD and TEM measuring demonstrated Hg 2Cl 2 located in the pores of alumina membrane and the diameters range from 30 to 80 nm.
文摘An ordered array of Ni submicrotubes with up to 35 ìm in length has been successfully prepared by electrodeposition in the pores of alumina membrane modified with methyl-?-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.