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1)  Alumina template method
氧化铝模板法
2)  alumina template
氧化铝模板
1.
Effect of heat treatment process on photoluminescence of anodic alumina template;
处理温度对阳极氧化铝模板光致发光性能的影响
2.
The influence of parameters on the pore size of the alumina template;
阳极氧化工艺对氧化铝模板孔径的影响
3.
The absorption border shift to the infrared direction in contrast to the anodic alumina template is due to the increasing of dispersion center.
紫外-可见光吸收光谱测试表明:Cu/Al2O3组装体吸收光谱上仅呈现出一个吸收带边,无等离子共振吸收峰,且吸收边相对于阳极氧化铝模板发生了红移。
3)  anodic aluminum oxide template
氧化铝模板
1.
Synthesis of La nano wires by anodic aluminum oxide template in ionic liquids;
在离子液体中用阳极氧化铝模板电沉积制备稀土镧纳米线
2.
Pd-Ni and Pd-Ag alloy nanowires arrays have been fabricated in the nanopores of anodic aluminum oxide template with 200 nm in diameter and 60 μm in depth by galvanostatic electrodeposition.
在孔深60μm直径200 nm的通孔氧化铝模板中,采用恒电流沉积法制备了钯镍与钯银合金纳米线阵列。
4)  AAO template
氧化铝模板
1.
In this work, potential_modulation method was used in two_step anodization process to make an AAO template with Y_type nanochannels.
 利用两步氧化法,通过对氧化直流电压进行周期性调制可制备出带有Y型孔道的氧化铝模板;然后以金属钴为催化剂,乙炔为碳源,通过CVD法制取得到具有规则Y型分支的碳纳米管阵列。
2.
The AAO template with nano-channels was synthesized and filled with transient metal-oxide NiO by sol-gel method, and their electrochemical properties were primarily studied.
制备具有双通纳米孔道填充过渡金属氧化物NiO的氧化铝模板,初步表征其电化学性质。
3.
Magnetic oxide iron nanowires are obtained by removing AAO template.
通过溶胶-凝胶法在氧化铝模板(AAO)中制备出了磁性Fe_2O_3纳米线阵列,然后去除AAO模板得到磁性Fe_2O_3纳米线。
5)  aluminium oxide template
氧化铝模板
6)  anodic alumina membrane
氧化铝模板
1.
Preparation and characterization of nickel nanowires by direct electrodeposition in anodic alumina membrane;
基于氧化铝模板直接电沉积法镍纳米线的制备与表征
2.
Highly ordered zinc oxide nanowire/tube arrays were prepared by a sol-gel method in the pores of anodic alumina membranes (AAM).
用溶胶-凝胶法在氧化铝模板中制备了直径约为15、30、50、60nm的有序氧化锌纳米线/管阵列。
3.
Bi/Sb and Ag/Bi/Ag segmented nanowire heterojuction arrays were fabricated by the step pulsed electrodeposition in anodic alumina membranes and characterized by FESEM, XRD and TEM.
采用分步脉冲电沉积技术,在氧化铝模板中制备了Sb/Bi和Ag/Bi/Ag纳米线异质结阵列,对其进行了结构表征,研究了这些纳米线异质结阵列的电输运特性。
补充资料:法性属法为法性土
【法性属法为法性土】
  谓真如法性之理,譬如虚空,遍一切处,乃是法身所证之体,即为所依之土,故名法性属法,为法性土。
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