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1)  closely-spaced nanoparticle array
密集排列纳米粒子点阵
2)  non-close-packed nanoparticle arrays
非致密纳米颗粒阵列
3)  Nanodot array
纳米点阵列
1.
Preparation of Ag nanodot array on porous alumina membrane by electron beam evaporation;
电子束蒸发法在多孔氧化铝膜上制备银纳米点阵列
2.
An ion beam assisted method for large-area fabrication of nanodot arrays in anodic alumina oxide (AAO) templates was investigated.
本工作研究了离子束辅助下在氧化铝模板中大面积制备纳米点阵列的方法。
4)  nanodot arrays
纳米点阵列
1.
The preparation of porous anodic alumina template and the latest research progress in the fabrication of various ordered nanodot arrays materials using porous anodic alumina membrane mask are reviewed.
介绍了多孔阳极氧化铝模板的制备和以多孔阳极氧化铝为模板采用常规方法制备高度有序纳米点阵列材料的最新研究进展,以及纳米点阵列的应用前景。
2.
Devices with ultrahigh density integration is becoming a dominant research direction, hence, BaTiO_3 nanodot arrays have attracted great interests.
BaTiO_3是一种典型的铁电材料,应用极为广泛,在超高密度集成电子器件逐渐成为主流的趋势下,BaTiO_3纳米点阵列的研究就显得更为重要。
5)  nanoparticle array
纳米颗粒阵列
1.
In the nanoparticle array synthesized by taking the colloid crystal as the lithography mask, the shapes, sizes, spacing and even compositions of the particles can be controlled easily.
悬浮液中的胶体球在一定条件下能够自组装成二维胶体晶体 ,以此为掩膜可合成纳米颗粒阵列体系 ,其颗粒形状、尺寸以及间距等参数易于控制 。
2.
Two\|dimensional(2D)colloid crystal lithography possesses many merits in the synthesis of 2D ordered nanoparticle arrays, such as easy operation, low cost and high output.
二维胶体晶体刻蚀法合成二维有序纳米颗粒阵列具有操作简单、成本低、易于实现规模化的优点。
6)  Density of nanotube array
纳米管阵列密度
补充资料:密集
1.指人或物会聚一起。
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