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首页> 外文期刊>Advanced Functional Materials >Controlled Fabrication Of Multitiered Three-dimensional Nanostructures In Porous Alumina
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Controlled Fabrication Of Multitiered Three-dimensional Nanostructures In Porous Alumina

机译:多孔氧化铝中多层三维纳米结构的可控制备

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We present the fabrication of multitiered branched porous anodic alumina (PAA) substrates consisting of an array of pores branching into smaller pores in succeeding tiers. The tiered three-dimensional structure is realized by sequentially stepping down the anodization potential while etching of the barrier layer is performed after each step. We establish the key processing parameters that define the tiered porous structure through systematically designed experiments. The characterization of the branched PAA structures reveals that, owing to constriction, the ratio of interpore distance to the anodization potential is smaller than that for pristine films. This ratio varies from 1.8 to 1.3 nm V~(-1) depending on the size of the preceding pores and the succeeding tier anodization potential. Contact angle measurements show that the multitiered branched PAA structures exhibit a marked increased in hydrophilicity over two-dimensional PAA films.
机译:我们介绍了多层支链多孔阳极氧化铝(PAA)基材的制造,该基材由在后续层中分支成较小孔的孔阵列组成。通过在每个步骤之后执行阻挡层的蚀刻的同时顺序地降低阳极氧化电势来实现分层的三维结构。我们通过系统设计的实验来建立定义分层多孔结构的关键工艺参数。支化PAA结构的表征表明,由于收缩,孔间距离与阳极氧化电位的比率小于原始膜的比率。该比值在1.8至1.3 nm V〜(-1)之间变化,具体取决于先前孔的大小和后续的阳极氧化电位。接触角测量表明,多层支链PAA结构比二维PAA膜的亲水性显着提高。

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