Faculty of Natural Sciences and Engineering, Department of Chemistry and Biology, Physical Chemistry I, University of Siegen , Adolf-Reichwein-Strasse 2, 57076 Siegen, Germany.
Langmuir. 2014 Feb 18;30(6):1723-8. doi: 10.1021/la500007x. Epub 2014 Feb 3.
We report on the fabrication of unprecedented free-standing complex polymeric nanoobjects, which possess both concave and convex curvatures, by exploiting the layer-by-layer (LBL) deposition of polyelectrolytes. In a combined top-down/bottom-up replication approach pore diameter-modulated anodic aluminum oxide (AAO) templates, fabricated by temperature modulation hard anodization (TMHA), were replicated with multilayers of poly(styrene sulfonate) (PSS) and poly(allylamine hydrochloride) (PAH) to yield open nanotubes with diameters in the wide and narrow segments of 210 and 150 nm, respectively. To obtain stable pore diameter-modulated nanopores, which possess segment lengths between 1 and 5 μm and 5 and 10 μm in the narrow and wide pore portion, respectively, conventional hard anodization of aluminum was followed by a subsequent temperature-modulated anodization. After removing the backside aluminum electrode, silanizing the aluminum oxide, and passivating the exposed membrane surface with a thin layer of gold, PSS and PAH were deposited alternatingly to yield LBL multilayers. For optimized LBL multilayer thicknesses and compactness, established in separate experiments on silicon substrates and nanoporous AAO with straight pores, free-standing polymeric nanoobjects with concave and convex curvatures, were obtained. These were stable for wall thickness to pore diameter ratios of ≥0.08.
我们报告了通过层层(LBL)沉积聚电解质来制造前所未有的独立式复杂聚合物纳米物体的方法,这些纳米物体具有凹面和凸面曲率。通过温度调制硬阳极氧化(TMHA)制造的孔径调制的阳极氧化铝(AAO)模板,采用聚(苯乙烯磺酸盐)(PSS)和聚(盐酸烯丙胺)(PAH)的多层复制,得到了具有分别为 210nm 和 150nm 的宽段和窄段直径的开放纳米管。为了获得稳定的孔径调制纳米孔,其在窄段和宽段中分别具有 1 到 5μm 和 5 到 10μm 的段长,我们首先对铝进行常规硬阳极氧化,然后进行随后的温度调制阳极氧化。在去除背面的铝电极后,硅烷化氧化铝,并通过薄薄的金层钝化暴露的膜表面,交替沉积 PSS 和 PAH,以得到 LBL 多层。为了优化 LBL 多层的厚度和致密性,我们在硅衬底和具有直孔的纳米多孔 AAO 上进行了单独的实验,得到了具有凹面和凸面曲率的独立式聚合物纳米物体。这些纳米物体的壁厚与孔径比≥0.08 时是稳定的。