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以自卷聚合物管为模板制备金属微管。

Fabrication of metallic microtubes using self-rolled polymer tubes as templates.

作者信息

Kumar Kamlesh, Nandan Bhanu, Luchnikov Valeriy, Gowd E Bhoje, Stamm Manfred

机构信息

Department of Nanostructured Materials, Leibniz Institute of Polymer Research Dresden, Hohe Strasse 6, 01069 Dresden, Germany.

出版信息

Langmuir. 2009 Jul 7;25(13):7667-74. doi: 10.1021/la900327v.

Abstract

We present a novel approach for fabricating single and bimetallic (gold, titanium) (Au, Ti, Au/Ti) microtubes with very high aspect ratio from self-rolled polymer templates. The polymer microtubes used as the template were generated by self-rolling of thin polymer bilayer films (polystyrene/poly(4-vinylpyridine) (PS/P4VP) gradually released from a solid substrate. The self-rolling was introduced in the polymer bilayer by swelling the bottom P4VP layer in dodecylbenzenesulfonic acid (DBSA) solution, which was opposed by a stiff top PS layer. The inner wall of the tube was metallized by depositing a thin layer of desired metal on top of the bilayer by physical vapor deposition. The polymer template was then removed by pyrolysis, resulting in pure metal microtubes, which were characterized by optical microscopy, scanning electron microscopy (SEM), infrared spectroscopy (IR), energy-dispersive X-ray (EDX), and X-ray photoelectron spectroscopy (XPS). The tube diameter was tailored by changing the metal layer thickness on the polymer bilayer. The approach described here is general and could be used to fabricate any type of single or multimetallic tube. The metal microtubes reported in this method have potential application in drug delivery systems, microelectronics, microfluidic devices, enzyme bireaction, and chemical and biochemical sensing devices.

摘要

我们提出了一种新颖的方法,可利用自卷聚合物模板制备具有非常高纵横比的单金属和双金属(金、钛)(Au、Ti、Au/Ti)微管。用作模板的聚合物微管是通过从固体基板逐渐释放的薄聚合物双层膜(聚苯乙烯/聚(4-乙烯基吡啶)(PS/P4VP))自卷生成的。通过在十二烷基苯磺酸(DBSA)溶液中溶胀底部的P4VP层来引入聚合物双层中的自卷,而顶部坚硬的PS层则起到相反作用。通过物理气相沉积在双层顶部沉积所需金属的薄层来使管的内壁金属化。然后通过热解去除聚合物模板,得到纯金属微管,通过光学显微镜、扫描电子显微镜(SEM)、红外光谱(IR)、能量色散X射线(EDX)和X射线光电子能谱(XPS)对其进行表征。通过改变聚合物双层上的金属层厚度来调整管的直径。这里描述的方法具有通用性,可用于制造任何类型的单金属或多金属管。用这种方法制备的金属微管在药物递送系统、微电子学、微流体装置、酶双反应以及化学和生化传感装置中具有潜在应用。

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