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在图案化的、涂有碳和 Al₂O₃ 的碳纳米管林中,稳定的、微制造的薄层色谱板没有体积变形。

Stable, microfabricated thin layer chromatography plates without volume distortion on patterned, carbon and Al₂O₃-primed carbon nanotube forests.

机构信息

Department of Chemistry and Biochemistry, Brigham Young University, Provo, UT 84602, USA.

出版信息

J Chromatogr A. 2012 Sep 28;1257:195-203. doi: 10.1016/j.chroma.2012.07.086. Epub 2012 Aug 4.

DOI:10.1016/j.chroma.2012.07.086
PMID:22926056
Abstract

Some of us recently described the fabrication of thin layer chromatography (TLC) plates from patterned carbon nanotube (CNT) forests via direct infiltration/coating of the CNTs by low pressure chemical vapor deposition (LPCVD) of silicon from SiH₄, followed by high temperature oxidation of the CNTs and Si. Herein we present an improved microfabrication process for the preparation of these TLC plates. First, a few nanometers of carbon and/or a thin film of Al₂O₃ is deposited on the CNTs. This method of priming the CNTs for subsequent depositions appears to be new. X-ray photoelectron spectroscopy confirms the presence of additional oxygen after carbon deposition. After priming, the plates are coated by rapid, conformal deposition of an inorganic material that does not require subsequent oxidation, i.e., by a fast pseudo atomic layer deposition (ψ-ALD) of SiO₂ from trimethylaluminum and tris(tert-butoxy)silanol. Unlike devices described previously, faithful reproduction of the features in the masks is still observed after oxidation. A bonded, amino phase on the resulting plates shows fast, highly efficient separations of fluorescent dyes (plate heights in the range of 1.6-7.7 μm). Extensive characterization of the new materials by TEM, SEM, EDAX, DRIFT, and XPS is reported. A substantially lower process temperature for the removal of the CNT scaffold is possible as a result of the already oxidized materials used.

摘要

我们最近有人描述了通过从 SiH₄ 进行低压化学气相沉积 (LPCVD) 直接渗透/涂覆 CNT 来从图案化碳纳米管 (CNT) 林中制造薄层色谱 (TLC) 板,然后对 CNT 和 Si 进行高温氧化。在此,我们提出了一种改进的微制造工艺,用于制备这些 TLC 板。首先,在 CNT 上沉积几纳米的碳和/或氧化铝薄膜。这种为后续沉积而对 CNT 进行预处理的方法似乎是新的。X 射线光电子能谱证实碳沉积后存在额外的氧。在底漆之后,通过不需要后续氧化的快速、共形无机材料涂层,即通过三甲基铝和三(叔丁氧基)硅醇的快速拟原子层沉积 (ψ-ALD) 来涂层。与以前描述的器件不同,在氧化后仍然观察到掩模中特征的忠实再现。在 resulting plates 上形成的键合的氨基相显示出快速、高效的荧光染料分离(板高在 1.6-7.7 μm 范围内)。通过 TEM、SEM、EDAX、DRIFT 和 XPS 对新材料进行了广泛的表征。由于使用了已经氧化的材料,去除 CNT 支架的过程温度可以大大降低。

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