首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Microfabrication, separations, and detection by mass spectrometry on ultrathin-layer chromatography plates prepared via the low-pressure chemical vapor deposition of silicon nitride onto carbon nanotube templates
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Microfabrication, separations, and detection by mass spectrometry on ultrathin-layer chromatography plates prepared via the low-pressure chemical vapor deposition of silicon nitride onto carbon nanotube templates

机译:通过将氮化硅低压化学气相沉积到碳纳米管模板上而制备的超薄层色谱板上的微细加工,分离和质谱检测

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Microfabrication of ultrathin-layer chromatography (UTLC) plates via conformal deposition of silicon nitride by low-pressure chemical vapor deposition onto patterned carbon nanotube (CNT) scaffolds was demonstrated. After removal of the CNTs and hydroxylation, the resulting UTLC phase showed no expansion or distortion of their microfeatures and the absence/reduction of remaining nitrogenic species. Developing time of a mixture of lipophilic dyes on this UTLC plates was 86% shorter than on high-performance thin-layer chromatography (HPTLC) plates. A water-soluble food dye mixture was also separated resulting in low band broadening and reduced developing time compared to HPTLC. For the latter example, mobile phase optimization on a single UTLC plate consisted of 14 developments with different mobile phases, each preceded by a plate prewashing step. The same plate was again reused for additional 11 separations under varying conditions resulting in a development procedure with a mean separation efficiency of 233,000 theoretical plates/m and a reduced mobile phase consumption of only 400 mu L. This repeated use proved the physical robustness of the ultrathin layer and its resistance to damage. The layer was highly suited for hyphenation to ambient mass spectrometry, including desorption electrospray ionization (DESI) mass spectrometry imaging and direct analysis in real time (DART) mass spectrometry. (C) 2015 Elsevier B.V. All rights reserved.
机译:演示了超薄层色谱(UTLC)板的微加工,该工艺是通过将低压化学气相沉积在图案化的碳纳米管(CNT)支架上,通过保形沉积氮化硅而实现的。除去碳纳米管并羟基化后,所得的UTLC相未显示其微观特征的膨胀或变形,也没有/减少了剩余的氮物种。该UTLC板上的亲脂性染料混合物的显影时间比高效薄层色谱(HPTLC)板上的显影时间短86%。与HPTLC相比,还可以分离水溶性食用染料混合物,从而导致低谱带展宽和缩短的显影时间。对于后一个示例,单个UTLC板上的流动相优化包括14个具有不同流动相的展开,每个展开之前都有一个板预洗步骤。同一板块在不同条件下再次重复使用,可进行11次分离,从而开发出平均分离效率为233,000理论板块/ m的开发程序,并且流动相消耗量仅为400μL。超薄层及其抗破坏性。该层非常适合与环境质谱联用,包括解吸电喷雾电离(DESI)质谱成像和实时直接分析(DART)质谱。 (C)2015 Elsevier B.V.保留所有权利。

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