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Visualising substrate-fingermark interactions: Solid-state NMR spectroscopy of amino acid reagent development on cellulose substrates

机译:可视化底物与指纹的相互作用:纤维素底物上氨基酸试剂开发的固态NMR光谱

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摘要

Most spectroscopic studies of the reaction products formed by ninhydrin, 1,2-indanedione-zinc (Ind-Zn) and 1,8-diazafluoren-9-one (DFO) when reacted with amino acids or latent fingermarks on paper substrates are focused on visible absorption or luminescence spectroscopy. In addition, structural elucidation studies are typically limited to solution-based mass spectrometry or liquid nuclear magnetic resonance (NMR) spectroscopy, which does not provide an accurate representation of the fingermark development process on common paper substrates. The research presented in this article demonstrates that solid-state carbon-13 magic angle spinning NMR (C-13-MAS-NMR) is a technique that can not only be utilised for structural studies of fingermark enhancement reagents, but is a promising technique for characterising the effect of paper chemistry on fingermark deposition and enhancement. The latter opens up a research area that has been under-explored to date but has the potential to improve our understanding of how fingermark secretions and enhancement reagents interact with paper substrates. (C) 2015 Elsevier Ireland Ltd. All rights reserved.
机译:茚三酮,1,2-茚满二酮-锌(Ind-Zn)和1,8-二氮杂芴-9-一(DFO)与氨基酸或潜在的指纹在纸质基材上反应时形成的反应产物的大多数光谱研究都集中在可见吸收或发光光谱。另外,结构阐明研究通常限于基于溶液的质谱法或液体核磁共振(NMR)光谱法,该方法不能提供常见纸张基材上指印显影过程的准确表示。本文中的研究表明,固态碳13幻角旋转NMR(C-13-MAS-NMR)是一种不仅可以用于指纹增强剂结构研究的技术,而且是一种有前途的技术表征纸化学对指印沉积和增强的影响。后者开辟了一个迄今为止尚未得到充分研究的研究领域,但有可能增进我们对指印分泌物和增强剂与纸质物质相互作用的理解。 (C)2015 Elsevier Ireland Ltd.保留所有权利。

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