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Tannin Fingerprinting in Vegetable Tanned Leather by Solid State NMR Spectroscopy and Comparison with Leathers Tanned by Other Processes

机译:固态NMR光谱法在植物鞣制皮革中鞣质指纹图谱及与其他工艺鞣制皮革的比较。

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摘要

Solid state ~(13)C-NMR spectra of pure tannin powders from four different sources - mimosa, quebracho, chestnut and tara - are readily distinguishable from each other, both in pure commercial powder form, and in leather which they have been used to tan. Groups of signals indicative of the source, and type (condensed vs. hydrolyzable) of tannin used in the manufacture are well resolved in the spectra of the finished leathers. These fingerprints are compared with those arising from leathers tanned with other common tanning agents. Paramagnetic chromium (III) tanning causes widespread but selective disappearance of signals from the spectrum of leather collagen, including resonances from acidic aspartyl and glutamyl residues, likely bound to Cr (III) structures. Aluminium (III) and glutaraldehyde tanning both cause considerable leather collagen signal sharpening suggesting some increase in molecular structural ordering. The ~(27)Al-NMR signal from the former material is consistent with an octahedral coordination by oxygen ligands. Solid state NMR thus provides easily recognisable reagent specific spectral fingerprints of the products of vegetable and some other common tanning processes. Because spectra are related to molecular properties, NMR is potentially a powerful tool in leather process enhancement and quality or provenance assurance.
机译:来自四种不同来源的含单宁粉,含羞草,奎布拉乔,栗子和塔拉的固态〜(13)C-NMR光谱,无论是纯商业粉末形式还是皮革,都易于区分。棕褐色。在成品皮革的光谱中,可以很好地分辨出信号的信号组,这些信号指示来源以及制造过程中使用的单宁的类型(缩合与可水解)。将这些指纹与使用其他常见鞣革剂鞣制的皮革所产生的指纹进行比较。顺磁性铬(III)鞣制会导致皮革胶原光谱中信号的广泛而选择性的消失,包括酸性天冬氨酰和谷氨酰胺残基的共振,可能与Cr(III)结构结合。铝(III)和戊二醛鞣制均会引起皮革胶原信号的锐化,表明分子结构有序增加。来自前一种材料的〜(27)Al-NMR信号与氧配体的八面体配位相一致。因此,固态NMR为蔬菜和某些其他常见的鞣制过程的产品提供了易于识别的试剂特定的光谱指纹。因为光谱与分子特性有关,所以NMR可能是增强皮革工艺和质量或出处的有力工具。

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