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Catechin transformation as influenced by aluminum

机译:铝影响儿茶素的转化

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Polyphenols (catechins) are vital biomolecules in tea plants (Camellia sinensis), which are well-known as typical Al accumulators. However, the interaction between Al and catechin remains obscured. The objective of the present study was to investigate the effect of Al on the transformation of (+)-catechin. Solutions with OH/Al molar ratios of 2.5 (pH 5.5) and 3.0 (pH 7.0) prepared at Al/catechin molar ratios (R) of 0, 0.2, 0.4, 0.6, 0.8, and 1.0 were aged for 7 and 30 days, respectively. The precipitates were collected and examined by wet chemistry, X-ray diffraction, transmission electron microscopy, electron spin resonance (ESR), cross-polarization magic angle (CPMAS) C-13 nuclear magnetic resonance (C-13 NMR) analyses, and Fourier transformation infrared absorption spectrometry (FT-IR). The weight of the precipitates increased with increasing Al/catechin molar ratios and with prolonged aging. The molar ratios of Al/catechin in the precipitates increased with increasing initial Al/catechin molar ratios and were close to the initial solution Al/catechin molar ratios. The chemical analysis and spectroscopic studies indicated that Al was bonded with catechin, forming a 1:1 type complex. The reaction of crystalline catechin with Al resulted in the formation of X-ray noncrystalline precipitates. The solid-state CPMAS C-13 NMR spectra of the precipitates show the change in chemical shifts of catechin as a result of catechin complexation with Al. The FT-IR spectra of the Al-catechin precipitates also show the loss of absorption bands of several functional groups compared with catechin. The FT-IR data substantiate this reasoning. The ESR spectra of the precipitates show a single symmetrical line devoid of any fine splitting, indicating the presence of free radicals of semiquinones, which are commonly present in humified materials.
机译:多酚(儿茶素)是茶树(茶树)中的重要生物分子,茶树是众所周知的典型铝积累剂。然而,Al和儿茶素之间的相互作用仍然被遮盖。本研究的目的是研究Al对(+)-儿茶素转化的影响。在Al /儿茶素摩尔比(R)为0、0.2、0.4、0.6、0.8和1.0的条件下制备的OH / Al摩尔比为2.5(pH 5.5)和3.0(pH 7.0)的溶液分别老化7天和30天,分别。收集沉淀并通过湿化学,X射线衍射,透射电子显微镜,电子自旋共振(ESR),交叉极化幻角(CPMAS)C-13核磁共振(C-13 NMR)分析和傅里叶进行检查变换红外吸收光谱(FT-IR)。沉淀物的重量随Al /儿茶素摩尔比的增加和老化时间的延长而增加。沉淀物中Al /儿茶素的摩尔比随初始Al /儿茶素摩尔比的增加而增加,并且接近初始溶液Al /儿茶素摩尔比。化学分析和光谱研究表明,Al与儿茶素键合,形成1:1型络合物。结晶儿茶素与铝的反应导致形成X射线非晶态沉淀。沉淀物的固态CPMAS C-13 NMR光谱表明,由于儿茶素与Al络合,儿茶素的化学位移发生了变化。与儿茶素相比,Al-儿茶素沉淀物的FT-IR光谱也显示出多个官能团的吸收带损失。 FT-IR数据证实了这一推理。沉淀物的ESR谱图显示出一条对称线,没有任何细裂,表明存在半醌的自由基,该自由基通常存在于腐殖质材料中。

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