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水溶液中罗丹明 B 与蒙脱石通过氢键形成配合物。

Complex Formation via Hydrogen bonding between Rhodamine B and Montmorillonite in Aqueous Solution.

机构信息

College of Biology & Pharmacy, China Three Gorges University, Yichang, 443002, China.

Innovation Center for Geo-Hazards and Eco-Environment in Three Gorges Area, Hubei Province, Yichang, 443002, China.

出版信息

Sci Rep. 2018 Jan 10;8(1):229. doi: 10.1038/s41598-017-18057-8.

Abstract

This study investigates the adsorption mechanism differences among four nitrogenous dyes, sulforhodamine G (SRG), uncharged/deprotonated rhodamine B (RhB), orange II (Or II) and methyl blue (MB) by montmorillonite (MMT). MMT adsorption capacity for cationic MB was three times that of uncharged RhB and anionic SRG, while anionic Or II was not absorbed. Colloidal MMT particles have two types of surfaces, basal and edge, that interact with nitrogenous dyes very differently. The surface acidity of MMT was characterized with the pyridine adsorption method using in-situ diffuse reflectance infrared Fourier transform spectroscopy (in-situ DRIFTS). Adsorption of cationic MB was compared with the adsorption of RhB. In-situ attenuated total reflectance Fourier transform infrared (in-situ ATR-FTIR) spectroscopy indicated that a nitrogen atom on RhB complexes with a metal hydroxyl on an MMT edge through a water bridge. The highly polar edge hydroxyl is important to hydrogen bond formation. Cation ion exchange and washing experiments, as well as studies on the effect of temperature, pH and ionic strength on adsorption further clarified the adsorption mechanism. Our results provide insights into the effects of molecular structure on the adsorption of nitrogenous dyes by clay and the role of edge surfaces in the adsorption process.

摘要

本研究考察了蒙脱土(MMT)对四种含氮染料(磺基罗丹明 G(SRG)、中性/去质子化的罗丹明 B(RhB)、橙色 II(Or II)和亚甲蓝(MB))的吸附机制差异。MMT 对阳离子 MB 的吸附容量是中性 RhB 和阴离子 SRG 的三倍,而阴离子 Or II 则不被吸附。胶体 MMT 颗粒有两种表面,基面和边缘,它们与含氮染料的相互作用非常不同。用吡啶吸附原位漫反射红外傅里叶变换光谱法(原位 DRIFTS)对 MMT 的表面酸度进行了表征。将阳离子 MB 的吸附与 RhB 的吸附进行了比较。原位衰减全反射傅里叶变换红外光谱(原位 ATR-FTIR)表明,RhB 上的一个氮原子通过水分子桥与 MMT 边缘上的一个金属羟基络合。高度极性的边缘羟基对于氢键的形成很重要。阳离子离子交换和洗涤实验以及对温度、pH 值和离子强度对吸附的影响的研究进一步阐明了吸附机制。我们的结果提供了对分子结构对含氮染料在粘土上吸附的影响以及边缘表面在吸附过程中的作用的深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a6c/5762650/2f106775a49b/41598_2017_18057_Fig1_HTML.jpg

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