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利用粘土矿物和有机染料合成纳米颜料及其在聚合物基体中作为着色剂的应用。

Synthesis of Nano Pigments Using Clay Minerals and Organic Dyes and Their Application as Colorants in Polymer Matrix.

作者信息

Mohan Chandra, Kumari Neeraj, Jeandet Philippe, Kumari Priyanka, Negi Arvind

机构信息

Department of Chemistry, School of Basic and Applied Sciences, K R Mangalam University, Gurugram 122103, India.

Unit RIBP, USC INRAe 1488, University of Reims, 51100 Reims, France.

出版信息

Micromachines (Basel). 2023 May 21;14(5):1087. doi: 10.3390/mi14051087.

Abstract

A new generation of clay-based nano pigments has been introduced, providing the advantage of both inorganic pigments and organic dyes. These nano pigments have been synthesized through a stepwise procedure where, initially, an organic dye is adsorbed onto the surface of the adsorbent, and then dye adsorbed adsorbent is used as pigment for further applications. The objective of the current paper was to examine the interaction of non-biodegradable toxic dyes, Crystal Violet (CV) and Indigo Carmine (IC), with clay minerals (montmorillonite (Mt), vermiculite (Vt), and clay bentonite (Bent)) and their organically modified forms (OMt, OBent, and OVt) and to develop a novel methodology for the synthesis of the value-added products and clay-based nano pigments without creating second generation waste materials. In our observation, the uptake of CV was more intense onto pristine Mt, Bent, and Vt, and the uptake of IC was more onto OMt, OBent, and OVt. CV was found to be in the interlayer region of Mt and Bent, as supported by XRD data. Zeta potential values confirmed the presence of CV on their surface. In contrast, in the case of Vt and organically modified forms, the dye was found on the surface, confirmed by XRD and zeta potential values. In the case of indigo carmine, the dye was found only on the surface of pristine Mt, Bent, Vt, and organo Mt, Bent, Vt. During the interaction of CV and IC with clay and organoclays, intense violet and blue-colored solid residues were obtained (also known as clay-based nano pigments). The nano pigments were used as colorants in a poly (methyl-methacrylate) (PMMA) polymer matrix to form transparent polymer films.

摘要

新一代基于粘土的纳米颜料已被引入,兼具无机颜料和有机染料的优点。这些纳米颜料是通过逐步程序合成的,首先,将有机染料吸附到吸附剂表面,然后将吸附了染料的吸附剂用作进一步应用的颜料。本文的目的是研究不可生物降解的有毒染料结晶紫(CV)和靛蓝胭脂红(IC)与粘土矿物(蒙脱石(Mt)、蛭石(Vt)和膨润土(Bent))及其有机改性形式(有机蒙脱石(OMt)、有机膨润土(OBent)和有机蛭石(OVt))之间的相互作用,并开发一种合成增值产品和基于粘土的纳米颜料的新方法,同时不产生第二代废料。在我们的观察中,CV在原始的Mt、Bent和Vt上的吸附更强,而IC在OMt、OBent和OVt上的吸附更强。XRD数据表明,CV存在于Mt和Bent的层间区域。zeta电位值证实了其表面存在CV。相比之下,在Vt及其有机改性形式的情况下,通过XRD和zeta电位值证实染料存在于表面。对于靛蓝胭脂红,仅在原始的Mt、Bent、Vt以及有机改性的Mt、Bent、Vt表面发现了该染料。在CV和IC与粘土及有机粘土相互作用的过程中,获得了强烈的紫色和蓝色固体残留物(也称为基于粘土的纳米颜料)。这些纳米颜料被用作聚甲基丙烯酸甲酯(PMMA)聚合物基体中的着色剂,以形成透明聚合物薄膜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94dd/10223977/66cc8769e495/micromachines-14-01087-g001.jpg

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