Fluorescent Composite Nano- and Microparticles Based on Xanthene Dyes and Iron Oxides

IF 1.8 4区 工程技术 Q3 ENGINEERING, CHEMICAL
Assoc Prof, Dr. Aytan G. Muradova, Hasan A. Al-Hilali, Polina A. Andreeva, Alexander I. Sharapaev, Karim T. Khakimov, Xiumei Bai, Assoc Prof, Dr. Alexander V. Finko
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Abstract

Modern industry actively uses metal structural materials to create innovative devices and components. In order to prevent emergency situations in production, nondestructive testing methods are used to detect defects on the surface of the material being developed. Among the methods of nondestructive testing, one can highlight the method of luminescent magnetic flaw detection, which allows identifying defects on the surface and under the surface of the test sample with minimal effort. It is known that in some cases, the magnetic-powder method cannot achieve the required sensitivity due to the shape and location of defects themselves or due to certain conditions of object operation. To increase the visibility and sensitivity, magnetic nano- and microparticles can be conjugated with the dyes. Iron oxide nanoparticles (Fe3O4, γ-Fe2O3) can be used as such magnetic particles, since they are quite easy to obtain and have low toxicity, high chemical stability, and a wide variety of magnetic properties. To ensure fluorescence of magnetic particles, a wide variety of fluorescent dyes associated with such particles are used. The dyes can include morin, naphthalimide derivatives, as well as semiconductor quantum dots. This article provides a review of fluorescent composite micro- and nanoparticles based on xanthene dyes (rhodamine, fluorescein, and pyronine). Such dyes are economically available luminophores, have good binding to the surface of magnetic particles, and therefore can be suitable for luminescent magnetic flaw detection. This review article discusses methods for producing composite nano- and microparticles of iron oxides with xanthene dyes and provides prospects of using composite nano- and microparticles in nondestructive testing methods.

Abstract Image

Abstract Image

基于呫吨染料和氧化铁的荧光纳米和微粒复合材料
现代工业积极使用金属结构材料来制造创新设备和部件。为了防止在生产过程中出现紧急情况,无损检测方法被用来检测被开发材料表面的缺陷。在各种无损检测方法中,发光磁性探伤法最引人注目,它能以最小的代价识别检测样品表面和表面下的缺陷。众所周知,在某些情况下,由于缺陷本身的形状和位置或物体运行的某些条件,磁粉法无法达到所需的灵敏度。为了提高可见度和灵敏度,可以将纳米和微米磁性颗粒与染料共轭。氧化铁纳米粒子(Fe3O4、γ-Fe2O3)可用作此类磁性粒子,因为它们非常容易获得,而且毒性低、化学稳定性高,并具有多种磁性。为确保磁性微粒的荧光性,可使用多种与此类微粒相关的荧光染料。这些染料包括吗啉、萘二甲酰亚胺衍生物以及半导体量子点。本文综述了基于氧杂蒽染料(罗丹明、荧光素和吡罗宁)的荧光复合微粒和纳米粒子。这些染料是经济实惠的发光体,与磁性粒子表面结合良好,因此适用于发光磁性探伤。这篇综述文章讨论了用呫吨染料生产铁氧化物复合纳米和微颗粒的方法,并展望了在无损检测方法中使用复合纳米和微颗粒的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Engineering & Technology
Chemical Engineering & Technology 工程技术-工程:化工
CiteScore
3.80
自引率
4.80%
发文量
315
审稿时长
5.5 months
期刊介绍: This is the journal for chemical engineers looking for first-hand information in all areas of chemical and process engineering. Chemical Engineering & Technology is: Competent with contributions written and refereed by outstanding professionals from around the world. Essential because it is an international forum for the exchange of ideas and experiences. Topical because its articles treat the very latest developments in the field.
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