...
首页> 外文期刊>Proceedings >New Fluorescent Molecular Probes for Monitoring of Very Fast Photopolymerization Processes of Monomers
【24h】

New Fluorescent Molecular Probes for Monitoring of Very Fast Photopolymerization Processes of Monomers

机译:用于监测单体非常快速的光聚合过程的新型荧光分子探针

获取原文
           

摘要

Extremely interesting and important applications of luminescent sensors have been found in research testing polymeric materials by fluorescence spectroscopy. This type of research has contributed to the development of Fluorescence Probe Technology (in short: the FPT method), which is used in the development of applications for fluorescence sensors in a range of kinetic studies of photopolymerization processes and polymerization. This is due to the fact that we have observed dynamic growth in new materials cured by photopolymerization, such as new monomers and photoinitiators as well as their new applications. Most recently, the development of new materials has been supplemented with new techniques for monitoring the progress of very quick photopolymerization reactions, because precise control of the photopolymerization processes is ultimately necessary to achieve a high quality final polymeric product. In particular, there are high hopes for the possibility of monitoring the photopolymerization progress on-line by rapid measurements of such process parameters as the degree of cure, because many properties of the final product depend on the polymerization conditions. Moreover, strict control of the quality of raw materials and the final cured products is required for high production standards. Therefore, there is a high demand for a quick and reliable method of polymerization progress monitoring that would be applicable directly in production lines. Fluorescence Probe Technology is the answer to this type of need, because it is based on the use of fluorescent probes as molecular sensors and quanta of light for information transfer between the probe molecules and the monitoring system. The fluorescent probes react to changes occurring in their vicinity within nanoseconds. Hence, the fluorescent sensors meet the requirements of measurement speed. On the other hand, recent advances in modern electronics and computer techniques have provided means for rapid analysis of fluorescence emitted by the probes, so it has become possible to acquire and analyse even 10 or more fluorescence spectra of a probe per second, which is necessary for monitoring rapid photopolymerization processes. In the FPT method, changes of fluorescence characteristics of appropriate molecular sensors, caused by changes of polarity or microviscosity of the medium in which the probe is dissolved, are monitored in real time. In this work, we present new fluorescent molecular probes which can be used to follow photopolymerization processes in full conversion range of monomers. The aim of the work is to study the influence of the structure of the probes on their sensing properties. The properties of the new probes have been compared with those of the classical probes.
机译:在通过荧光光谱法测试聚合物材料的研究中,已经发现了发光传感器的极其有趣和重要的应用。这种类型的研究为荧光探针技术(简称FPT方法)的发展做出了贡献,该技术被用于在光聚合过程和聚合的动力学研究中用于荧光传感器的应用开发。这是由于我们已经观察到通过光聚合固化的新材料(例如新的单体和光引发剂)及其新应用的动态增长。最近,新材料的开发已被用于监视非常快速的光聚合反应进程的新技术所补充,因为对光聚合过程的精确控制最终是获得高质量最终聚合物产品所必需的。特别地,由于最终产物的许多性质取决于聚合条件,因此通过快速测量诸如固化度的过程参数来在线监测光聚合进展的可能性寄予了很高的希望。此外,高生产标准要求严格控制原材料和最终固化产品的质量。因此,迫切需要一种可直接应用于生产线中的快速可靠的聚合过程监测方法。荧光探针技术正是针对此类需求的解决方案,因为它基于荧光探针作为分子传感器和光量子的使用,用于在探针分子与监测系统之间进行信息传递。荧光探针会在纳秒内对附近发生的变化做出反应。因此,荧光传感器满足测量速度的要求。另一方面,现代电子技术和计算机技术的最新进展提供了用于快速分析探针发出的荧光的手段,因此每秒可以获取和分析甚至10个或更多探针的荧光光谱成为可能。用于监测快速光聚合过程。在FPT方法中,由探针溶解于其中的介质的极性或微粘度的变化引起的适当分子传感器的荧光特性的变化被实时监测。在这项工作中,我们提出了新的荧光分子探针,可用于在单体的全部转化范围内跟踪光聚合过程。该工作的目的是研究探针的结构对其传感特性的影响。已将新探针的性能与经典探针的性能进行了比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号