聚碳酸酯蛇纹石微流体系统中罗丹明染料的制作与荧光分析

IF 2.6 4区 化学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of Fluorescence Pub Date : 2024-10-11 DOI:10.1007/s10895-024-03984-3
Q A Al-Jarwany, Salih Abbas Habeeb, Ali A K Bakly, Chris D Walton
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引用次数: 0

摘要

罗丹明染料(R6G 和 R1010)的合成及其在聚合物基微流体中的荧光表征,为材料科学和化学分析提供了一种令人兴奋的新方法。这项工作研究了聚碳酸酯基底(PC)的紫外可见光发射。在 193nm 波长下 PC 的烧蚀阈值(16mj.sec-1)达到后,烧蚀过程继续进行,利用 G-Code 在 PC 上生成微流体蛇形通道。研究了罗丹明 6G 和罗丹明 101 的荧光特性。分析了峰值波长处的吸收和发射与 R6G 和 R101 浓度的关系。此外,还研究了 R6G 和 R101 浓度的折射率。结果表明,在低浓度下,重叠度最高,而在高浓度下,重叠度最小。R101 的光稳定性更好,扩散更稳定,而 R6G 的扩散更快,荧光强度更强。这些差异是由染料的不同分子结构及其与 PC 微通道的相互作用造成的。在聚碳酸酯 PC 微流控芯片中加入 R6G 和 R101 染料可提高荧光检测的分辨率和灵敏度。这种有限的微流控装置有利于超高分辨率的研究,并能最大限度地减少样品量,适用于需要精确测量的应用。这项创新依靠的是利用 R6G(罗丹明 6G)和 R101(罗丹明 101)染料的独特荧光特性来提高聚碳酸酯微流控装置的性能。R6G 具有较高的荧光量子产率和稳定性,适用于灵敏检测,而 R101 则具有出色的亮度和更强的抗光漂白能力。将这些染料加入聚合物微流控芯片可提高灵敏度,便于进行实时、动态的样品分析。这种方法提供了一种便携、经济、高通量的解决方案,大大提高了各种应用中的分析和处理精度。
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Fabrication and Fluorescence Analysis of Rhodamine Dyes in Polycarbonate Serpentine Microfluidic System.

The synthesis of rhodamine dyes (R6G and R1010) and their fluorescence characterization within polymer-based microfluidics, offers an exciting and novel approach in materials science and chemical analysis. This work investigates the emission of polycarbonate substrates (PC) by UV-visible. The ablation threshold (16mj.sec-1) of PC at 193nm wavelength after that ablation process continued to produce microfluidic serpentine channels on PC by using G-Code. The fluorescence characteristics of Rhodamine 6G and Rhodamine 101 are investigated. Absorption and emission at peak wavelength were analyzed against R6G and R101 concentrations. Furthermore, the refractive indices of both R6G and R101 vis concentrations are examined. As a result at low concentrations, there was the highest overlapping, and at high concentrations, there was the smallest overlapping. R101 showed better photostability and a more consistent diffusion, whereas R6G had a faster diffusion and stronger fluorescence intensity. These differences were caused by the different molecular structures of the dyes and their interactions with the PC microchannel. Incorporating R6G and R101 dyes into a polycarbonate PC microfluidic chip would enhances both the resolution and sensitivity of fluorescence detection. The limited microfluidic setup facilitates ultra-high-resolution investigation and minimizing sample volumes, making it suitable for applications requiring precise measurements. The innovation relies on the utilization of the unique fluorescence characteristics of R6G (Rhodamine 6G) and R101 (Rhodamine 101) dyes to enhance the performance of polycarbonate microfluidic devices. R6G has high fluorescence quantum yield and stability, rendering it suitable for sensitive detection, while R101 offers superior brightness and improved resistance to photobleaching. Incorporation of these dyes into polymeric microfluidics improves sensitivity and facilitates real-time, dynamic sample analysis. This method offers a portable, economical solution with high-throughput capabilities, greatly enhancing both analytical and process accuracy across a variety of applications.

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来源期刊
Journal of Fluorescence
Journal of Fluorescence 化学-分析化学
CiteScore
4.60
自引率
7.40%
发文量
203
审稿时长
5.4 months
期刊介绍: Journal of Fluorescence is an international forum for the publication of peer-reviewed original articles that advance the practice of this established spectroscopic technique. Topics covered include advances in theory/and or data analysis, studies of the photophysics of aromatic molecules, solvent, and environmental effects, development of stationary or time-resolved measurements, advances in fluorescence microscopy, imaging, photobleaching/recovery measurements, and/or phosphorescence for studies of cell biology, chemical biology and the advanced uses of fluorescence in flow cytometry/analysis, immunology, high throughput screening/drug discovery, DNA sequencing/arrays, genomics and proteomics. Typical applications might include studies of macromolecular dynamics and conformation, intracellular chemistry, and gene expression. The journal also publishes papers that describe the synthesis and characterization of new fluorophores, particularly those displaying unique sensitivities and/or optical properties. In addition to original articles, the Journal also publishes reviews, rapid communications, short communications, letters to the editor, topical news articles, and technical and design notes.
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