Recent Advances in Polymer Science and Fabrication Processes for Enhanced Microfluidic Applications: An Overview

被引:1
|
作者
Alexandre-Franco, Maria F. [1 ]
Kouider, Rahmani [2 ]
Kassir Al-Karany, Raul [3 ]
Cuerda-Correa, Eduardo M. [1 ]
Al-Kassir, Awf [3 ]
机构
[1] Univ Extremadura, Fac Ciencias, Dept Quim Organ Inorgan, Ave Elvas S-N, Badajoz 06006, Spain
[2] Ziane Achour Univ Djelfa, Dept Technol, Djelfa 17000, Algeria
[3] Univ Extremadura, Sch Ind Engineers, Badajoz 06006, Spain
关键词
microfluidic applications; polymer fabrication; biocompatible polymers; advanced microfluidics; organ-on-chip technology; ON-A-CHIP; LOW-COST; NANOIMPRINT LITHOGRAPHY; SURFACE MODIFICATION; ANALYTICAL DEVICES; THIOL-ENE; MICRO; GLASS; CELL; PDMS;
D O I
10.3390/mi15091137
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This review explores significant advancements in polymer science and fabrication processes that have enhanced the performance and broadened the application scope of microfluidic devices. Microfluidics, essential in biotechnology, medicine, and chemical engineering, relies on precise fluid manipulation in micrometer-sized channels. Recent innovations in polymer materials, such as flexible, biocompatible, and structurally robust polymers, have been pivotal in developing advanced microfluidic systems. Techniques like replica molding, microcontact printing, solvent-assisted molding, injection molding, and 3D printing are examined, highlighting their advantages and recent developments. Additionally, the review discusses the diverse applications of polymer-based microfluidic devices in biomedical diagnostics, drug delivery, organ-on-chip models, environmental monitoring, and industrial processes. This paper also addresses future challenges, including enhancing chemical resistance, achieving multifunctionality, ensuring biocompatibility, and scaling up production. By overcoming these challenges, the potential for widespread adoption and impactful use of polymer-based microfluidic technologies can be realized.
引用
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页数:53
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