微流控
纳米技术
拉曼散射
数字微流体
材料科学
微流控芯片
计算机科学
拉曼光谱
光电子学
电润湿
物理
光学
电介质
作者
Xiangdong Yu,Sohyun Park,Sungwoon Lee,Sang‐Woo Joo,Jaebum Choo
标识
DOI:10.1186/s40580-024-00424-7
摘要
This review reports diverse microfluidic systems utilizing surface-enhanced Raman scattering (SERS) detection for disease diagnosis. Integrating SERS detection technology, providing high-sensitivity detection, and microfluidic technology for manipulating small liquid samples in microdevices has expanded the analytical capabilities previously confined to larger settings. This study explores the principles and uses of various SERS-based microfluidic devices developed over the last two decades. Specifically, we investigate the operational principles of documented SERS-based microfluidic devices, including continuous-flow channels, microarray-embedded microfluidic channels, droplet microfluidic channels, digital droplet channels, and gradient microfluidic channels. We also examine their applications in biomedical diagnostics. In conclusion, we summarize the areas requiring further development to translate these SERS-based microfluidic technologies into practical applications in clinical diagnostics.
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