微流控
微流控芯片
毛细管作用
生物测定
试剂
纳米技术
炸薯条
化学
材料科学
色谱法
生物医学工程
计算机科学
工程类
生物
复合材料
电信
遗传学
物理化学
作者
Cheng Nie,Hyorim Jeong,Kyung‐A Hyun,Sun‐Young Park,Hyo‐Il Jung
出处
期刊:Analyst
[Royal Society of Chemistry]
日期:2024-01-01
卷期号:149 (15): 4072-4081
被引量:5
摘要
diagnostics; however, they cannot achieve a high mixing efficiency, particularly in some time-consuming biological reactions. Herein, we introduce a microfluidic reverse-Tesla (reTesla) valve structure in which the fluid is affected by vortices and branch flow convergence, resulting in flow retardation and a high degree of mixing. The reTesla is passively operated by a microfluidic capillary force without any pumping facility. Compared with our previously developed micromixers, this innovative pumpless microfluidic chip exhibited high performance, with a mixing efficiency of more than 93%. The versatility of our reTesla chip will play a pivotal role in the study of various biological and chemical reactions.
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