Advances in droplet microfluidics: a comprehensive review of innovations, morphology, dynamics, and applications

IF 2.3 4区 工程技术 Q2 INSTRUMENTS & INSTRUMENTATION
Sreeja Sadasivan, S. Pradeep, Jishnu Chandran Ramachandran, Jayaprakash Narayan, Michał Jan Gęca
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Abstract

Droplet microfluidics is a rapidly evolving area of research with significant implications in bioengineering, drug delivery, chemical synthesis, environmental monitoring, and micro-scale electronics manufacturing. Recent advancements in droplet generation methods, including the use of electric fields and acoustic waves, have been driven by related technological developments. These innovations have enabled the creation of droplets with a wide range of sizes, shapes, and compositions, opening new frontiers for droplet microfluidic applications. This study reviews recent advances in droplet formation within microfluidic channels, beginning with an overview of droplet microfluidics and followed by an analysis of the various techniques used for droplet formation. The paper examines the impact of channel geometry, fluid flow rates, and channel wall surface properties on droplet formation. Additionally, it discusses the control of microfluidic droplets and the diverse applications of droplet microfluidics. The study also analyzes the morphological changes of droplets in response to variations in different controlling factors and presents an overview of compound droplet microfluidics, highlighting its technological aspects and significance across various applications. The influential factors governing the dynamics of compound droplets and their respective effects are briefly reviewed throughout the study. In conclusion, the paper identifies the major challenges and opportunities associated with microfluidic droplet dynamics and outlines emerging areas based on this technology. Overall, it provides a comprehensive overview of recent developments in droplet formation within microfluidic channels.

Abstract Image

液滴微流体的进展:创新、形态、动力学和应用的综合综述
液滴微流体是一个快速发展的研究领域,在生物工程、药物输送、化学合成、环境监测和微电子制造等领域具有重要意义。液滴生成方法的最新进展,包括电场和声波的使用,是由相关技术发展推动的。这些创新使得液滴具有广泛的尺寸,形状和成分,为液滴微流体应用开辟了新的领域。本研究回顾了微流体通道内液滴形成的最新进展,从液滴微流体的概述开始,然后分析了用于液滴形成的各种技术。本文研究了通道几何形状、流体流速和通道壁面性质对液滴形成的影响。此外,还讨论了微流控液滴的控制以及液滴微流控的各种应用。分析了微滴在不同控制因素变化下的形态变化,并对复合微滴微流控技术进行了综述,重点介绍了复合微滴微流控技术的技术方面及其在各种应用中的意义。简要介绍了控制复合液滴动力学的影响因素及其各自的作用。总之,本文确定了微流体液滴动力学的主要挑战和机遇,并概述了基于该技术的新兴领域。总的来说,它提供了微流体通道内液滴形成的最新发展的全面概述。
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来源期刊
Microfluidics and Nanofluidics
Microfluidics and Nanofluidics 工程技术-纳米科技
CiteScore
4.80
自引率
3.60%
发文量
97
审稿时长
2 months
期刊介绍: Microfluidics and Nanofluidics is an international peer-reviewed journal that aims to publish papers in all aspects of microfluidics, nanofluidics and lab-on-a-chip science and technology. The objectives of the journal are to (1) provide an overview of the current state of the research and development in microfluidics, nanofluidics and lab-on-a-chip devices, (2) improve the fundamental understanding of microfluidic and nanofluidic phenomena, and (3) discuss applications of microfluidics, nanofluidics and lab-on-a-chip devices. Topics covered in this journal include: 1.000 Fundamental principles of micro- and nanoscale phenomena like, flow, mass transport and reactions 3.000 Theoretical models and numerical simulation with experimental and/or analytical proof 4.000 Novel measurement & characterization technologies 5.000 Devices (actuators and sensors) 6.000 New unit-operations for dedicated microfluidic platforms 7.000 Lab-on-a-Chip applications 8.000 Microfabrication technologies and materials Please note, Microfluidics and Nanofluidics does not publish manuscripts studying pure microscale heat transfer since there are many journals that cover this field of research (Journal of Heat Transfer, Journal of Heat and Mass Transfer, Journal of Heat and Fluid Flow, etc.).
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