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Review

Harnessing Microfluidics for the Effective and Precise Synthesis of Advanced Materials

Department of Engineering Mechanics, State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, China
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Author to whom correspondence should be addressed.
Micromachines 2025, 16(10), 1106; https://doi.org/10.3390/mi16101106
Submission received: 30 August 2025 / Revised: 24 September 2025 / Accepted: 26 September 2025 / Published: 28 September 2025

Abstract

Microfluidic methods are powerful platforms for synthesizing advanced functional materials because they allow for precise control of microscale reaction environments. Microfluidics manipulates reactants in lab-on-a-chip systems to enable the fabrication of highly uniform materials with tunable properties, which are crucial for drug delivery, diagnostics, catalysis, and nanomaterial design. This review emphasizes recent progress in microfluidic technologies for synthesizing functional materials, with a focus on polymeric, hydrogel, lipid-based, and inorganic particles. Microfluidics provides exceptional control over the size, morphology, composition, and surface chemistry of materials, thereby enhancing their performance through uniformity, tunability, hierarchical structuring, and on-chip functionalization. Our review provides novel insights by linking material design strategies with fabrication methods tailored to biomedical applications. We also discuss emerging trends, such as AI-driven optimization, automation, and sustainable microfluidic practices, offering a practical and forward-looking perspective. As the field advances toward robust, standardized, and user-friendly platforms, microfluidics has the potential to increase industrial adoption and enable on-demand solutions in nanotechnology and personalized medicine.
Keywords: microfluidics; advanced materials; precise synthesis; particle microfluidics; advanced materials; precise synthesis; particle

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MDPI and ACS Style

Qi, X.; Hu, G. Harnessing Microfluidics for the Effective and Precise Synthesis of Advanced Materials. Micromachines 2025, 16, 1106. https://doi.org/10.3390/mi16101106

AMA Style

Qi X, Hu G. Harnessing Microfluidics for the Effective and Precise Synthesis of Advanced Materials. Micromachines. 2025; 16(10):1106. https://doi.org/10.3390/mi16101106

Chicago/Turabian Style

Qi, Xinlei, and Guoqing Hu. 2025. "Harnessing Microfluidics for the Effective and Precise Synthesis of Advanced Materials" Micromachines 16, no. 10: 1106. https://doi.org/10.3390/mi16101106

APA Style

Qi, X., & Hu, G. (2025). Harnessing Microfluidics for the Effective and Precise Synthesis of Advanced Materials. Micromachines, 16(10), 1106. https://doi.org/10.3390/mi16101106

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