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Related Experiment Video

Updated: Jun 18, 2025

Millifluidics for Chemical Synthesis and Time-resolved Mechanistic Studies
12:55

Millifluidics for Chemical Synthesis and Time-resolved Mechanistic Studies

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Microfluidic Synthesis of Multifunctional Micro-/Nanomaterials from Process Intensification: Structural Engineering

Xingjiang Wu1, An Chen2, Xude Yu2

  • 1National-Local Joint Engineering Laboratory for Energy Conservation in Chemical Process Integration and Resources Utilization, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300130, China.

ACS Nano
|August 1, 2024
PubMed
Summary

Microfluidic synthesis enables mass production of advanced micro-/nanomaterials for superior electrochemical energy storage. This review details their structural engineering and applications in batteries and supercapacitors.

Keywords:
electrochemical energy storagefluid manipulationmass/heat transfermicro-/nanomaterialsmicrochannel configurationmicrofluidicprocess intensificationstructural engineeringwell-controlled structure

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Area of Science:

  • Materials Science
  • Electrochemistry
  • Nanotechnology

Background:

  • Multifunctional micro-/nanomaterials are crucial for advanced electrochemical energy storage.
  • Microfluidic synthesis offers precise control and mass production capabilities.

Purpose of the Study:

  • To review recent advancements in microfluidic-synthesized multifunctional micro-/nanomaterials.
  • To discuss their synthesis, structural engineering, and energy storage applications.

Main Methods:

  • Summarizing progress in microfluidic synthesis for materials like quantum dots, metal oxides, and 2D materials.
  • Detailing structural engineering principles (e.g., heterostructures, core-shell).

Main Results:

  • Microfluidics enables intensified reaction processes and tunable micro-/nanostructures.
  • These materials show promise in supercapacitors, Li-ion/Na-ion batteries, and flow batteries.

Conclusions:

  • Microfluidic synthesis is a powerful tool for developing high-performance energy storage materials.
  • Future research should address current challenges and explore new applications.