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Microfluidics for ZnO micro-/nanomaterials development: Rational design, controllable synthesis, and on-chip bioapplications

  • Dartmouth College
  • Lawrenceville School

Research output: Contribution to journalReview articlepeer-review

51 Scopus citations

Abstract

Zinc oxide (ZnO) materials hold great promise in diverse applications due to their attractive physicochemical features. Recent years, especially the last decade, have witnessed considerable progress toward rational design and bioapplications of multiscale ZnO materials through microfluidic techniques. Design of a microfluidic device that allows for precise control over reaction conditions could not only yield ZnO particles with a fast production rate and high quality, but also permit downstream applications with desirable and superior performance. This review summarizes microfluidic approaches for the synthesis and applications of ZnO micro-/nanomaterials. In particular, we discuss the recent achievement of using microfluidic reactors in the controllable synthesis of ZnO structures (wire, rod, sphere, flower, sheet, flake, spindle, and ellipsoid), and highlight the unprecedented opportunities for applying them in biosensing, biological separation, and molecular catalysis applications through microfluidic chips. Finally, major challenges and potential opportunities are explored to guide future studies in this area.

Original languageEnglish
Pages (from-to)1783-1801
Number of pages19
JournalBiomaterials Science
Volume8
Issue number7
DOIs
StatePublished - 7 Apr 2020
Externally publishedYes

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