Luffa cylindrica-inspired powerless micropump: long-term, high-flow operation and energy-generation application

  • Woo, Jungjae; 
  • Seo, Jeongmin; 
  • Cho, Hyewon; 
  • Park, Soeun; 
  • Han, Changsoo; 
  • ... Kim, Hyejeong
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Powerless micropumps are in increasing demand for applications requiring portability, simplicity, and long-term operation. However, several existing passive pumps have limitations such as sustained high flow rates and extended operational periods. Inspired by the unique structural characteristics of Luffa cylindrica, this study aims to develop a biomimetic micropump capable of long-term and high-flow operation. By examining the water transport mechanisms in a hierarchical porous structure, we designed and fabricated micropumps that replicate these mechanisms. A key aspect of this design is the integration of flow resistors, which enables precise control over the absorption rates and extend the pumping duration. The cone-shaped agarose aerogel (AAG) micropump operates for over 930 min with an average flow rate of 5.6 mu l min-1, demonstrating significant longevity. The agarose superabsorbent polymer aerogel (ASAG) micropump, while having a shorter operational duration of approximately 620 min, exhibited a significantly higher average pumping rate of 13.2 mu l min-1. This study highlights the potential of bio-inspired designs for advancing efficient and powerless pumping systems. The proposed micropump shows promise for applications in microfluidic devices and reverse electrodialysis systems, where continuous and sustainable fluid transport is essential.

키워드

Agarose; Polyacrylic Acid; Potassium Chloride; Potassium Ion; Sodium; Water; Fluidic Logic Devices; Microfluidics; Agarose; Energy Generations; High Flow; High-flow Rate; Luffa Cylindrica; Micro Pump; Operational Periods; Passive Pumps; Structural Characteristics; Water Transport; Pumps; Aerogel; Agarose; Counterion; Electrolyte Solution; Polyacrylic Acid; Polymer; Potassium Chloride; Potassium Ion; Sodium; Sugar; Water; Anion Exchange; Article; Body Weight Change; Capillary Pressure; Cation Exchange; Controlled Study; Electric Potential; Electrodialysis; Energy Resource; Environmental Factor; Environmental Monitoring; Flow Rate; Fluid Transport; Longevity; Luffa Aegyptiaca; Particle Image Velocimetry; Permeability; Pore Size; Pore Size Distribution; Porosity; Relative Humidity; Room Temperature; Time Interval; Water Absorption; Water Transport; Equipment Design; Equipment Design; POROUS-MEDIA; PERMEABILITY; CAPILLARY
제목
Luffa cylindrica-inspired powerless micropump: long-term, high-flow operation and energy-generation application
저자
Woo, Jungjae; Seo, Jeongmin; Cho, Hyewon; Park, Soeun; Han, Changsoo; Kim, Hyejeong
DOI
10.1039/d5lc00068h
발행일
2025-04-08
유형
Article
저널명
Lab on a Chip
권
25
호
8
페이지
1968 ~ 1980