Liquid metal as a transformative material for flexible thermal cycling and point-of-care PCR

  • Kim, Jiwon
  • Choi, Yonghyun
  • Jang, Jaehee
  • Son, Jaewoo
  • Lee, Hee-Young
  • ... Choi, Jonghoon
  • 외 3명
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초록

The increasing demand for decentralized pathogen detection has accelerated the development of miniaturized and flexible polymerase chain reaction (PCR) systems. While conventional reviews focus primarily on macro-to-micro structural downscaling, they rarely address two fundamental physical bottlenecks in tandem: the high thermal inertia of solid heaters and the extreme mechanical impedance mismatch at rigid-soft interfaces. This paper systematically reviews how gallium-based liquid metals (LMs) uniquely resolve these long-standing dilemmas by merging high metallic conductivity (similar to 3.4 & times; 10(6) S/m) with intrinsic fluidity. We explore how these fluidic alloys achieve ultrafast thermal ramping rates exceeding 10 degrees C/s while maintaining stable operation under mechanical deformations beyond 100% strain, making them ideal for wearable and epidermal diagnostics. Key thermal actuation strategies-Joule, induction (>15 degrees C/s), and photothermal heating-are quantitatively evaluated alongside representative case studies of fully integrated, sample-to-answer modules. Finally, we identify critical engineering challenges in leakage control and power management, establishing a comprehensive roadmap for LM microfluidics to revolutionize personalized healthcare and mobile health monitoring.

키워드

Liquid metalStretchable PCRWearable diagnosticsUltrafast thermal cyclingLab-on-a-ChipNUCLEIC-ACID AMPLIFICATIONQUANTIFICATIONDIAGNOSTICSCOMPOSITESALLOY
제목
Liquid metal as a transformative material for flexible thermal cycling and point-of-care PCR
저자
Kim, JiwonChoi, YonghyunJang, JaeheeSon, JaewooLee, Hee-YoungKoo, Hyung-JunLee, Hyun HoSo, Ju-HeeChoi, Jonghoon
DOI
10.1016/j.talanta.2026.130278
발행일
2027-02
유형
Article
저널명
Talanta
312