Ultrafast Metaphotonic PCR Chip with Near‐Perfect Absorber

Author:

Kim Inki12,Kim Hongyoon3,Go Myeongcheol4,Lee Seho12,Nguyen Dang Du12,Kim Seongryeong12,Shrestha Kiran12,Alsaadi Abdulrahman12,Jeon Youngsun3,Jeong Sebin4,Cho Gyoujin12,Kim Jin Kon4,Rho Junsuk34567ORCID,Lee Luke P.189

Affiliation:

1. Department of Biophysics Institute of Quantum Biophysics Sungkyunkwan University Suwon 16419 Republic of Korea

2. Department of Intelligent Precision Healthcare Convergence Sungkyunkwan University Suwon 16419 Republic of Korea

3. Department of Mechanical Engineering Pohang University of Science and Technology (POSTECH) Pohang 37673 Republic of Korea

4. Department of Chemical Engineering Pohang University of Science and Technology (POSTECH) Pohang 37673 Republic of Korea

5. Department of Electrical Engineering Pohang University of Science and Technology (POSTECH) Pohang 37673 Republic of Korea

6. POSCO‐POSTECH‐RIST Convergence Research Center for Flat Optics and Metaphotonics Pohang 37673 Republic of Korea

7. National Institute of Nanomaterials Technology (NINT) Pohang 37673 Republic of Korea

8. Department of Medicine Brigham and Women's Hospital Harvard Medical School Boston MA 02115 USA

9. Department of Bioengineering Department of Electrical Engineering and Computer Science University of California Berkeley CA 94720 USA

Abstract

AbstractPolymerase chain reaction (PCR) is the gold standard for nucleic acid amplification and quantification in diverse fields such as life sciences, global health, medicine, agricultural science, forensic science, and environmental science for global sustainability. However, implementing a cost‐effective PCR remains challenging for rapid preventive medical action to the widespread pandemic diseases due to the absence of highly efficient and low‐cost PCR chip‐based POC molecular diagnostics. Here, this work reports an ultrafast metaphotonic PCR chip as a solution of a cost‐effective and low‐power‐consumption POC device for the emerging global challenge of sustainable healthcare. This work designs a near‐perfect photonic meta‐absorber using ring‐shaped titanium nitride to maximize the photothermal effect and realize rapid heating and cooling cycles during the PCR process. This work fabricates a large‐area photonic meta‐absorber on a 6‐inch wafer cost‐effectively using simple colloidal lithography. In addition, this work demonstrates 30 thermocycles from 65 (annealing temperature) to 95 °C (denaturation temperature) within 3 min 15 s, achieving an average 16.66 °C s−1 heating rate and 7.77 °C s−1 cooling rate during thermocycling, succeeding rapid metaphotonic PCR. This work believes a metaphotonic PCR chip can be used to create a low‐cost, ultrafast molecular diagnostic chip with a meta‐absorber.

Funder

National Institutes of Health

National Research Foundation of Korea

Publisher

Wiley

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