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Highly Flexible, Conductive, and Antibacterial Surfaces Toward Multifunctional Flexible Electronics
- Ruzgar, Duygu Gazioglu;
- Akin, Semih;
- Lee, Seungjun;
- Walsh, Julia;
- Lee, Hyowon Hugh;
- ... Jeong, Young Hun;
- 외 3명
WEB OF SCIENCE
4SCOPUS
4초록
Conductive metallization of polymer surfaces, owing to the integration of unique features of dissimilar materials (i.e., polymer + metal), is becoming the central focus in flexible polymer electronics. However, fabrication of multifunctional surfaces on polymers in a high-throughput and robust manner at ambient conditions remains challenging. In this study, we employ the cold spray (CS) particle deposition technique to produce multifunctional hybrid surfaces on a flexible polymeric substrate (PET) toward flexible electronics. In this regard, soft metal particles (Sn), are deposited on the polymer surface as an "interlayer" followed by the over-coating of hard metal (Cu) film to create hybrid (Sn + Cu) surfaces. Studies on microstructure, adhesion strength, and water contact angle are conducted to characterize the resulting surface structure. By leveraging the optimum CS settings, multifunctional surfaces with promising electrical conductivity (5.96 x 10(5) S.m(-1)), flexibility, adhesive strength, and hydrophobicity (contact angle approximate to 122 degrees) were achieved. Moreover, the antibacterial performance of the surface is confirmed by the in vitro antibacterial tests in a manner that > 99% of the bacteria were inhibited. This work provides a promising strategy for high-throughput manufacturing of multifunctional surfaces (flexible + conductive + antibacterial surfaces) toward multifunctional flexible electronics.
키워드
- 제목
- Highly Flexible, Conductive, and Antibacterial Surfaces Toward Multifunctional Flexible Electronics
- 저자
- Ruzgar, Duygu Gazioglu; Akin, Semih; Lee, Seungjun; Walsh, Julia; Lee, Hyowon Hugh; Jeong, Young Hun; Jeon, Yongho; Baek, Seung-Yub; Jun, Martin Byung-Guk
- 발행일
- 2024-11
- 유형
- Article
- 권
- 11
- 호
- 6
- 페이지
- 1823 ~ 1836
- 언어
- ENG
- 출판사
- KOREAN SOC PRECISION ENG
- 발행국가
- 대한민국
- 분량
- 14 페이지
- ISSN
- E 2198-0810
P 2288-6206