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High ratio carbon nanotube-carboxymethyl cellulose composite grid for Joule heating device
- Lee, Wonjin;
- Lim, Doyeon;
- Kang, Taeseok;
- Lee, Changjae;
- Noh, Seunghwan;
- ... Lee, Jin Woo;
- 외 2명
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0초록
This study reports on the fabrication and characterization of a carbon nanotube (CNT)-carboxymethyl cellulose (CMC) composite grid structure for transparent Joule heating electronic applications. Using flexible polydimethylsiloxane mold, we fabricated a large-scale 4-inch CNT-CMC composite grid with 500 mu m line pattern. The grid structure achieved an overall average transmittance of 67.87% at 550 nm, with variations ranging from 43.61% to 92.80% across different measurement zones. The electrical properties were optimized by varying CNT content from 20-40%, achieving a significant resistance reduction from 26 M Omega to 4 k Omega. The CNT-CMC grid structures demonstrated complete resistance recovery after 30-degree bending deformation. For Joule heating characteristics, the device reached 25.0 degrees C at 600 mW (30 V, 20 mA) and 25.7 degrees C at 900 mW (30 V, 30 mA), demonstrating long-term stability by maintaining 34.5 degrees C for over two hours. These results highlight the potential of CNT composite grids in wearable devices, automotive defrosters, and other flexible electronics requiring stable electrical and thermal performance.
키워드
- 제목
- High ratio carbon nanotube-carboxymethyl cellulose composite grid for Joule heating device
- 저자
- Lee, Wonjin; Lim, Doyeon; Kang, Taeseok; Lee, Changjae; Noh, Seunghwan; Eun, Hyuk Soo; Lee, Jin Woo; Song, Youngjun
- 발행일
- 2026-03
- 유형
- Article; Early Access