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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초록

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

carbon nanotube (CNT)-carboxymethyl cellulose (CMC) compositegrid structuretransparent electrodesJoule heating electronic applicationTRANSPARENT ELECTRODEFABRICATIONDISPERSION
제목
High ratio carbon nanotube-carboxymethyl cellulose composite grid for Joule heating device
저자
Lee, WonjinLim, DoyeonKang, TaeseokLee, ChangjaeNoh, SeunghwanEun, Hyuk SooLee, Jin WooSong, Youngjun
DOI
10.1080/09243046.2025.2511361
발행일
2026-03
유형
Article; Early Access
저널명
Advanced Composite Materials