A Novel Polymeric Substrate with Dual-Porous Structures for High-Performance Inkjet-Printed Flexible Electronic Devices

  • Soum, Veasna; 
  • Lehmann, Viktor; 
  • Lee, Huckjin; 
  • Khan, Sovann; 
  • Kwon, Oh-Sun; 
  • ... Shin, Kwanwoo
Citations

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7

초록

Inkjet printing has emerged as a promising low-cost and high-performance method for manufacturing printing-based devices. However, the development of optimized substrates for inkjet printing using novel materials is limited. In this study, a novel polymeric substrate optimized for flexible electronic devices is fabricated using thin-film processing and phase inversion of polyethersulfone (PES). The PES film consists of two layers of pores; the upper layer has nano-sized pores that filter the nanoparticles in the conductive ink and allow for high-density aggregation on the substrate, while the lower layer contains micro-scale pores that quickly absorb and drain the ink solvent. The two porous structures lead to higher conductivity and high-resolution printed patterns by minimizing solvent lateral diffusion. Additionally, the PES printing substrate can undergo high-temperature curing of metal nanoparticles, enabling high-resolution pattern printing with low resistance. The PES substrate is highly transparent and flexible, allowing for the fabrication of various printed electronic patterns and the production of high-performance flexible electronic devices.

키워드

inkjet printing; porosity; printed heaters; printing electronics; thin-film printing substrates; ZNS NANOPARTICLES; SOLID-STATE; PAPER; SUPERCAPACITORS; FABRICATION
제목
A Novel Polymeric Substrate with Dual-Porous Structures for High-Performance Inkjet-Printed Flexible Electronic Devices
저자
Soum, Veasna; Lehmann, Viktor; Lee, Huckjin; Khan, Sovann; Kwon, Oh-Sun; Shin, Kwanwoo
DOI
10.1002/mame.202300107
발행일
2023-10
유형
Article
저널명
Macromolecular Materials and Engineering
권
308
호
10