Metal microparticle - Polymer composites as printable, bio/ecoresorbable conductive inks

  • Lee, Seungae; 
  • Koo, Jahyun; 
  • Kang, Seung-Kyun; 
  • Park, Gayoung; 
  • Lee, Yung Jong; 
  • ... Lee, Kyung-Mi; 
  • 외 3명
Citations

WEB OF SCIENCE

76
Citations

SCOPUS

82

초록

Biologically and environmentally resorbable electronic devices support application possibilities that cannot be addressed with conventional technologies. This paper presents highly conductive, water-soluble composites that can be printed to form contacts, interconnects, antennas, and other important features that are essential to nearly all systems of this type. An optimized material formulation involves in situ polymerization to yield a polyanhydride containing a dispersion of molybdenum microparticles at appropriate concentrations. Comparisons of essential physical and electrical properties of these materials to those of composites formed with other polymers and other metal microparticles reveal the relevant considerations. Various functional demonstrations of screen-printed test structures and devices illustrate the suitability of these conductive inks for use in water-soluble electronic devices. A key advantage of the material introduced here compared to alternatives is its ability to maintain conductance over significant periods of time while immersed in relevant aqueous solutions. Studies involving live animal models establish the biocompatibility.

키워드

BIODEGRADABLE MATERIALS; TRANSIENT ELECTRONICS; STRAIN SENSORS; NANOCOMPOSITES; TRANSISTORS; ELASTOMERS; FILLER; LAYERS; CELLS; FILMS
제목
Metal microparticle - Polymer composites as printable, bio/ecoresorbable conductive inks
저자
Lee, Seungae; Koo, Jahyun; Kang, Seung-Kyun; Park, Gayoung; Lee, Yung Jong; Chen, Yu-Yu; Lim, Seon Ah; Lee, Kyung-Mi; Rogers, John A.
DOI
10.1016/j.mattod.2017.12.005
발행일
2018-04
유형
Article
저널명
Materials Today
권
21
호
3
페이지
207 ~ 215