Low-Voltage, Printed, All-Polymer Integrated Circuits Employing a Low-Leakage and High-Yield Polymer Dielectric

  • Stucchi, Elena
  • Dell'Erba, Giorgio
  • Colpani, Paolo
  • Kim, Yun-Hi
  • Caironi, Mario
Citations

WEB OF SCIENCE

39
Citations

SCOPUS

40

초록

In the path toward the integration of organic field-effect transistors (OFETs) and logic circuits into low-cost and mass produced consumer products, all-organic devices based on printed semiconductors are one of the best options to meet stringent cost requirements. Within this framework, it is still challenging to achieve low voltage operation, as required by the use of thin film batteries and energy harvesters, for which a high capacitance and reliable organic dielectric is required. Here, the development of a parylene-C based dielectric bilayer compatible with top-gate architectures for low-voltage OFETs and logic circuits is presented. The polymer bilayer dielectric allows the high yield fabrication of all-polymer, bendable, transparent p- and n-type OFETs operating below 2 V, with low leakage, uniform performances, and high yield. Such a result is a key enabler for the reliable realization of complementary logic circuits that can operate already at a voltage bias of 2 V, such as well-balanced inverters, ring-oscillators and D-Flip-Flops.

키워드

flexible electronicsinkjet printingorganic field-effect transistorsparyleneprinted integrated circuitsFIELD-EFFECT TRANSISTORSORGANIC TRANSISTORSGATE DIELECTRICSHIGH-PERFORMANCELOGIC-CIRCUITSTHINOPPORTUNITIESGRAVUREPHYSICSPAPER
제목
Low-Voltage, Printed, All-Polymer Integrated Circuits Employing a Low-Leakage and High-Yield Polymer Dielectric
저자
Stucchi, ElenaDell'Erba, GiorgioColpani, PaoloKim, Yun-HiCaironi, Mario
DOI
10.1002/aelm.201800340
발행일
2018-12
유형
Article
저널명
Advanced Electronic Materials
4
12