TY - JOUR
T1 - Ultra-fast, Self-destructing technology based on autocatalytic energetic conductive ink
AU - Wang, Yutao
AU - Zhang, Cailing
AU - Pang, Zhenguo
AU - Ma, Zhonglaing
AU - He, Wei
AU - Liu, Peijin
AU - Zhang, Yongli
N1 - Publisher Copyright:
© 2024 Elsevier B.V.
PY - 2024/11/15
Y1 - 2024/11/15
N2 - Transient electronics show promising potential in data security and privacy preservation. Key criteria for transient electronic devices include quick production, short lifespan, and irreversible degradation. This article proposes a novel energetic conductive ink (EILs-Fc-SWNTs/EMOFs) with ultra-fast self-destruct performance for information protection. The ink based on carbon nanotubes modified with energetic ionic liquids and combustion rate catalysts, has advantages of high conductivity, high energy properties, and rapid production. Transient electronic devices containing micro-storage chips are achieved through direct writing technology. The writing circuit exhibits excellent conductivity (65.57 S/cm), high flexibility (2000 bending cycles), and high-energy characteristics (1640.3 J/g). The combustion temperature of the printing circuit is estimated at approximately 2100 °C. More importantly, transient electronics device commercial storage chips can be destroyed within 0.9 s.
AB - Transient electronics show promising potential in data security and privacy preservation. Key criteria for transient electronic devices include quick production, short lifespan, and irreversible degradation. This article proposes a novel energetic conductive ink (EILs-Fc-SWNTs/EMOFs) with ultra-fast self-destruct performance for information protection. The ink based on carbon nanotubes modified with energetic ionic liquids and combustion rate catalysts, has advantages of high conductivity, high energy properties, and rapid production. Transient electronic devices containing micro-storage chips are achieved through direct writing technology. The writing circuit exhibits excellent conductivity (65.57 S/cm), high flexibility (2000 bending cycles), and high-energy characteristics (1640.3 J/g). The combustion temperature of the printing circuit is estimated at approximately 2100 °C. More importantly, transient electronics device commercial storage chips can be destroyed within 0.9 s.
KW - Direct writing printing
KW - Energetic conductive ink
KW - Transient electronics
UR - http://www.scopus.com/inward/record.url?scp=85207012694&partnerID=8YFLogxK
U2 - 10.1016/j.cej.2024.156412
DO - 10.1016/j.cej.2024.156412
M3 - 文章
AN - SCOPUS:85207012694
SN - 1385-8947
VL - 500
JO - Chemical Engineering Journal
JF - Chemical Engineering Journal
M1 - 156412
ER -