Multilayer relaxor ferroelectric polymer stacks as data transmitter for real-time and programmable infrared information encryption

Y Yingke Zhu J Jianghan Wu Y Yang Luo K Kede Liu H Hyeonji Hong Y Yuxuan Guo (National Key Laboratory of Innovative Immunotherapy, Shanghai Frontiers Science Center of Drug Target Identification and Delivery, School of Pharmaceutical Sciences) Y Yuan Meng M Meng Gao (School of Physical Sciences and CAS Key Laboratory of Vacuum Physics) H Hanxiang Wu J Jiacheng Fan Y Yingjie Du P Ping He Q Qibing Pei

Abstract

Abstract Infrared information encryption is an emerging technique that leverages infrared (IR) radiation for secure data transmission. However, current IR encryption strategies fail to achieve real-time and precise data transmission, increasing the risk of information leakage. Here, utilizing a bistable adhesion polymer as a transfer medium, a multilayer relaxor ferroelectric polymer (RFP) stack is fabricated without additional thermal loads. An 8-layer RFP stack generates a rectangular temperature wave upon the application of an electric field. Its temperature rapidly increases from 22.1 °C to 26.3 °C and remains above 26 °C for over 8 s under an applied electric field of 80 MV/m at 0.01 Hz. Due to the instantaneous electrocaloric effects (temperature change rate up to10 -8 s/K) upon voltage application, the stack enables a real-time and programmable IR information encryption and decryption strategy. This approach highlights the potential of IR-based communication for secure data transmission, with applications in confidential messaging and optical encryption systems.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 25, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (13)

Y

Yingke Zhu

J

Jianghan Wu

Y

Yang Luo

K

Kede Liu

H

Hyeonji Hong

Y

Yuxuan Guo

National Key Laboratory of Innovative Immunotherapy, Shanghai Frontiers Science Center of Drug Target Identification and Delivery, School of Pharmaceutical Sciences

Y

Yuan Meng

M

Meng Gao

School of Physical Sciences and CAS Key Laboratory of Vacuum Physics

H

Hanxiang Wu

J

Jiacheng Fan

Y

Yingjie Du

P

Ping He

Q

Qibing Pei