Unveiling the role of lateral charge intrusion in the humidity stability of giant surface potentials: Toward reliable organic electret applications
Abstract
Giant surface potentials (GSPs) generated by spontaneous orientation polarization in vacuum-deposited organic films have attracted considerable attention for applications such as vibrational energy harvesting. However, their stability under humid conditions remains poorly understood. In this study, we systematically investigate the humidity-dependent degradation of GSPs using two representative materials with contrasting electrical properties: insulating a perfluoro-adamantane derivative (PTAA) and more conductive diarylethene derivative (DAE1). While PTAA exhibits excellent stability, DAE1 shows significant potential decay under humid conditions.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (6)
Tsuyoshi Tsujioka
Division of Math, Sciences, and Information Technology in Education, Osaka Kyoiku University 1 , 4-698-2, Asahigaoka, Kashiwara, Osaka 582-8582,
Hiroyuki Kawashima
Kenji Koike
Tosoh Corp 2 ., 2743-1, Hayakawa, Ayase, Kanagawa 252-1123,
Yohei Ono
Tosoh Corp 2 ., 2743-1, Hayakawa, Ayase, Kanagawa 252-1123,
Junwei Shen
Research and Education Institute for Semiconductors and Informatics, Kumamoto University 3 , 2-39-1, Kurokami, Chuo, Kumamoto 860-8555,
Shinichiro Nakamura