Wet Chemical-Synthesized Low-Loss Dielectric Composite Material Based on CuCl-Cu7S4 Nanoparticles and PVDF Copolymer

Polymer composites with high dielectric permittivity (>10) and low dielectric loss are critical for energy storage and microelectronic applications. This study reports on a semi-transparent composite of a PVDF copolymer filled with Cu7S4 nanoparticles synthesized via a wet chemical route. Only a small content (6%) of copper sulfide increases the dielectric permittivity of the material from 10.4 to 15.9 (1 kHz), maintaining a low dielectric loss coefficient (less than 0.1). The incorporated nanoparticles affect the morphology of the composite film surface and crystalline phases in the whole volume, which was studied with FTIR spectroscopy, differential scanning calorimetry and scanning probe microscopy. © 2025 by the authors.

Авторы
Mal’Tsev Alexander A. 1, 2 , Vodyashkin Andrey A. 2 , Buryanskaya Evgeniya L. 2, 3 , Koval Olga Yu 4 , Syuy A.V. 5 , Bibikov S.B. 1 , Maltseva I.E. 1 , Parshin B.A. 2 , Stoynova Anastasia M. 6 , Mikhalev Pavel A. 2 , Mstislav Makeev Olegovich 2
Журнал
Издательство
MDPI AG
Номер выпуска
13
Язык
Английский
Статус
Опубликовано
Номер
1845
Том
17
Год
2025
Организации
  • 1 Department of Electronics of Organic Materials, Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, Russian Federation
  • 2 Laboratory of Technologies of Polymer Ferroelectrics, Bauman Moscow State Technical University, Moscow, Moscow Oblast, Russian Federation
  • 3 Department of Materials Science of Semiconductors and Dielectrics, National University of Science & Technology (MISIS), Moscow, Moscow Oblast, Russian Federation
  • 4 National Research Centre "Kurchatov Institute", Moscow, Moscow Oblast, Russian Federation
  • 5 Department of General Physics, Perm National Research Polytechnic University, Perm, Perm Krai, Russian Federation
  • 6 Institute of Pharmacy and Biotechnology, RUDN University, Moscow, Moscow Oblast, Russian Federation
Ключевые слова
composite; copper sulfide; flexible electronic; low-loss dielectric; polymer dielectric; polyvinylidene fluoride
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