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Dielectric and energy storage properties of surface-modified BaTi0.89Sn0.11O3@polydopamine nanoparticles embedded in a PVDF-HFP matrix.
Zahid, Marwa; Touili, Salma; Amjoud, M'barek; Mezzane, Daoud; Gouné, Mohamed; Ursic, Hana; Sadl, Matej; Elamraoui, Youssef; Hoummada, Khalid; Kutnjak, Zdravko; El Marssi, Mimoun.
Afiliação
  • Zahid M; IMED-Lab, Cadi-Ayyad University, FST Marrakech 40000 Morocco marwa.zahid@ced.uca.ma.
  • Touili S; IMED-Lab, Cadi-Ayyad University, FST Marrakech 40000 Morocco marwa.zahid@ced.uca.ma.
  • Amjoud M; LPMC, University of Picardie Jules Verne Amiens 80039 France.
  • Mezzane D; IMED-Lab, Cadi-Ayyad University, FST Marrakech 40000 Morocco marwa.zahid@ced.uca.ma.
  • Gouné M; IMED-Lab, Cadi-Ayyad University, FST Marrakech 40000 Morocco marwa.zahid@ced.uca.ma.
  • Ursic H; LPMC, University of Picardie Jules Verne Amiens 80039 France.
  • Sadl M; ICMCB, University of Bordeaux Pessac 33600 France.
  • Elamraoui Y; Jozef Stefan Institute Jamova Cesta 39 Ljubljana 1000 Slovenia.
  • Hoummada K; Jozef Stefan Institute Jamova Cesta 39 Ljubljana 1000 Slovenia.
  • Kutnjak Z; LaMCScI, Faculty of Science, Mohammed V University BP 1014 Rabat Morocco.
  • El Marssi M; IM2NP, Aix Marseille University Marseille 13397 France.
RSC Adv ; 13(37): 26041-26049, 2023 Aug 29.
Article em En | MEDLINE | ID: mdl-37664189
ABSTRACT
In the most recent electronic and electric sectors, ceramic-polymer nanocomposites with high dielectric permittivity and energy density are gaining popularity. However, the main obstacle to improving the energy density in flexible nanocomposites, besides the size and morphology of the ceramic filler, is the low interfacial compatibility between the ceramic and the polymer. This paper presents an alternative solution to improve the dielectric permittivity and energy storage properties for electronic applications. Here, the poly(vinylidene fluoride-hexafluoropropylene) (PVDF-HFP) matrix is filled with surface-modified BaTi0.89Sn0.11O3/polydopamine nanoparticles (BTS11) nanoparticles, which is known for exhibiting multiphase transitions and reaching a maximum dielectric permittivity at room temperature. BTS11 nanoparticles were synthesized by a sol-gel/hydrothermal method at 180 °C and then functionalized by polydopamine (PDA). As a result, the nanocomposites exhibit dielectric permittivity (εr) of 46 and a low loss tangent (tan δ) of 0.017 at 1 kHz at a relatively low weight fraction of 20 wt% of BTS11@PDA. This is approximately 5 times higher than the pure PVDF-HFP polymer and advantageous for energy storage density in nanocomposites. The recovered energy storage for our composites reaches 134 mJ cm-3 at an electric field of 450 kV cm-1 with a high efficiency of 73%. Incorporating PDA-modified BTS11 particles into the PVDF-HFP matrix demonstrates highly piezo-active regions associated with BTS11 particles, significantly enhancing functional properties in the polymer nanocomposites.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Revista: RSC Adv Ano de publicação: 2023 Tipo de documento: Article