Advanced Materials · 2020 · 74 citations · 33 references
Composed of electrocaloric (EC) ceramics and polymers, polymer composites with high EC performances are considered as promising candidates for next-generation all-solid-state cooling devices. Their mass application is limited by the low EC strength, which requires very high operational voltage to induce appreciable temperature change. Here, an all-scale hierarchical architecture is proposed and demonstrated to achieve high EC strength in poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene)-based nanocomposites. On the atomic scale, highly polarizable hierarchical interfaces are induced by incorporating BiFeO<sub>3</sub> (BFO) nanoparticles in Ba(Zr<sub>0.21</sub> Ti<sub>0.79</sub> )O<sub>3</sub> (BZT) nanofibers (BFO@BZT_nfs); on the microscopic scale, percolation of the interfaces further raises the polarization of the composite nanofibers; on the mesoscopic scale, orthotropic orientation of BFO@BZT_nfs leads to much enhanced breakdown strength of the nanocomposites. As a result, an ultrahigh EC strength of ≈0.22 K m MV<sup>-1</sup> is obtained at an ultralow electric field of 75 MV m<sup>-1</sup> in nanocomposites filled with the orthotropic composite nanofibers, which is by far the highest value achieved in polymer nanocomposites at a moderate electric field. Results of high-angle annular dark-field scanning transmission electron microscopy, in situ scanning Kelvin probe microscopy characterization, and phase-field simulations all indicate that the much enhanced EC performances can be attributed to the all-scale hierarchical structures of the nanocomposite.
33
Large Electrocaloric Effect in Ferroelectric Polymers Near Room Temperature
Bret Neese, Baojin Chu, Sheng-Guo Lu et al. · Science · 2008 · 1.2K citations
Electron-pinned defect-dipoles for high-performance colossal permittivity materials
Wanbiao Hu, Yun Liu, Ray L. Withers et al. · Nature Materials · 2013 · 1.1K citations
Artificial charge-modulationin atomic-scale perovskite titanate superlattices
Akira Ohtomo, David A. Muller, J. L. Grazul et al. · Nature · 2002 · 992 citations
High-dielectric-constant ceramic-powder polymer composites
Yang Bai, Z.‐Y. Cheng, Vineet Bharti et al. · Applied Physics Letters · 2000 · 734 citations