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Layered Dielectric Nanocomposites Filled with Perovskite Nanosheets for Flexible Electronics
Polymer-based dielectrics have attracted much attention in flexible electronics due to their excellent flexibility and dielectric and mechanical properties. However, the rational design of a nanofiller–polymer nanocomposite for improving dielectric and mechanical properties remains challenging. Herein, layered dielectric nanocomposites filled with high-κ Ca2Nb3O10 perovskite nanosheets were fabricated via shear-flow-induced alignment of nanosheets. The hierarchical structure and good dispersion of nanosheets endowed the layered nanocomposites with an outstanding modulus of 12.7 GPa and toughness of 1.8 MJ/m3. Meanwhile, the layered nanocomposites exhibited a high dielectric constant of 14.7, a low dielectric loss of 4.2%, and low leakage current density of <1 × 10–7 A/cm2. The layered dielectric nanocomposites designed in this work have broad application prospects in flexible electronics.