Nature Communications, Published online: 04 September 2026; doi:10.1038/s41467-026-77564-3 The authors propose a molecular stacking strategy regulated by hydrogen bonding to enhance the high-temperature capacitive energy storage performance of polymer dielectrics. This special structural design achieves an energy density of 7.34 J/cm3 and an efficiency of 90% at 200 °C.
Overcoming polarization-breakdown trade-off via hydrogen bonding-modulated molecular stacking in high-temperature high-energy-density flexible dielectric
Zhi-Min Dang

