Zongguang Liu, Hongyu Wu, Haotian Wu, Xin Cai, Chengwei Wu, Yifan Wu, Fang Wang, Wenjian Weng, Kui Cheng, Jianmei Chen
External thermal and electrical stimulations are widely explored to promote tissue regeneration; yet, integrating both modalities into a single, programmable soft film remains challenging. Here, we present a flexible photoresponsive hybrid film composed of a poly(vinylidene fluoride) matrix incorporating polydopamine-coated BaTiO 3 nanoparticles, fabricated via spin-coating. This composite (denoted as PVDF/PDA@BTO) exhibits a dual-mode functionality that enables both steady and pulsed stimulations within a single biocompatible platform. Under continuous near-infrared irradiation, the film delivers stable photothermal outputs, maintaining target temperatures of 37 or 42 °C. Under pulsed irradiation, transient thermal variations trigger the pyroelectric response of BaTiO 3, producing synchronized voltage outputs tunable by pulse duration, with ∼250 mV generated during a 0.25 s pulse. As a proof of concept, the film significantly accelerated rewarming and tissue repair in a mouse frostbite model. This work demonstrates a facile strategy for constructing programmable, multifunctional polymer–inorganic hybrid films with potential in on-demand bioelectronic interfaces and soft therapeutic devices.