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Muscle-inspired, high-bandwidth ionic actuators enabled by fibrillar ion-transport networks
- Kim, So Young;
- Lim, Jeong Sub;
- Choi, Hanbin;
- Kim, Minjeong;
- Baek, Wonjun;
- ... Kim, Do Hwan
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0초록
Conventional Nafion-based ionic actuators suffer from hydration-dependent ion transport and a long-standing trade-off between ionic conductivity and mechanical stiffness, which limits force generation and stable high-frequency operation. Here, we report a PEG-silica-hybridized ionic electroactive Nafion (Ps-iEN) that introduces a mesoscale interfacial ion-transport network via PEG-mediated surface functionalization. This design mitigates ionic liquid-induced matrix softening while preserving efficient ion transport, thereby partially decoupling ionic conductivity from mechanical degradation. Actuators incorporating Ps-iEN exhibit enhanced blocking force at low driving voltages and maintain stable, reproducible actuation up to 50 Hz, together with long-term operational durability exceeding 30,000 cycles in air. The optimized Ps(15)-iEN actuator further demonstrates frequency-encoded motion behaviors that qualitatively resemble distinct contraction regimes in skeletal muscle, including single-twitch, pulsed, and partially fused responses. These results establish Ps-iEN as a performance-oriented electrolyte platform for high-bandwidth ionic actuators and highlight its potential for artificial soft muscles, wearable haptic interfaces, and fiber-integrated soft robotic electronics requiring stable and frequency-tunable actuation.
키워드
- 제목
- Muscle-inspired, high-bandwidth ionic actuators enabled by fibrillar ion-transport networks
- 저자
- Kim, So Young; Lim, Jeong Sub; Choi, Hanbin; Kim, Minjeong; Baek, Wonjun; Kim, Do Hwan
- 발행일
- 2026-04
- 유형
- Article
- 저널명
- NPJ FLEXIBLE ELECTRONICS
- 권
- 10
- 호
- 1
- 페이지
- 1 ~ 11