Microspace Triboelectric Nanogenerator Based on Biocompatible Lignin-Derived Activated Carbon for Advanced Active Sensing Applications

  • Kim, Jungmin
  • Noman, Muhammad
  • Patil, Chandrashekhar S.
  • Muhammad Ajaz, Ahmed
  • Ghode, Sourabh B.
  • ... Saqib, Qazi Muhammad
  • 외 6명
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초록

Triboelectric nanogenerators (TENGs) offer inherent advantages, such as self-powering capability, high sensitivity, and structural adaptability. These qualities make them promising candidates for applications, including the Internet of Things (IoT) and active sensors. The sensitivity of conventional TENG-based sensors is highly affected by environmental factors due to the direct exposure of the triboelectric active regions to ambient conditions. Hence, this paper proposes a strategy to integrate a microspace triboelectric nanogenerator (MS-TENG), using biobased lignin-derived activated carbon (LDAC) as a tribopositive electrode that can reduce the environmental exposure of tribo-layers for advanced active sensor applications. The MS-TENG exhibits highly sensitive behavior due to the excellent physicochemical properties, such as high surface area, porous morphology, several oxygenated surface functional groups, and conductivity. Furthermore, the MS-TENG array structure is assembled for real-time voltage acquisition, enabling the precise detection of slight body movements. Especially, the fabricated MS-TENG-based active sensor demonstrates outstanding performance by successfully distinguishing motion data (e.g., fingers and wrist motions) in the metaverse, underscoring its potential as a highly reliable sensing device. More importantly, in a low-pressure regime (<4 N), the proposed MS-TENG device presents a 2-fold increase in sensitivity (slope similar to 12.1 V/N) as compared to conventional TENG (slope similar to 5.62 V/N) owing to increased reaction force. This work opens opportunities for TENGs, positioning them as promising candidates for active sensing and soft wearable applications.

키워드

microspace triboelectricnanogeneratorlignin-derivedactivated carbon (LDAC)metaverseconventionaltower TENGactive sensorENERGY
제목
Microspace Triboelectric Nanogenerator Based on Biocompatible Lignin-Derived Activated Carbon for Advanced Active Sensing Applications
저자
Kim, JungminNoman, MuhammadPatil, Chandrashekhar S.Muhammad Ajaz, AhmedGhode, Sourabh B.Ko, YoungbinHwang, HyeongseokSawant, Jaydip K.Patil, Swapnil R.Choi, Joon WeonSaqib, Qazi MuhammadBae, Jinho
DOI
10.1021/acsami.5c17469
발행일
2025-11
유형
Article
저널명
ACS Applied Materials and Interfaces
17
47
페이지
65324 ~ 65334