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- Zhao Kaiying;
- Lee Jae Won;
- Yu Zhi Gen;
- Jiang Wei;
- Oh Jin Woo;
- ... 김호연;
- 외 12명
WEB OF SCIENCE
0초록
Free-standing and film-type moisture-driven energy generators (MEGs) that harness the preferential interaction of ionized moisture with hydrophilic materials are interesting because of their wearability and portability without needing a water container. However, most such MEGs work in limited humidity conditions, which provide a substantial moisture gradient. Herein, we present a high-performance MEG with sustainable power-production capability in a wide range of environments. The bilayer-based device comprises a negatively surface-charged, hydrophilic MXene (Ti3C2Tx) aerogel and polyacrylamide (PAM) ionic hydrogel. The preferential selection on the MXene aerogel of positive charges supplied from the salts and water in the hydrogel is predicted by the first-principle simulation, which results in a high electric output in a wide relative humidity range from 20% to 95%. Furthermore, by replacing the hydrogel with an organohydrogel of PAM that has excellent water retention and structural stability, a device with long-term electricity generation is realized for more than 15 days in a broad temperature range (from -20 to 80 degrees C). Our MXene aerogel MEGs connected in series supply sufficient power for commercial electronic components in various outdoor environments. Moreover, an MXene aerogel MEG works as a self-powered sensor for recognizing finger bending and facial expression.
- 제목
- Humidity-Tolerant Moisture-Driven Energy Generator with MXene Aerogel-Organohydrogel Bilayer
- 저자
- Zhao Kaiying; Lee Jae Won; Yu Zhi Gen; Jiang Wei; Oh Jin Woo; 김관호; Han Hyowon; Kim Yeonji; Lee Kyuho; Lee Seokyeong; 김호연; Kim Taebin; Lee Chang Eun; Lee Hyeokjung; Jang Jihye; Park Jong Woong; Zhang Yong-Wei; Park Cheolmin
- 발행일
- 2023-03
- 저널명
- ACS Nano
- 권
- 17
- 호
- 6
- 페이지
- 5472 ~ 5485