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Electrical power generation from asymmetric greenhouse gas capture
- Yun, Tae Gwang;
- Lee, Yejin;
- Shin, Joonchul;
- Lee, Dong Ho;
- Hong, Min Taek;
- ... Jang, Ji-Soo;
- 외 9명
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0초록
Capturing greenhouse gases (GHGs) while generating electricity offers a new paradigm for climate mitigation. Here, we report a GHG-driven energy harvesting system, termed a gas capture and electricity generator (GCEG), that directly converts the adsorption of NOx and CO2 into electrical power. The device integrates a carbon black-coated mulberry paper electrode with an asymmetrically dip-coated polyacrylamide hydrogel, enabling selective gas adsorption and voltage generation via modulation of the electrical double layer. Upon exposure to 50 ppm NO2, the GCEG delivers 0.8 V and 55 & micro;A, scaling to 3.8 V and 140 & micro;A through series and parallel integration. Infrared spectroscopy and atomistic simulations reveal that hydrogen-bond-driven gas-hydrogel interactions govern the energy harvesting mechanism. By integrating gas capture and electricity generation within a single self-powered platform, this approach provides a scalable, low-energy pathway for mitigating multiple GHGs and offers a promising strategy toward carbon neutrality.
키워드
- 제목
- Electrical power generation from asymmetric greenhouse gas capture
- 저자
- Yun, Tae Gwang; Lee, Yejin; Shin, Joonchul; Lee, Dong Ho; Hong, Min Taek; Lee, Seonghun; Kim, Sang-Joon; Lee, Hyun Ji; Lee, Jiwon; Min, Gyeongrok; Weon, Seunghyun; Choi, Minho; Jang, Ho Won; Kim, Han Seul; Jang, Ji-Soo
- 발행일
- 2026-04-14
- 유형
- Article
- 권
- 19
- 호
- 7