nav bg

연구데이터 > 검색

[논문] Unveiling the marine Sargassum horneri material for energy and active sensor devices: Towards multitasking approaches

메타 데이터

세부정보 닫기열기
세부과제책임자

배진호

논문제목(Title)

[논문] Unveiling the marine Sargassum horneri material for energy and active sensor devices: Towards multitasking approaches

학술지명(Journal)

Nano Today

ImpactFactor

13.2

ISSN_ISBN

1748-0132

학술지볼륨권호(Volume)

57

SCI구분

SCIE

초록(Abstract)

The quest for a future with greater environmental sustainability has led to a rising focus on investigating innovative methods for energy production and storage. However, marine invasions have steadily increased over the past two centuries, necessitating innovative approaches for the remediation and preservation of oceanic environments. Especially, Sargassum horneri (S. horneri) is a brown algae that causes massive floating macroalgal blooms along the coasts of East Asia. Given these facts, this paper develops high-performance triboelectric nanogenerator(TENG), and electrode material for both supercapacitor and water-splitting devices based on S. horneri.
The TENG device, constructed using S. horneri coastal bio-waste collected from Jeju Island, yields impressive results. The output current, voltage and power generated by the S. horneri-based triboelectric nanogenerator (SH-TENG) is around 47 µA, 775 V, and 2880 µW, respectively. The electrochemical analysis of carbon derived from S. horneri reveals an excellent electrode capacitance of 225 F/g at 2.5 mA. Constructing the symmetric supercapacitor device using S. horneri-derived carbon, which shows excellent energy and power densities around 14.85 Wh/kg and 972.22 W/kg, with remarkable cyclic stability of 81.3 % for 5000 GCD cycles at 7 mA. On the other hand, the developed S.horneri electrode demonstrated much-improved activity towards water splitting application, exhibiting overpotentials of 0.101 V and 0.198 V for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) at an applied current density of 20 mA/cm2, respectively. The fabricated sample also demonstrated the lowest Tafel values towards HER (119 mv/dec) and for OER (109 mv/ dec). Finally, the time series analysis (TSA) technique was employed for modeling and prediction of capacity retention of the SH//SH supercapacitor and electrochemical potential (E) of SH/NF║SH/NF cell. In both cases, the mean squared error between experimental and predicted data was very small, suggesting the TSA is a powerful statistical technique to model and predict the vial features of the electrochemical devices. Overall, these
results suggest that S. horneri-derived carbon presents a viable alternative in the realm of energy storage and harvesting, promising sustainable technological advancements.

주저자명(FirstAuthor)

Swapnil R. Patil , Muhammad Noman

공동저자명(Co-Author)

Rakesh Kulkarni, Chandrashekhar S. Patil, Qazi Muhammad Saqib, Mahesh Y. Chougale, Jungmin Kim, Youngbin Ko, Young Pyo Jeon, Tukaram D. Dongale, Jeong Chan Kang, Myung Sook Kim, Yoon-Young Chang, Jinho Bae*

학술지출판일자(PublicationDate)

2024.06.28.

DMP

제출자

관리자

등록일

2024-03-25

공개 및 라이선스

공개 일자

2024-08-08

라이선스

저작자표시-비영리

저작권

이 데이터의 저작권은 <연구자 기관/그룹/사용자>에게 있습니다.

  • 25views
  • 0downloads
컬렉션
[배진호] 괭생이모자반 기반 탄소소재 응용연구(2024)
제출자
관리자
공개일자
2024-08-08
Versions
  • Version 1 2024-08-08
Cite as

관리자 ( 2024-08-08 ) [논문] Unveiling the marine Sargassum horneri material for energy and active sensor devices: Towards multitasking approaches

Export