Enhanced interfacial electron transfer between thylakoids and RuO2 nanosheets for photosynthetic energy harvesting
- Authors
- HYEONAUG HONG; Lee J.M.; JAEHYOUNG Yun; YONGJAE Kim; SEONILKIM; Shin H.; HYUN SEO Ahn; Seong-Ju Hwang; WonHyoung Ryu
- Issue Date
- May-2021
- Publisher
- American Association for the Advancement of Science
- Keywords
- Photosynthesis; Energy harvesting; Nanosheet; Ensemble docking
- Citation
- SCIENCE ADVANCES, v.7, no.20, pp eabf2543-1 - eabf2543-13
- Journal Title
- SCIENCE ADVANCES
- Volume
- 7
- Number
- 20
- Start Page
- eabf2543-1
- End Page
- eabf2543-13
- URI
- https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/23133
- DOI
- 10.1126/sciadv.abf2543
- ISSN
- 2375-2548
- Abstract
- The harvesting of photosynthetic electrons (PEs) directly from photosynthetic complexes has been demonstrated
over the past decade. However, their limited efficiency and stability have hampered further practical development.
For example, despite its importance, the interfacial electron transfer between the photosynthetic apparatus
and the electrode has received little attention. In this study, we modified electrodes with RuO2 nanosheets to
enhance the extraction of PEs from thylakoids, and the PE transfer was promoted by proton adsorption and surface
polarity characteristics. The adsorbed protons maintained the potential of an electrode more positive, and
the surface polarity enhanced thylakoid attachment to the electrode in addition to promoting ensemble docking
between the redox species and the electrode. The RuO2 bioanode exhibited a five times larger current density and
a four times larger power density than the Au bioanode. Last, the electric calculators were successfully powered
by photosynthetic energy using a RuO2 bioanode.
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Collections - College of Engineering > 공과대학 기계공학부 > 공과대학 기계공학과 > 1. Journal Articles

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