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Biohybrid Organic Heterostructure Based on Chlorophyll-Bacteriochlorophyll Aggregates for Ecofriendly Hydrogen Production
Authors:Yuanlin Li  Tianfang Zheng  Yanxiang Liu  Prof Georgiy G Levchenko  Prof Wei Han  Prof Aleksey V Pashchenko  Prof Shin-ichi Sasaki  Prof Hitoshi Tamiaki  Prof Xiao-Feng Wang
Institution:1. Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education) &, State Key Laboratory of Superhard Materials, College of Physics, Jilin University, Changchun, 130012 P. R. China;2. College of Physics, State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, International Center of Future Science, Jilin University, Changchun, 130012 P. R. China;3. Donetsk Institute for Physics and Engineering named after O.O. Galkin, NAS of Ukraine, Kyiv, 03028 Ukraine;4. Graduate School of Life Sciences, Ritsumeikan University, Kusatsu, Shiga, 525-8577 Japan

Department of Medical Bioscience, Faculty of Bioscience, Nagahama Institute of Bio-Science and Technology, Nagahama, Shiga, 526-0829 Japan;5. Graduate School of Life Sciences, Ritsumeikan University, Kusatsu, Shiga, 525-8577 Japan

Abstract:Hydrogen energy is an abundant, clean, sustainable and environmentally friendly renewable energy source. Therefore, the production of hydrogen by photocatalytically splitting water on semiconductors has been considered in recent years as a promising and sustainable strategy for converting solar energy into chemical energy to replace conventional energy sources and to solve the growing problem of environmental pollution and the global energy crisis. However, highly efficient solar-driven photocatalytic hydrogen production remains a huge challenge due to the poor visible light response of available photocatalytic materials and the low efficiency of separation and transfer of photogenerated electron-hole pairs. In the present work, organic heterojunction structures based on bacteriochlorophyll (BChl) and chlorophyll (Chl) molecules were introduced and used for solar-driven photocatalytic hydrogen production from water under visible light. Also, noble metal-free photocatalyst was successfully constructed on Ti3C2Tx nanosheets by simple successive deposition of Chl and BChl, which was used for the photocatalytic splitting water to hydrogen evolution reaction (HER). The results show that the optimal BChl@Chl@Ti3C2Tx composite has a high HER performance with 114 μmol/h/gcat, which is much higher than the BChl@Ti3C2Tx and Chl@Ti3C2Tx composites.
Keywords:bacteriochlorophyll  chlorophyll  hydrogen evolution reaction  organic heterojunction  Ti3C2Tx MXene
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