Abstract
Photobiological hydrogen production is of great importance because of its promise for generating clean renewable energy. In nature, green algae cannot produce hydrogen as a result of the extreme sensitivity of hydrogenase to oxygen. However, we find that silicification-induced green algae aggregates can achieve sustainable photobiological hydrogen production even under natural aerobic conditions. The core-shell structure of the green algae aggregates creates a balance between photosynthetic electron generation and hydrogenase activity, thus allowing the production of hydrogen. This finding provides a viable pathway for the solar-driven splitting of water into hydrogen and oxygen to develop green energy alternatives by using rationally designed cell-material complexes.
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Xiong, W., Zhao, X., Zhu, G., Shao, C., Li, Y., Ma, W., … Tang, R. (2015). Silicification-Induced Cell Aggregation for the Sustainable Production of H2 under Aerobic Conditions. Angewandte Chemie - International Edition, 54(41), 11961–11965. https://doi.org/10.1002/anie.201504634
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