"Revolutionary Hybrid Solid Catalysts Enable Groundbreaking Artificial Photosynthesis"

Researchers have developed a novel approach to create hybrid solid catalysts for artificial photosynthesis using protein crystals produced through genetically modified bacteria. These catalysts exhibit high activity, stability, and durability, and have the potential to revolutionize enzyme immobilization. By combining in-cell engineering and an in vitro process, the researchers successfully produced highly active EY·H1-FDH@PhC catalysts that can convert carbon dioxide into formate upon exposure to light. This study highlights the potential of bioengineering in synthesizing complex functional materials and offers a promising strategy for nanomaterials and artificial photosynthesis research.
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