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首页> 外文期刊>Angewandte Chemie >Spatially Separated Photosystem II and a Silicon Photoelectrochemical Cell for Overall Water Splitting: A Natural-Artificial Photosynthetic Hybrid
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Spatially Separated Photosystem II and a Silicon Photoelectrochemical Cell for Overall Water Splitting: A Natural-Artificial Photosynthetic Hybrid

机译:空间分隔的光系统II和用于整体水分解的硅光电化学电池:天然-人工光合杂种

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摘要

Integrating natural and artificial photosynthetic platforms is an important approach to developing solar-driven hybrid systems with exceptional function over the individual components. A natural-artificial photosynthetic hybrid platform is formed by wiring photosystem II (PSII) and a platinum-decorated silicon photoelectrochemical (PEC) cell in a tandem manner based on a photocatalytic-PEC Z-scheme design. Although the individual components cannot achieve overall water splitting, the hybrid platform demonstrated the capability of unassisted solar-driven overall water splitting. Moreover, H-2 and O-2 evolution can be separated in this system, which is ascribed to the functionality afforded by the unconventional Z-scheme design. Furthermore, the tandem configuration and the spatial separation between PSII and artificial components provide more opportunities to develop efficient natural-artificial hybrid photosynthesis systems.
机译:集成自然和人工光合作用平台是开发太阳能驱动的混合系统的重要方法,该混合系统在单个组件上具有出色的功能。通过将光系统II(PSII)和铂修饰的硅光电化学(PEC)电池串联,基于光催化PEC Z方案设计,形成了自然-人造光合混合平台。尽管各个组件无法实现总的水分解,但混合平台展示了无辅助太阳能驱动的总水分解的能力。此外,H-2和O-2的进化可以在此系统中分离,这归因于非常规Z方案设计所提供的功能。此外,串联构型以及PSII和人工成分之间的空间分隔为开发有效的自然-人工混合光合作用系统提供了更多机会。

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