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Leaf-architectured 3D Hierarchical Artificial Photosynthetic System of Perovskite Titanates Towards CO2 Photoreduction Into Hydrocarbon Fuels

机译:钙钛矿钛酸盐对二氧化碳光还原成烃类燃料的叶结构3D分层人工光合系统

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摘要

The development of an “artificial photosynthetic system” (APS) having both the analogous important structural elements and reaction features of photosynthesis to achieve solar-driven water splitting and CO2 reduction is highly challenging. Here, we demonstrate a design strategy for a promising 3D APS architecture as an efficient mass flow/light harvesting network relying on the morphological replacement of a concept prototype-leaf's 3D architecture into perovskite titanates for CO2 photoreduction into hydrocarbon fuels (CO and CH4). The process uses artificial sunlight as the energy source, water as an electron donor and CO2 as the carbon source, mimicking what real leaves do. To our knowledge this is the first example utilizing biological systems as “architecture-directing agents” for APS towards CO2 photoreduction, which hints at a more general principle for APS architectures with a great variety of optimized biological geometries. This research would have great significance for the potential realization of global carbon neutral cycle.
机译:具有类似的重要结构元素和光合作用的反应特性的“人工光合作用系统”(APS)的开发具有很高的挑战性,以实现太阳能驱动的水分解和二氧化碳减排。在这里,我们展示了一种有前途的3D APS体系结构的设计策略,该体系结构是一种有效的质量流量/光收集网络,它依赖于将概念原型叶片的3D体系结构形态转变为钙钛矿钛酸酯,以将CO2光还原为烃类燃料(CO和CH4)。该过程使用人造阳光作为能源,水作为电子供体,CO2作为碳源,模仿了真正的叶子。据我们所知,这是第一个利用生物系统作为APS进行二氧化碳还原的“体系结构导向剂”的例子,这暗示了具有多种优化的生物几何形状的APS体系结构的更一般的原理。这项研究对于潜在实现全球碳中和循环具有重要意义。

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