类囊体
光合作用
光化学
人工光合作用
析氧
化学能
叶绿体
太阳能
材料科学
电子传输链
化学
生物物理学
光催化
电极
电化学
生物
催化作用
生物化学
物理化学
生态学
基因
有机化学
作者
Enbo Zhou,Shi‐Chen Yan,Xiang Zhang,Baloch Ur Rehman Ateeq,Yangdan Hui,F.S. Wang,Lei Jiao,Jiafang Xie,Daqiang Yuan,Li Wang
标识
DOI:10.1002/anie.202416289
摘要
The construction of solar‐to‐chemical conversion system by mimicking the photosynthetic network of the chloroplast holds great promise on efficient solar energy utilization. We developed an artificial photosynthetic cell (APC) based on molecular biomimetic thylakoid (CoTPP‐FePy) to split water into hydrogen and oxygen (H2 and O2) at low driving voltage (1.1 V) and neutral condition (pH≈7). The CoTPP‐FePy can emulate the light reaction in thylakoids to produce O2 by coupling light harvesting, photocatalysis, and electron/energy storage (FeIII/FeII‐Py). Subsequently, a membrane electrode assembly (MEA) were employed to simulate the dark reaction, wherein the proton, electron and energy generated by the light reaction can drive the H2 producing process. By a temporally and spatially coupling of the light and dark reactions, the resulting APC achieved a solar conversion efficiency of 3.1%, exceeding that of natural photosynthetic systems and demonstrating the potential of artificial photosynthesis.
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