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10.1038/ncomms13169

http://scihub22266oqcxt.onion/10.1038/ncomms13169
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C5105156!5105156!27827376
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suck abstract from ncbi


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pmid27827376      Nat+Commun 2016 ; 7 (ä): ä
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  • A metal-organic cage incorporating multiple light harvesting and catalytic centres for photochemical hydrogen production #MMPMID27827376
  • Chen S; Li K; Zhao F; Zhang L; Pan M; Fan YZ; Guo J; Shi J; Su CY
  • Nat Commun 2016[]; 7 (ä): ä PMID27827376show ga
  • Photocatalytic water splitting is a natural but challenging chemical way of harnessing renewable solar power to generate clean hydrogen energy. Here we report a potential hydrogen-evolving photochemical molecular device based on a self-assembled ruthenium?palladium heterometallic coordination cage, incorporating multiple photo- and catalytic metal centres. The photophysical properties are investigated by absorption/emission spectroscopy, electrochemical measurements and preliminary DFT calculations and the stepwise electron transfer processes from ruthenium-photocentres to catalytic palladium-centres is probed by ultrafast transient absorption spectroscopy. The photocatalytic hydrogen production assessments reveal an initial reaction rate of 380??mol?h?1 and a turnover number of 635 after 48?h. The efficient hydrogen production may derive from the directional electron transfers through multiple channels owing to proper organization of the photo- and catalytic multi-units within the octahedral cage, which may open a new door to design photochemical molecular devices with well-organized metallosupramolecules for homogenous photocatalytic applications.
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