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10.1021/jacs.6b12971

http://scihub22266oqcxt.onion/10.1021/jacs.6b12971
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C5330654!5330654!28132505
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suck abstract from ncbi


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pmid28132505      J+Am+Chem+Soc 2017 ; 139 (7): 2794-8
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  • Control of Electrons? Spin Eliminates Hydrogen Peroxide Formation During Water Splitting #MMPMID28132505
  • Mtangi W; Tassinari F; Vankayala K; Vargas Jentzsch A; Adelizzi B; Palmans ARA; Fontanesi C; Meijer EW; Naaman R
  • J Am Chem Soc 2017[Feb]; 139 (7): 2794-8 PMID28132505show ga
  • The production of hydrogen through water splitting in a photoelectrochemical cell suffers from an overpotential that limits the efficiencies. In addition, hydrogen-peroxide formation is identified as a competing process affecting the oxidative stability of photoelectrodes. We impose spin-selectivity by coating the anode with chiral organic semiconductors from helically aggregated dyes as sensitizers; Zn-porphyrins and triarylamines. Hydrogen peroxide formation is dramatically suppressed, while the overall current through the cell, correlating with the water splitting process, is enhanced. Evidence for a strong spin-selection in the chiral semiconductors is presented by magnetic conducting (mc-)AFM measurements, in which chiral and achiral Zn-porphyrins are compared. These findings contribute to our understanding of the underlying mechanism of spin selectivity in multiple electron-transfer reactions and pave the way toward better chiral dye-sensitized photoelectrochemical cells.
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