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Defective and "c-Disordered" Hortensia-like Layered MnOx as an Efficient Electrocatalyst for Water Oxidation at Neutral pH

Zhang, Biaobiao (author)
KTH,Kemi
Chen, Hong (author)
KTH,Kemi
Daniel, Quentin (author)
KTH,Organisk kemi
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Philippe, Bertrand, 1986- (author)
Uppsala universitet,Molekyl- och kondenserade materiens fysik
Yu, Fengshou (author)
Valvo, Mario (author)
Uppsala universitet,Strukturkemi
Li, Yuanyuan (author)
KTH,Fiber- och polymerteknologi
Ambre, Ram B. (author)
KTH,Kemi
Zhang, Peili (author)
KTH,Kemi
Li, Fei (author)
Rensmo, Håkan (author)
Uppsala universitet,Molekyl- och kondenserade materiens fysik
Sun, Licheng (author)
KTH,Organisk kemi,Zhejiang-KTH Joint Research Center of Photonics, JORCEP
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 (creator_code:org_t)
2017-08-22
2017
English.
In: ACS Catalysis. - : American Chemical Society (ACS). - 2155-5435. ; 7:9, s. 6311-6322
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The development of a highly active manganese-based water oxidation catalyst in the design of an ideal artificial photosynthetic device operating under neutral pH conditions remains a great challenge, due to the instability of pivotal Mn3+ intermediates. We report here defective and "c-disordered" layered manganese oxides (MnOx-300) formed on a fluorine-doped tin oxide electrode by constant anodic potential deposition and subsequent annealing, with a catalytic onset (0.25 mA/cm(2)) at an overpotential (eta) of 280 mV and a benchmark catalytic current density of 1.0 mA/cm(2) at an overpotential (eta) of 330 mV under neutral pH (1 M potassium phosphate). Steady current density above 8.2 mA/cm(2) was obtained during the electrolysis at 1.4 V versus the normal hydrogen electrode for 20 h. Insightful studies showed that the main contributing factors for the observed high activity of MnOx-300 are (i) a defective and randomly stacked layered structure, (ii) an increased degree of Jahn-Teller distorted Mn3+ in the MnO6 octahedral sheets, (iii) effective stabilization of Mn3+, (iv) a high surface area, and (v) improved electrical conductivity. These results demonstrate that manganese oxides as structural and functional models of an oxygen-evolving complex (OEC) in photosystem II are promising catalysts for water oxidation in addition to Ni/Co-based oxides/hydroxides.

Subject headings

NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)
TEKNIK OCH TEKNOLOGIER  -- Naturresursteknik -- Energisystem (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Environmental Engineering -- Energy Systems (hsv//eng)

Keyword

artificial photosynthesis
electrocatalyst
layered manganese oxide
oxygen evolution
solar fuel
water oxidation

Publication and Content Type

ref (subject category)
art (subject category)

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