High Li+ and Mg2+ Conductivity in a Cu-Azolate Metal–Organic Framework
Miner, Elise M, Park, Sarah S, Dincă, Mircea
Published in Journal of the American Chemical Society (13.03.2019)
Published in Journal of the American Chemical Society (13.03.2019)
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Electrochemical oxygen reduction catalysed by Ni3(hexaiminotriphenylene)2
Miner, Elise M, Fukushima, Tomohiro, Sheberla, Dennis, Sun, Lei, Surendranath, Yogesh, Dincă, Mircea
Published in Nature communications (08.03.2016)
Published in Nature communications (08.03.2016)
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Mechanistic Evidence for Ligand-Centered Electrocatalytic Oxygen Reduction with the Conductive MOF Ni3(hexaiminotriphenylene)2
Miner, Elise M, Gul, Sheraz, Ricke, Nathan D, Pastor, Ernest, Yano, Junko, Yachandra, Vittal K, Van Voorhis, Troy, Dincă, Mircea
Published in ACS catalysis (03.11.2017)
Published in ACS catalysis (03.11.2017)
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Journal Article
High Li + and Mg 2+ Conductivity in a Cu-Azolate Metal-Organic Framework
Miner, Elise M, Park, Sarah S, Dincă, Mircea
Published in Journal of the American Chemical Society (13.03.2019)
Published in Journal of the American Chemical Society (13.03.2019)
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Journal Article
Modular O2 electroreduction activity in triphenylene-based metal-organic frameworksElectronic supplementary information (ESI) available: Materials and methods. CVs of the MOFs under N2. CVs of Cu3(HITP)2 deactivating. CVs of the trigonal MOFs on ITO. % current retained during potentiostatic ORR. RRDE data. Faradaic efficiencies. Koutecky-Levich data. ORR exchange current densities. ORR [O2] order data. pH-dependent redox activity of the hexagonal MOFs. Redox inactivity of the trigonal MOFs. See
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Modular O2 electroreduction activity in triphenylene-based metal–organic frameworks† †Electronic supplementary information (ESI) available: Materials and methods. CVs of the MOFs under N2. CVs of Cu3(HITP)2 deactivating. CVs of the trigonal MOFs on ITO. % current retained during potentiostatic ORR. RRDE data. Faradaic efficiencies. Koutecky–Levich data. ORR exchange current densities. ORR [O2] order data. pH-dependent redox activity of the hexagonal MOFs. Redox inactivity of the trigonal MOFs. S
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Journal Article
Mechanistic Evidence for Ligand-Centered Electrocatalytic Oxygen Reduction with the Conductive MOF Ni 3 (hexaiminotriphenylene) 2
Miner, Elise M., Gul, Sheraz, Ricke, Nathan D., Pastor, Ernest, Yano, Junko, Yachandra, Vittal K., Van Voorhis, Troy, Dincă, Mircea
Published in ACS catalysis (03.11.2017)
Published in ACS catalysis (03.11.2017)
Get full text
Journal Article