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Electrochemically active novel amorphous carbon (a-C)/Cu3P peapod nanowires by low-temperature chemical vapor phosphorization reaction as high efficient electrocatalysts for hydrogen evolution reaction Manikandan A, Sriram P, Hsu KC, Wang YC, Chen CW, Shih YC, Yen TJ, Jeng HT, Kuo HC, Chueh YL Electrochimica Acta, 318, 374, 2019 |
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Paintbrush-like Co doped Cu3P grown on Cu foam as an efficient janus electrode for overall water splitting Rong YS, Ma YH, Guo FY, Qian JJ, Li HW, Zhou MZ, Xu ZQ, Zheng YQ, Li TT International Journal of Hydrogen Energy, 44(54), 28833, 2019 |
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Fast kinetics in free-standing porous Cu3P anode for Li-ion batteries Yarmiayev V, Miroshnikov Y, Gershinsky G, Shokhen V, Zitoun D Electrochimica Acta, 292, 846, 2018 |
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Electrochemically active and robust cobalt doped copper phosphosulfide electro-catalysts for hydrogen evolution reaction in electrolytic and photoelectrochemical water splitting Patel PP, Velikokhatnyi OI, Ghadge SD, Hanumantha PJ, Datta MK, Kuruba R, Gattu B, Shanthi PM, Kumta PN International Journal of Hydrogen Energy, 43(16), 7855, 2018 |
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Facile Cu3P-C hybrid supported strategy to improve Pt nanoparticle electrocatalytic performance toward methanol, ethanol, glycol and formic acid electro-oxidation Li RX, Ma ZZ, Zhang F, Meng HJ, Wang M, Bao XQ, Tang B, Wang XG Electrochimica Acta, 220, 193, 2016 |
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Thin copper phosphide films as conversion anode for lithium-ion battery applications Chandrasekar MS, Mitra S Electrochimica Acta, 92, 47, 2013 |
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Synthesis, characterization and electrochemical properties of copper phosphide (Cu3P) thick films prepared by solid-state reaction at low temperature: a probable anode for lithium ion batteries Pfeiffer H, Tancret F, Brousse T Electrochimica Acta, 50(24), 4763, 2005 |