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UV-vis-infrared light-driven photothermocatalytic abatement of CO on Cu doped ramsdellite MnO2 nanosheets enhanced by a photoactivation effect Yang Y, Li YZ, Zeng M, Mao MY, Lan L, Liu HH, Chen J, Zhao XJ Applied Catalysis B: Environmental, 224, 751, 2018 |
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Effect of annealing on the electrochemical properties of ramsdellite-type lithium titanium oxide Setiawati E, Hayashi M, Takahashi M, Shodai T, Saito K Journal of Power Sources, 196(23), 10133, 2011 |
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Carbon modified Li2Ti3O7 ramsdellite electrode for Li-ion batteries Villevieille C, Van Thournout M, Scoyer J, Tessier C, Olivier-Fourcade J, Jumas JC, Monconduit L Electrochimica Acta, 55(23), 7080, 2010 |
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Structural evolution of ramsdellite-type LixTi2O4 upon electrochemical lithium insertion-deinsertion (0 <= x <= 2) Kuhn A, Baehtz C, Garcia-Alvarado F Journal of Power Sources, 174(2), 421, 2007 |
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Metal-doped Li2Ti3O7 with ramsdellite structure as high voltage anode for new generation Li-ion batteries Van Thournout A, Aldon L, Womes A, Ducourant B, Olivier-Fourcade J, Tessier C, Levasseur S Journal of Power Sources, 174(2), 1270, 2007 |
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Lithiation of ramsdellite-pyrolusite MnO2; NMR, XRD, TEM and electrochemical investigation of the discharge mechanism Bowden W, Grey CP, Hackney S, Wang F, Paik Y, Iltchev N, Sirotina R Journal of Power Sources, 153(2), 265, 2006 |
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High temperature electrochemical behaviors of ramsdellite Li2Ti3O7 and its Fe-doped derivatives for lithium ion batteries Ma SH, Noguchi H Journal of Power Sources, 161(2), 1297, 2006 |
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Combinatorial approach for powder preparation of pseudo-ternary system LiO0.5-X-TiO2 (X : FeO1.5, CrO1.5 and NiO) Fujimoto K, Takada K, Sasaki T, Watanabe M Applied Surface Science, 223(1-3), 49, 2004 |
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Electrochemical lithium insertion in TiO2 with the ramsdellite structure Kuhn A, Amandi R, Garcia-Alvarado F Journal of Power Sources, 92(1-2), 221, 2001 |
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Hydrogen titanates as potential proton conducting fuel cell electrolytes Corcoran DJD, Tunstall DP, Irvine JTS Solid State Ionics, 136-137, 297, 2000 |