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dc.contributor.author선양국-
dc.date.accessioned2018-03-15T05:46:10Z-
dc.date.available2018-03-15T05:46:10Z-
dc.date.issued2014-07-
dc.identifier.citationCHEMPHYSCHEM, 2014, 15(10), P.1903-1904en_US
dc.identifier.issn1439-4235-
dc.identifier.urihttps://onlinelibrary.wiley.com/doi/abs/10.1002/cphc.201400099-
dc.description.abstractHigh-power, long-life carbon-coated TiO 2 microsphere electrodes were synthesized by a hydrothermal method for sodium ion batteries, and the electrochemical properties were evaluated as a function of carbon content. The carbon coating, introduced by sucrose addition, had an effect of suppressing the growth of the TiO 2 primary crystallites during calcination. The carbon coated TiO 2 (sucrose 20 wt % coated) electrode exhibited excellent cycle retention during 50 cycles (100%) and superior rate capability up to a 30 C rate at room temperature. This cell delivered a high discharge capacity of 155 mAh g composite ?1 at 0.1 C , 149 mAh g composite ?1 at 1 C , and 82.7 mAh g composite ?1 at a 10 C rate, respectively. Graphic Abstract ACS Electronic Supporting Infoen_US
dc.language.isoenen_US
dc.publisherWILEY-V C H VERLAG GMBHen_US
dc.subjecthydrothermal methoden_US
dc.subjectanodeen_US
dc.subjectTiO2en_US
dc.subjectNa batteryen_US
dc.subjectcarbon coatingen_US
dc.titleElectrochemical Energy Conversion: Past, Present, and Futureen_US
dc.typeArticleen_US
dc.relation.volume15-
dc.identifier.doi10.1002/cphc.201400099-
dc.relation.page1903-1904-
dc.relation.journalCHEMPHYSCHEM-
dc.contributor.googleauthorRajeshwar, Krishnan-
dc.contributor.googleauthorBaltruschat, Helmut-
dc.contributor.googleauthorSun, Yang Kook-
dc.relation.code2014027141-
dc.sector.campusS-
dc.sector.daehakCOLLEGE OF ENGINEERING[S]-
dc.sector.departmentDEPARTMENT OF ENERGY ENGINEERING-
dc.identifier.pidyksun-
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COLLEGE OF ENGINEERING[S](공과대학) > ENERGY ENGINEERING(에너지공학과) > Articles
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