멤브레인이 없는 이차전지

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dc.contributor.author이주혁ko
dc.contributor.author김희탁ko
dc.contributor.author변예린ko
dc.contributor.author정경화ko
dc.contributor.author김인호ko
dc.contributor.author김상욱ko
dc.date.accessioned2019-12-24T00:21:35Z-
dc.date.available2019-12-24T00:21:35Z-
dc.date.created2019-12-23-
dc.date.issued2019-04-05-
dc.identifier.citation2019년도 한국전기화학회 춘계 총회 및 학술발표회-
dc.identifier.urihttp://hdl.handle.net/10203/270391-
dc.description.abstractIn order for the widely discussed advantages of redox flow batteries for electric energy storage (EES) system to be at large scale, the cost of the electrochemical stack must decrease to be developed practically. Among them, aqueous zinc-bromine redox flow batteries (ZBBs) had much attention due to its high open circuit voltage (1.82 V), theoretical energy (> 400 W h kg-1) and inexpensive redox active materials. However, no single-cell ZBBs has met the cost, lifetime, and performance targets required for successful EES system. Herein, we report membraneless, non-flowing Zn/Br battery by using nitrogen (N) doped microporous carbon electrode. Through a combination of N-doped and microporous carbon surface of positive electrode, it confirmed that well conversion of corrosive elemental bromine to polybromide anion and then strongly binds within the N-doped microporous carbon electrode. Conversion and storaging of bromine in polybromide anion form within the electrode were investigated using spectroscopic analysis and density functional theory calculation. Membrane-free battery enables energy efficiencies of 80% for over 1,000 cycles even without separator, bromine sequestration agent and supporting electrolyte.-
dc.languageKorean-
dc.publisher한국전기화학회-
dc.title멤브레인이 없는 이차전지-
dc.typeConference-
dc.type.rimsCONF-
dc.citation.publicationname2019년도 한국전기화학회 춘계 총회 및 학술발표회-
dc.identifier.conferencecountryKO-
dc.identifier.conferencelocation제주국제컨벤션센터-
dc.contributor.localauthor김희탁-
dc.contributor.localauthor김상욱-
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CBE-Conference Papers(학술회의논문)MS-Conference Papers(학술회의논문)
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