Ag decorated $ZnCo_2O_4$ hollow spheres originated from metal-organic framework for a high-rate and long-cycle lithium ion battery anode금속유기구조체 기반 은나노입자로 기능화 된 중공 구조의 고성능 아연 코발트 산화물 리튬이온전지 음극 소재 개발

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dc.contributor.advisorKim, Il-Doo-
dc.contributor.advisor김일두-
dc.contributor.authorJang, Hye-Yeon-
dc.date.accessioned2019-09-03T02:45:15Z-
dc.date.available2019-09-03T02:45:15Z-
dc.date.issued2018-
dc.identifier.urihttp://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=733920&flag=dissertationen_US
dc.identifier.urihttp://hdl.handle.net/10203/266430-
dc.description학위논문(석사) - 한국과학기술원 : 신소재공학과, 2018.2,[vii, 50 p. :]-
dc.description.abstractHuge volume expansion during discharge is always a critical problem of high capacity conversion anodes for next generation lithium-ion (Li-ion) batteries. Although extensive efforts have been devoted to controlling the volume expansion using nanostructuring and surface engineering till now, more simple and facile approaches have to be considered due to the complicated and inefficient synthetic methods. Here, we report a straightforward synthesis of Ag coated $ZnCo_2O_4$ porous hollow spheres ($ZnCo_2O_4$@Ag HSs): (i) immobilization of metal-organic frameworks (MOFs) including Zn and Co metal nodes onto polystrene sphere templates, (ii) calcination ($~450^\circ C$) for removal of core polystryre sphere templates and oxidation of MOFs to produce mesoporous ZnCo2O4 polyhedron structure, and (iii) subsequent Ag-mirror reaction for 10 min, resulting in formation of $ZnCo_2O_4$@Ag HSs. This porous hollow mophology not only effectively relieves the strain stemming from volume expansion of transition metal, but also facilitates the efficient electron transport for Li+ diffusion by shortening the Li-ion diffusion path during lithiation/delithiation process. Moreover, uniformly decorated Ag nanoparticles are beneficial to formation of stable solid electrolyte interface (SEI) layer as well as increased electrical conductivity of $ZnCo_2O_4$. The MOFs derived porous $ZnCo_2O_4$@Ag HSs exhibited remarkably stable cycling performance (a capacity value of $616 mAh g^{-1}$ after 900 cycles at a current density of $1 A g^{-1}$) and excellent capacity retention of 80% under very high current density of $20.0 A g^{-1}$.-
dc.languageeng-
dc.publisher한국과학기술원-
dc.subjectmetal-organic framework▼a$ZnCo_2O_4$▼ahollow sphere▼aAg nanoparticles▼alithium-ion batteries-
dc.subject금속유기구조체▼a아연 코발트 산화물▼a중공 구조▼a은나노입자▼a리튬이온전지-
dc.titleAg decorated $ZnCo_2O_4$ hollow spheres originated from metal-organic framework for a high-rate and long-cycle lithium ion battery anode-
dc.title.alternative금속유기구조체 기반 은나노입자로 기능화 된 중공 구조의 고성능 아연 코발트 산화물 리튬이온전지 음극 소재 개발-
dc.typeThesis(Master)-
dc.identifier.CNRN325007-
dc.description.department한국과학기술원 :신소재공학과,-
dc.contributor.alternativeauthor장혜연-
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