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<dublin_core schema="dc">
<dcvalue element="contributor" qualifier="author">Kang,&#x20;Inyeong</dcvalue>
<dcvalue element="contributor" qualifier="author">Jang,&#x20;Juyoung</dcvalue>
<dcvalue element="contributor" qualifier="author">Yi,&#x20;Kyung-Woo</dcvalue>
<dcvalue element="contributor" qualifier="author">Cho,&#x20;Young&#x20;Whan</dcvalue>
<dcvalue element="date" qualifier="accessioned">2024-01-19T21:02:24Z</dcvalue>
<dcvalue element="date" qualifier="available">2024-01-19T21:02:24Z</dcvalue>
<dcvalue element="date" qualifier="created">2021-09-02</dcvalue>
<dcvalue element="date" qualifier="issued">2019-01-05</dcvalue>
<dcvalue element="identifier" qualifier="issn">0925-8388</dcvalue>
<dcvalue element="identifier" qualifier="uri">https:&#x2F;&#x2F;pubs.kist.re.kr&#x2F;handle&#x2F;201004&#x2F;120479</dcvalue>
<dcvalue element="description" qualifier="abstract">Silicon&#x2F;iron&#x20;silicide&#x2F;three-dimensional&#x20;(3D)&#x20;carbon&#x20;nanocomposite&#x20;anodes&#x20;with&#x20;tunable&#x20;pore&#x20;structures&#x20;have&#x20;been&#x20;prepared&#x20;by&#x20;a&#x20;simple&#x20;and&#x20;environmentally&#x20;benign&#x20;method,&#x20;which&#x20;can&#x20;be&#x20;used&#x20;to&#x20;control&#x20;not&#x20;only&#x20;the&#x20;internal&#x20;porosity&#x20;of&#x20;agglomerated&#x20;anode&#x20;particles,&#x20;but&#x20;also&#x20;the&#x20;density&#x20;of&#x20;their&#x20;3D&#x20;network-like&#x20;carbon&#x20;coatings&#x20;by&#x20;varying&#x20;the&#x20;volume&#x20;fraction&#x20;of&#x20;NaCl&#x20;pore&#x20;template.&#x20;As&#x20;the&#x20;amount&#x20;of&#x20;NaCl&#x20;increases,&#x20;the&#x20;total&#x20;particle&#x20;porosity&#x20;and&#x20;density&#x20;of&#x20;the&#x20;carbon&#x20;coating&#x20;increase&#x20;as&#x20;well.&#x20;The&#x20;presence&#x20;of&#x20;pores&#x20;in&#x20;the&#x20;agglomerated&#x20;particles&#x20;and&#x20;carbon&#x20;network&#x20;mitigate&#x20;the&#x20;structural&#x20;damage&#x20;caused&#x20;by&#x20;the&#x20;volume&#x20;expansion&#x20;during&#x20;the&#x20;lithiation&#x20;and&#x20;delithiation&#x20;of&#x20;active&#x20;silicon&#x20;inside&#x20;the&#x20;nanocomposite&#x20;aggregates.&#x20;Consequently,&#x20;the&#x20;electrodes&#x20;fabricated&#x20;from&#x20;the&#x20;nanocomposites&#x20;with&#x20;high&#x20;NaCl&#x20;contents&#x20;exhibit&#x20;enhanced&#x20;electrochemical&#x20;performance.&#x20;After&#x20;increasing&#x20;the&#x20;NaCl&#x20;volume&#x20;fraction&#x20;to&#x20;46%,&#x20;the&#x20;capacity&#x20;retention&#x20;of&#x20;the&#x20;electrode&#x20;after&#x20;100&#x20;cycles&#x20;increases&#x20;by&#x20;more&#x20;than&#x20;25%&#x20;with&#x20;respect&#x20;to&#x20;the&#x20;value&#x20;obtained&#x20;for&#x20;the&#x20;composite&#x20;without&#x20;added&#x20;NaCl.&#x20;In&#x20;addition,&#x20;increasing&#x20;the&#x20;NaCl&#x20;content&#x20;also&#x20;improves&#x20;the&#x20;Coulombic&#x20;efficiency&#x20;and&#x20;rate&#x20;capability&#x20;of&#x20;the&#x20;anode.&#x20;(C)&#x20;2018&#x20;Elsevier&#x20;B.V.&#x20;All&#x20;rights&#x20;reserved.</dcvalue>
<dcvalue element="language" qualifier="none">English</dcvalue>
<dcvalue element="publisher" qualifier="none">ELSEVIER&#x20;SCIENCE&#x20;SA</dcvalue>
<dcvalue element="subject" qualifier="none">COMPOSITE&#x20;ANODES</dcvalue>
<dcvalue element="subject" qualifier="none">HIGH-CAPACITY</dcvalue>
<dcvalue element="subject" qualifier="none">SPHERICAL&#x20;COMPOSITE</dcvalue>
<dcvalue element="subject" qualifier="none">GREEN&#x20;SYNTHESIS</dcvalue>
<dcvalue element="subject" qualifier="none">NANO-SILICON</dcvalue>
<dcvalue element="subject" qualifier="none">HIGH-ENERGY</dcvalue>
<dcvalue element="subject" qualifier="none">SI</dcvalue>
<dcvalue element="subject" qualifier="none">PERFORMANCE</dcvalue>
<dcvalue element="subject" qualifier="none">STORAGE</dcvalue>
<dcvalue element="subject" qualifier="none">NANOPARTICLES</dcvalue>
<dcvalue element="title" qualifier="none">Porous&#x20;nanocomposite&#x20;anodes&#x20;of&#x20;silicon&#x2F;iron&#x20;silicide&#x2F;3D&#x20;carbon&#x20;network&#x20;for&#x20;lithium-ion&#x20;batteries</dcvalue>
<dcvalue element="type" qualifier="none">Article</dcvalue>
<dcvalue element="identifier" qualifier="doi">10.1016&#x2F;j.jallcom.2018.08.083</dcvalue>
<dcvalue element="description" qualifier="journalClass">1</dcvalue>
<dcvalue element="identifier" qualifier="bibliographicCitation">JOURNAL&#x20;OF&#x20;ALLOYS&#x20;AND&#x20;COMPOUNDS,&#x20;v.770,&#x20;pp.369&#x20;-&#x20;376</dcvalue>
<dcvalue element="citation" qualifier="title">JOURNAL&#x20;OF&#x20;ALLOYS&#x20;AND&#x20;COMPOUNDS</dcvalue>
<dcvalue element="citation" qualifier="volume">770</dcvalue>
<dcvalue element="citation" qualifier="startPage">369</dcvalue>
<dcvalue element="citation" qualifier="endPage">376</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scie</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scopus</dcvalue>
<dcvalue element="identifier" qualifier="wosid">000449486300044</dcvalue>
<dcvalue element="identifier" qualifier="scopusid">2-s2.0-85051758124</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Chemistry,&#x20;Physical</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Materials&#x20;Science,&#x20;Multidisciplinary</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Metallurgy&#x20;&amp;&#x20;Metallurgical&#x20;Engineering</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Chemistry</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Materials&#x20;Science</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Metallurgy&#x20;&amp;&#x20;Metallurgical&#x20;Engineering</dcvalue>
<dcvalue element="type" qualifier="docType">Article</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">COMPOSITE&#x20;ANODES</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">HIGH-CAPACITY</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">SPHERICAL&#x20;COMPOSITE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">GREEN&#x20;SYNTHESIS</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">NANO-SILICON</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">HIGH-ENERGY</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">SI</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">PERFORMANCE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">STORAGE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">NANOPARTICLES</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Ferrosilicon</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Silicon&#x20;nanocomposite</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Carbon&#x20;coating</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Pore&#x20;structure</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Anode&#x20;material</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Lithium-ion&#x20;battery</dcvalue>
</dublin_core>
