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<dublin_core schema="dc">
<dcvalue element="contributor" qualifier="author">Hasan,&#x20;Rahidul</dcvalue>
<dcvalue element="contributor" qualifier="author">Gu,&#x20;Yan</dcvalue>
<dcvalue element="contributor" qualifier="author">Kim,&#x20;Se&#x20;Yun</dcvalue>
<dcvalue element="contributor" qualifier="author">Chun,&#x20;Dong&#x20;Won</dcvalue>
<dcvalue element="contributor" qualifier="author">Lee,&#x20;Kyu&#x20;Hyoung</dcvalue>
<dcvalue element="date" qualifier="accessioned">2024-01-19T08:32:25Z</dcvalue>
<dcvalue element="date" qualifier="available">2024-01-19T08:32:25Z</dcvalue>
<dcvalue element="date" qualifier="created">2023-09-07</dcvalue>
<dcvalue element="date" qualifier="issued">2023-10</dcvalue>
<dcvalue element="identifier" qualifier="uri">https:&#x2F;&#x2F;pubs.kist.re.kr&#x2F;handle&#x2F;201004&#x2F;113224</dcvalue>
<dcvalue element="description" qualifier="abstract">Double&#x20;half-Heuslers&#x20;(DHHs)&#x20;have&#x20;emerged&#x20;as&#x20;promising&#x20;candidates&#x20;for&#x20;thermoelectric&#x20;power&#x20;generation&#x20;at&#x20;mid-high&#x20;temperatures&#x20;due&#x20;to&#x20;their&#x20;exceptional&#x20;chemical&#x20;and&#x20;mechanical&#x20;stability,&#x20;as&#x20;well&#x20;as&#x20;high&#x20;electronic&#x20;transport&#x20;properties.&#x20;However,&#x20;their&#x20;limited&#x20;thermoelectric&#x20;conversion&#x20;efficiency&#x20;(ZT)&#x20;has&#x20;hindered&#x20;their&#x20;practical&#x20;application.&#x20;In&#x20;the&#x20;present&#x20;study,&#x20;we&#x20;propose&#x20;an&#x20;approach&#x20;to&#x20;enhance&#x20;the&#x20;ZT&#x20;of&#x20;DHHs&#x20;by&#x20;generating&#x20;full-Heusler&#x20;(FH)&#x20;nanoprecipitates&#x20;through&#x20;a&#x20;simple&#x20;and&#x20;scalable&#x20;compositional&#x20;tuning&#x20;method.&#x20;We&#x20;investigate&#x20;the&#x20;effectiveness&#x20;of&#x20;this&#x20;approach&#x20;using&#x20;Ti2FeNiSb2&#x20;as&#x20;a&#x20;model&#x20;system.&#x20;Our&#x20;results&#x20;reveal&#x20;that&#x20;FH&#x20;nanoprecipitates&#x20;can&#x20;substantially&#x20;intensify&#x20;the&#x20;phonon&#x20;scattering&#x20;in&#x20;Ti2FeNiSb2,&#x20;leading&#x20;to&#x20;an&#x20;ultra-low&#x20;lattice&#x20;thermal&#x20;conductivity&#x20;of&#x20;similar&#x20;to&#x20;0.9&#x20;W&#x20;m(-1)&#x20;K-1&#x20;at&#x20;973&#x20;K.&#x20;Additionally,&#x20;filtering&#x20;of&#x20;low-energy&#x20;carriers,&#x20;in&#x20;the&#x20;presence&#x20;of&#x20;FH&#x20;nanoprecipitates,&#x20;further&#x20;improves&#x20;the&#x20;electronic&#x20;transport&#x20;properties.&#x20;As&#x20;a&#x20;result,&#x20;we&#x20;achieved&#x20;a&#x20;relatively&#x20;high&#x20;zT&#x20;of&#x20;0.31&#x20;in&#x20;Ti2FeNi1.05Sb2,&#x20;which&#x20;is&#x20;1.5-fold&#x20;enhancement&#x20;compared&#x20;to&#x20;the&#x20;pristine&#x20;Ti2FeNiSb2.&#x20;These&#x20;findings&#x20;offer&#x20;attractive&#x20;opportunities&#x20;for&#x20;designing&#x20;and&#x20;developing&#x20;high-performance&#x20;DHH-based&#x20;thermoelectric&#x20;materials.</dcvalue>
<dcvalue element="language" qualifier="none">English</dcvalue>
<dcvalue element="publisher" qualifier="none">Royal&#x20;Society&#x20;of&#x20;Chemistry</dcvalue>
<dcvalue element="title" qualifier="none">Enhancing&#x20;the&#x20;thermoelectric&#x20;performance&#x20;of&#x20;a&#x20;Ti2FeNiSb2&#x20;double&#x20;half-Heusler&#x20;alloy&#x20;through&#x20;excess&#x20;Ni-induced&#x20;full-Heusler&#x20;nanoprecipitates</dcvalue>
<dcvalue element="type" qualifier="none">Article</dcvalue>
<dcvalue element="identifier" qualifier="doi">10.1039&#x2F;d3qi01132a</dcvalue>
<dcvalue element="description" qualifier="journalClass">1</dcvalue>
<dcvalue element="identifier" qualifier="bibliographicCitation">Inorganic&#x20;Chemistry&#x20;Frontiers,&#x20;v.10,&#x20;no.19,&#x20;pp.5662&#x20;-&#x20;5667</dcvalue>
<dcvalue element="citation" qualifier="title">Inorganic&#x20;Chemistry&#x20;Frontiers</dcvalue>
<dcvalue element="citation" qualifier="volume">10</dcvalue>
<dcvalue element="citation" qualifier="number">19</dcvalue>
<dcvalue element="citation" qualifier="startPage">5662</dcvalue>
<dcvalue element="citation" qualifier="endPage">5667</dcvalue>
<dcvalue element="description" qualifier="isOpenAccess">N</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scie</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scopus</dcvalue>
<dcvalue element="identifier" qualifier="wosid">001184914200001</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Chemistry,&#x20;Inorganic&#x20;&amp;&#x20;Nuclear</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Chemistry</dcvalue>
<dcvalue element="type" qualifier="docType">Article</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">LARGE&#x20;ENHANCEMENTS</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">CONDUCTIVITY</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">THERMOPOWER</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">FIGURE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">MERIT</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">ZT</dcvalue>
</dublin_core>
