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<dublin_core schema="dc">
<dcvalue element="contributor" qualifier="author">Ko,&#x20;Dayeon</dcvalue>
<dcvalue element="contributor" qualifier="author">Jung,&#x20;Heesuk</dcvalue>
<dcvalue element="contributor" qualifier="author">Park,&#x20;Minwoo</dcvalue>
<dcvalue element="date" qualifier="accessioned">2024-08-01T05:30:30Z</dcvalue>
<dcvalue element="date" qualifier="available">2024-08-01T05:30:30Z</dcvalue>
<dcvalue element="date" qualifier="created">2024-08-01</dcvalue>
<dcvalue element="date" qualifier="issued">2024-07</dcvalue>
<dcvalue element="identifier" qualifier="uri">https:&#x2F;&#x2F;pubs.kist.re.kr&#x2F;handle&#x2F;201004&#x2F;150329</dcvalue>
<dcvalue element="description" qualifier="abstract">Surface&#x20;passivation&#x20;of&#x20;perovskite&#x20;solar&#x20;absorbers&#x20;is&#x20;essential&#x20;for&#x20;improving&#x20;device&#x20;performance&#x20;and&#x20;stability.&#x20;Various&#x20;defects,&#x20;such&#x20;as&#x20;ionic&#x20;vacancies&#x20;and&#x20;grain&#x20;boundaries,&#x20;serve&#x20;as&#x20;charge-trapping&#x20;sites.&#x20;Suppressing&#x20;charge&#x20;recombination&#x20;through&#x20;passivation&#x20;promotes&#x20;carrier&#x20;injection&#x2F;transfer&#x20;at&#x20;the&#x20;interfaces&#x20;between&#x20;the&#x20;perovskite&#x20;and&#x20;charge&#x20;transport&#x20;layers&#x20;(CTLs).&#x20;However,&#x20;during&#x20;the&#x20;fabrication&#x20;of&#x20;solar&#x20;cells,&#x20;the&#x20;passivation&#x20;layers&#x20;can&#x20;be&#x20;damaged&#x20;during&#x20;the&#x20;spin&#x20;coating&#x20;of&#x20;the&#x20;solutions&#x20;for&#x20;the&#x20;deposition&#x20;of&#x20;CTLs.&#x20;Organic&#x20;semiconducting&#x20;passivators&#x20;can&#x20;dissolve&#x20;in&#x20;nonpolar&#x20;solvents.&#x20;Passivators&#x20;with&#x20;a&#x20;high&#x20;resistance&#x20;to&#x20;dissolution&#x20;in&#x20;these&#x20;solutions&#x20;are&#x20;necessary&#x20;to&#x20;preserve&#x20;the&#x20;passivated&#x20;perovskite&#x20;surface.&#x20;In&#x20;this&#x20;study,&#x20;poly(3-hexylthiophene)&#x20;nanowires&#x20;(P3HT-NWs)&#x20;were&#x20;used&#x20;to&#x20;achieve&#x20;sustainable&#x20;surface&#x20;passivation.&#x20;They&#x20;were&#x20;synthesized&#x20;by&#x20;cooling&#x20;P3HT&#x2F;m-xylene&#x20;solutions.&#x20;Ultrathin&#x20;P3HT-NW&#x20;layers&#x20;(2.5&#x20;nm&#x20;thick)&#x20;uniformly&#x20;cover&#x20;the&#x20;perovskite&#x20;surface.&#x20;The&#x20;lone&#x20;pair&#x20;electrons&#x20;of&#x20;the&#x20;thiophene&#x20;backbones&#x20;readily&#x20;coordinate&#x20;with&#x20;Pb2+,&#x20;leading&#x20;to&#x20;a&#x20;significant&#x20;reduction&#x20;in&#x20;the&#x20;defect&#x20;density.&#x20;The&#x20;band&#x20;alignment&#x20;of&#x20;perovskite&#x20;and&#x20;2,2&#x20;&amp;apos;,7,7&#x20;&amp;apos;-tetrakis[N,N-di(4-methoxyphenyl)amino]-9,9&#x20;&amp;apos;-spirobifluorene&#x20;(spiro-OMeTAD),&#x20;which&#x20;was&#x20;improved&#x20;by&#x20;incorporating&#x20;P3HT-NW&#x20;layers,&#x20;facilitated&#x20;carrier&#x20;injection&#x2F;transfer&#x20;at&#x20;their&#x20;interfaces.&#x20;The&#x20;highly&#x20;crystalline&#x20;and&#x20;robust&#x20;P3HT-NW&#x20;films&#x20;remained&#x20;intact&#x20;during&#x20;the&#x20;spin-coating&#x20;of&#x20;the&#x20;spiro-OMeTAD&#x20;solutions.&#x20;The&#x20;resulting&#x20;power&#x20;conversion&#x20;efficiency&#x20;(PCE)&#x20;increased&#x20;significantly&#x20;from&#x20;18.89%&#x20;to&#x20;20.49%.&#x20;Furthermore,&#x20;the&#x20;normalized&#x20;PCE&#x20;of&#x20;the&#x20;unencapsulated&#x20;device&#x20;was&#x20;retained&#x20;at&#x20;81.7%&#x20;of&#x20;its&#x20;initial&#x20;value&#x20;after&#x20;1000&#x20;h&#x20;under&#x20;1&#x20;sun&#x20;illumination&#x20;because&#x20;the&#x20;hydrophobic&#x20;P3HT-NW&#x20;layers&#x20;effectively&#x20;protected&#x20;the&#x20;perovskite&#x20;against&#x20;moisture.</dcvalue>
<dcvalue element="language" qualifier="none">English</dcvalue>
<dcvalue element="publisher" qualifier="none">AMER&#x20;CHEMICAL&#x20;SOC</dcvalue>
<dcvalue element="title" qualifier="none">Ultrathin&#x20;Poly(3-hexylthiophene)&#x20;Nanowires&#x20;as&#x20;Chemically&#x20;Robust&#x20;and&#x20;Versatile&#x20;Surface&#x20;Passivators&#x20;of&#x20;Perovskite&#x20;Solar&#x20;Absorbers</dcvalue>
<dcvalue element="type" qualifier="none">Article</dcvalue>
<dcvalue element="identifier" qualifier="doi">10.1021&#x2F;acsaem.4c01393</dcvalue>
<dcvalue element="description" qualifier="journalClass">1</dcvalue>
<dcvalue element="identifier" qualifier="bibliographicCitation">ACS&#x20;Applied&#x20;Energy&#x20;Materials,&#x20;v.7,&#x20;no.14,&#x20;pp.5986&#x20;-&#x20;5994</dcvalue>
<dcvalue element="citation" qualifier="title">ACS&#x20;Applied&#x20;Energy&#x20;Materials</dcvalue>
<dcvalue element="citation" qualifier="volume">7</dcvalue>
<dcvalue element="citation" qualifier="number">14</dcvalue>
<dcvalue element="citation" qualifier="startPage">5986</dcvalue>
<dcvalue element="citation" qualifier="endPage">5994</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">001274493400001</dcvalue>
<dcvalue element="identifier" qualifier="scopusid">2-s2.0-85199282606</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Chemistry,&#x20;Physical</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Energy&#x20;&amp;&#x20;Fuels</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Materials&#x20;Science,&#x20;Multidisciplinary</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Chemistry</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Energy&#x20;&amp;&#x20;Fuels</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Materials&#x20;Science</dcvalue>
<dcvalue element="type" qualifier="docType">Article</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">SELF-SEEDED&#x20;GROWTH</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">HIGH-PERFORMANCE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">STABLE&#x20;PEROVSKITE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">CELLS</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">EFFICIENT</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">TRANSPORT</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">POLYMER</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">TIO2</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">LAYERS</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">poly(3-hexylthiophene)</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">nanowires</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">organic&#x20;semiconductors</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">perovskite&#x20;solar&#x20;cells</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">surface&#x20;passivation</dcvalue>
</dublin_core>
