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<dublin_core schema="dc">
<dcvalue element="contributor" qualifier="author">Park,&#x20;Seoungwoong</dcvalue>
<dcvalue element="contributor" qualifier="author">Park,&#x20;Jiseul</dcvalue>
<dcvalue element="contributor" qualifier="author">Kim,&#x20;Yeon-gyu</dcvalue>
<dcvalue element="contributor" qualifier="author">Bae,&#x20;Sukang</dcvalue>
<dcvalue element="contributor" qualifier="author">Kim,&#x20;Tae-Wook</dcvalue>
<dcvalue element="contributor" qualifier="author">Park,&#x20;Kwi-Il</dcvalue>
<dcvalue element="contributor" qualifier="author">Hong,&#x20;Byung&#x20;Hee</dcvalue>
<dcvalue element="contributor" qualifier="author">Jeong,&#x20;Chang&#x20;Kyu</dcvalue>
<dcvalue element="contributor" qualifier="author">Lee,&#x20;Seoung-Ki</dcvalue>
<dcvalue element="date" qualifier="accessioned">2024-01-19T16:02:42Z</dcvalue>
<dcvalue element="date" qualifier="available">2024-01-19T16:02:42Z</dcvalue>
<dcvalue element="date" qualifier="created">2021-09-02</dcvalue>
<dcvalue element="date" qualifier="issued">2020-12</dcvalue>
<dcvalue element="identifier" qualifier="issn">2211-2855</dcvalue>
<dcvalue element="identifier" qualifier="uri">https:&#x2F;&#x2F;pubs.kist.re.kr&#x2F;handle&#x2F;201004&#x2F;117787</dcvalue>
<dcvalue element="description" qualifier="abstract">Two-dimensional&#x20;(2D)&#x20;transition&#x20;metal&#x20;dichalcogenide&#x20;(TMDC)&#x20;nanomaterials&#x20;are&#x20;currently&#x20;regarded&#x20;as&#x20;next&#x20;generation&#x20;electronic&#x20;materials&#x20;for&#x20;future&#x20;flexible,&#x20;transparent,&#x20;and&#x20;wearable&#x20;electronics.&#x20;Due&#x20;to&#x20;the&#x20;lack&#x20;of&#x20;compatible&#x20;synthesis&#x20;and&#x20;study,&#x20;however,&#x20;the&#x20;characteristic&#x20;influences&#x20;of&#x20;2D&#x20;TMDC&#x20;nanomaterials&#x20;have&#x20;been&#x20;little&#x20;investigated&#x20;in&#x20;the&#x20;field&#x20;of&#x20;triboelectric&#x20;nanogenerator&#x20;(TENG)&#x20;devices&#x20;that&#x20;are&#x20;currently&#x20;one&#x20;of&#x20;the&#x20;main&#x20;technologies&#x20;for&#x20;mechanical&#x20;energy&#x20;harvesting.&#x20;In&#x20;this&#x20;report,&#x20;we&#x20;demonstrate&#x20;a&#x20;fast,&#x20;non-vacuum,&#x20;wafer-scale,&#x20;and&#x20;patternable&#x20;synthesis&#x20;method&#x20;for&#x20;2D&#x20;MoS2&#x20;using&#x20;pulsed&#x20;laser-directed&#x20;thermolysis.&#x20;The&#x20;laser-based&#x20;synthesis&#x20;technique&#x20;that&#x20;we&#x20;have&#x20;developed&#x20;can&#x20;apply&#x20;internal&#x20;stress&#x20;to&#x20;MoS2&#x20;crystal&#x20;by&#x20;adjusting&#x20;its&#x20;morphological&#x20;structure,&#x20;so&#x20;that&#x20;a&#x20;surface-crumpled&#x20;MoS2&#x20;TENG&#x20;device&#x20;generates-40%&#x20;more&#x20;power&#x20;than&#x20;a&#x20;flat&#x20;MoS2&#x20;one.&#x20;Compared&#x20;to&#x20;other&#x20;MoS2-based&#x20;TENG&#x20;devices,&#x20;it&#x20;shows&#x20;high-performance&#x20;energy&#x20;harvesting&#x20;(up&#x20;to-25&#x20;V&#x20;and-1.2&#x20;mu&#x20;A)&#x20;without&#x20;assistance&#x20;from&#x20;other&#x20;materials,&#x20;even&#x20;when&#x20;the&#x20;counterpart&#x20;triboelectric&#x20;surface&#x20;has&#x20;a&#x20;slightly&#x20;different&#x20;triboelectric&#x20;series.&#x20;This&#x20;enhanced&#x20;triboelectrification&#x20;is&#x20;attribute&#x20;to&#x20;work&#x20;function&#x20;change&#x20;as&#x20;well&#x20;as&#x20;enlarged&#x20;surface&#x20;roughness.&#x20;Finally,&#x20;the&#x20;direct-synthesized&#x20;MoS2&#x20;patterns&#x20;are&#x20;utilized&#x20;to&#x20;fabricate&#x20;a&#x20;self-powered&#x20;flexible&#x20;haptic&#x20;sensor&#x20;array.&#x20;The&#x20;technique&#x20;we&#x20;propose&#x20;here&#x20;is&#x20;intended&#x20;to&#x20;stimulate&#x20;further&#x20;investigation&#x20;of&#x20;the&#x20;triboelectric&#x20;effects&#x20;and&#x20;applications&#x20;of&#x20;2D&#x20;TMDC&#x20;nanomaterials.</dcvalue>
<dcvalue element="language" qualifier="none">English</dcvalue>
<dcvalue element="publisher" qualifier="none">ELSEVIER</dcvalue>
<dcvalue element="subject" qualifier="none">NANOGENERATOR</dcvalue>
<dcvalue element="subject" qualifier="none">GRAPHENE</dcvalue>
<dcvalue element="subject" qualifier="none">LAYER</dcvalue>
<dcvalue element="subject" qualifier="none">PERFORMANCE</dcvalue>
<dcvalue element="subject" qualifier="none">INTERFACE</dcvalue>
<dcvalue element="subject" qualifier="none">PIEZORESPONSE</dcvalue>
<dcvalue element="subject" qualifier="none">MODULATION</dcvalue>
<dcvalue element="subject" qualifier="none">GENERATION</dcvalue>
<dcvalue element="subject" qualifier="none">STRESS</dcvalue>
<dcvalue element="subject" qualifier="none">GROWTH</dcvalue>
<dcvalue element="title" qualifier="none">Laser-directed&#x20;synthesis&#x20;of&#x20;strain-induced&#x20;crumpled&#x20;MoS2&#x20;structure&#x20;for&#x20;enhanced&#x20;triboelectrification&#x20;toward&#x20;haptic&#x20;sensors</dcvalue>
<dcvalue element="type" qualifier="none">Article</dcvalue>
<dcvalue element="identifier" qualifier="doi">10.1016&#x2F;j.nanoen.2020.105266</dcvalue>
<dcvalue element="description" qualifier="journalClass">1</dcvalue>
<dcvalue element="identifier" qualifier="bibliographicCitation">NANO&#x20;ENERGY,&#x20;v.78</dcvalue>
<dcvalue element="citation" qualifier="title">NANO&#x20;ENERGY</dcvalue>
<dcvalue element="citation" qualifier="volume">78</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scie</dcvalue>
<dcvalue element="description" qualifier="journalRegisteredClass">scopus</dcvalue>
<dcvalue element="identifier" qualifier="wosid">000595104500003</dcvalue>
<dcvalue element="identifier" qualifier="scopusid">2-s2.0-85090245193</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Chemistry,&#x20;Physical</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Nanoscience&#x20;&amp;&#x20;Nanotechnology</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Materials&#x20;Science,&#x20;Multidisciplinary</dcvalue>
<dcvalue element="relation" qualifier="journalWebOfScienceCategory">Physics,&#x20;Applied</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Chemistry</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Science&#x20;&amp;&#x20;Technology&#x20;-&#x20;Other&#x20;Topics</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Materials&#x20;Science</dcvalue>
<dcvalue element="relation" qualifier="journalResearchArea">Physics</dcvalue>
<dcvalue element="type" qualifier="docType">Article</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">NANOGENERATOR</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">GRAPHENE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">LAYER</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">PERFORMANCE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">INTERFACE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">PIEZORESPONSE</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">MODULATION</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">GENERATION</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">STRESS</dcvalue>
<dcvalue element="subject" qualifier="keywordPlus">GROWTH</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Molybdenum&#x20;disulfide</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Laser&#x20;synthesis</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Triboelectric&#x20;nanogenerator</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">2D&#x20;surface&#x20;morphology</dcvalue>
<dcvalue element="subject" qualifier="keywordAuthor">Self-powered&#x20;haptic&#x20;sensor</dcvalue>
</dublin_core>
