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	<title>demo-062401 Archives - ÚFI FSI VUT v Brně</title>
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		<title>Nový článek v časopisu Science</title>
		<link>https://physics.fme.vutbr.cz/2024/06/03/novy-clanek-v-casopisu-science/</link>
					<comments>https://physics.fme.vutbr.cz/2024/06/03/novy-clanek-v-casopisu-science/#respond</comments>
		
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		<pubDate>Mon, 03 Jun 2024 20:39:02 +0000</pubDate>
				<category><![CDATA[demo-062401]]></category>
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					<description><![CDATA[<p>Martin Hrtoň a Radek Kalousek z ÚFI jsou spoluautory nového článku publikovaného v prestižním časopisu Science, nesoucího název &#8220;Determining hot-carrier transport dynamics from terahertz emission&#8221;. Publikovaný výzkum má potenciál významně posunout state-of-the-art v oblasti energetického inženýrství a obnovitelných zdrojů energie. Quisque dui eros, porttitor a tellus pulvinar, imperdiet condimentum dui. Quisque sapien erat, iaculis nec [&#8230;]</p>
<p>The post <a href="https://physics.fme.vutbr.cz/2024/06/03/novy-clanek-v-casopisu-science/">Nový článek v časopisu Science</a> appeared first on <a href="https://physics.fme.vutbr.cz">ÚFI FSI VUT v Brně</a>.</p>
]]></description>
										<content:encoded><![CDATA[
<p>Martin Hrtoň a Radek Kalousek z ÚFI jsou spoluautory nového článku publikovaného v prestižním časopisu Science, nesoucího název &#8220;Determining hot-carrier transport dynamics from terahertz emission&#8221;. Publikovaný výzkum má potenciál významně posunout state-of-the-art v oblasti energetického inženýrství a obnovitelných zdrojů energie.</p>



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<p>Quisque dui eros, porttitor a tellus pulvinar, imperdiet condimentum dui. Quisque sapien erat, iaculis nec magna sit amet, ultrices placerat enim. Fusce rhoncus auctor gravida. Vivamus sed neque a ligula tempus imperdiet quis ut augue. Mauris ac dictum nulla. Sed eleifend vitae dolor vitae congue. Sed eu tincidunt lectus, eget congue justo.</p>



<p>Suspendisse ultrices neque pharetra fringilla eleifend. Fusce vel ligula fringilla, consequat est ac, posuere tortor. Nunc orci orci, dictum vel metus eget, mollis fringilla risus. Morbi eget turpis ultricies, rutrum libero sit amet, scelerisque massa. Aenean feugiat lacinia felis ac fermentum. Nam viverra sagittis ligula, eu porttitor arcu mattis quis. Aliquam pellentesque consectetur nibh ac placerat. Proin sed sollicitudin lacus. Suspendisse sodales quis velit eu iaculis. Suspendisse ornare, nisl at efficitur malesuada, purus lectus finibus tortor, at iaculis sem augue eu diam. Orci varius natoque penatibus et magnis dis parturient montes, nascetur ridiculus mus. Pellentesque ullamcorper mauris ac vehicula laoreet. Phasellus rhoncus pretium nulla tempus rhoncus. Aliquam diam est, pellentesque vitae suscipit in, facilisis rhoncus nisl.</p>
<p>The post <a href="https://physics.fme.vutbr.cz/2024/06/03/novy-clanek-v-casopisu-science/">Nový článek v časopisu Science</a> appeared first on <a href="https://physics.fme.vutbr.cz">ÚFI FSI VUT v Brně</a>.</p>
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		<title>Výsledky výzkumu 2D materiálů byly publikovány v Nature Materials</title>
		<link>https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals/</link>
					<comments>https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals/#respond</comments>
		
		<dc:creator><![CDATA[administrator]]></dc:creator>
		<pubDate>Sun, 02 Jun 2024 21:04:05 +0000</pubDate>
				<category><![CDATA[demo-062401]]></category>
		<guid isPermaLink="false">http://dev3.unitart.cz/?p=2304</guid>

					<description><![CDATA[<p>Miroslav Kolíbal je spoluautorem nového článku publikovaného v prestižním Nature Materials. Publikace se zabývá jedním z těžišť současného výzkumu v oblasti 2D materiálů &#8211; Twisted-layer-graphene, který je zajímavý zejména jako laditelný substrát pro epitaxní růst nebo materiál s modulovatelnými elektronickými parametry The properties of two-dimensional (2D) van der Waals materials can be tuned through nanostructuring [&#8230;]</p>
<p>The post <a href="https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals/">Výsledky výzkumu 2D materiálů byly publikovány v Nature Materials</a> appeared first on <a href="https://physics.fme.vutbr.cz">ÚFI FSI VUT v Brně</a>.</p>
]]></description>
										<content:encoded><![CDATA[
<p>Miroslav Kolíbal je spoluautorem nového článku publikovaného v prestižním Nature Materials. Publikace se zabývá jedním z těžišť současného výzkumu v oblasti 2D materiálů &#8211; Twisted-layer-graphene, který je zajímavý zejména jako laditelný substrát pro epitaxní růst nebo materiál s modulovatelnými elektronickými parametry</p>



<p>The properties of two-dimensional (2D) van der Waals materials can be tuned through nanostructuring or controlled layer stacking, where interlayer hybridization induces exotic electronic states and transport phenomena. Here we describe a viable approach and underlying mechanism for the assisted self-assembly of twisted layer graphene. The process, which can be implemented in standard chemical vapour deposition growth, is best described by analogy to origami and kirigami with paper. It involves the controlled induction of wrinkle formation in single-layer graphene with subsequent wrinkle folding, tearing and re-growth. Inherent to the process is the formation of intertwined graphene spirals and conversion of the chiral angle of 1D wrinkles into a 2D twist angle of a 3D superlattice. The approach can be extended to other foldable 2D materials and facilitates the production of miniaturized electronic …</p>



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<p>The post <a href="https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals/">Výsledky výzkumu 2D materiálů byly publikovány v Nature Materials</a> appeared first on <a href="https://physics.fme.vutbr.cz">ÚFI FSI VUT v Brně</a>.</p>
]]></content:encoded>
					
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		<title>2D materials article was published in Nature Materials</title>
		<link>https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals-2/</link>
					<comments>https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals-2/#respond</comments>
		
		<dc:creator><![CDATA[administrator]]></dc:creator>
		<pubDate>Sun, 02 Jun 2024 21:04:05 +0000</pubDate>
				<category><![CDATA[demo-062401]]></category>
		<guid isPermaLink="false">http://dev3.unitart.cz/?p=4341</guid>

					<description><![CDATA[<p>Miroslav Kolíbal je spoluautorem nového článku publikovaného v prestižním Nature Materials. Publikace se zabývá jedním z těžišť současného výzkumu v oblasti 2D materiálů &#8211; Twisted-layer-graphene, který je zajímavý zejména jako laditelný substrát pro epitaxní růst nebo materiál s modulovatelnými elektronickými parametry The properties of two-dimensional (2D) van der Waals materials can be tuned through nanostructuring [&#8230;]</p>
<p>The post <a href="https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals-2/">2D materials article was published in Nature Materials</a> appeared first on <a href="https://physics.fme.vutbr.cz">ÚFI FSI VUT v Brně</a>.</p>
]]></description>
										<content:encoded><![CDATA[
<p>Miroslav Kolíbal je spoluautorem nového článku publikovaného v prestižním Nature Materials. Publikace se zabývá jedním z těžišť současného výzkumu v oblasti 2D materiálů &#8211; Twisted-layer-graphene, který je zajímavý zejména jako laditelný substrát pro epitaxní růst nebo materiál s modulovatelnými elektronickými parametry</p>



<p>The properties of two-dimensional (2D) van der Waals materials can be tuned through nanostructuring or controlled layer stacking, where interlayer hybridization induces exotic electronic states and transport phenomena. Here we describe a viable approach and underlying mechanism for the assisted self-assembly of twisted layer graphene. The process, which can be implemented in standard chemical vapour deposition growth, is best described by analogy to origami and kirigami with paper. It involves the controlled induction of wrinkle formation in single-layer graphene with subsequent wrinkle folding, tearing and re-growth. Inherent to the process is the formation of intertwined graphene spirals and conversion of the chiral angle of 1D wrinkles into a 2D twist angle of a 3D superlattice. The approach can be extended to other foldable 2D materials and facilitates the production of miniaturized electronic …</p>



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<figure class="wp-block-image alignleft size-full"><img loading="lazy" decoding="async" width="252" height="253" src="http://physics2.fme.vutbr.cz/wp-content/uploads/2024/06/nature-mats-image.webp" alt="" class="wp-image-2314" srcset="https://physics.fme.vutbr.cz/wp-content/uploads/2024/06/nature-mats-image.webp 252w, https://physics.fme.vutbr.cz/wp-content/uploads/2024/06/nature-mats-image-150x150.webp 150w" sizes="auto, (max-width: 252px) 100vw, 252px" /></figure>
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<p>The post <a href="https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals-2/">2D materials article was published in Nature Materials</a> appeared first on <a href="https://physics.fme.vutbr.cz">ÚFI FSI VUT v Brně</a>.</p>
]]></content:encoded>
					
					<wfw:commentRss>https://physics.fme.vutbr.cz/2024/06/02/nature-materials-conversion-of-chirality-to-twisting-via-sequential-one-dimensional-and-two-dimensional-growth-of-graphene-spirals-2/feed/</wfw:commentRss>
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