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    <description>Electronic correlations strongly influence the properties of matter and thus are an ideal playground for physicists to explore fundamental aspects of solid state physics.</description>
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    <description>Researchers at IBM&amp;rsquo;s lab create the world&amp;rsquo;s smallest magnetic bit, using 12 iron atoms.</description>
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    <description>An ambitious theoretical investigation into the properties of cuprous oxide suggests it possesses remarkable non-linear optical (NLO) properties.</description>
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    <description>A team of University of Illinois engineers has developed a self-healing system that restores electrical conductivity to a cracked circuit in less time than it takes to blink.</description>
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    <description>The modern wonder stuff, graphene, can now be used as part of a liquid-gated field effect transistor to detect ion concentrations in very tiny amounts of fluid, as shown by Chinese scientists.</description>
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    <description>The development of nanostructured ZnO components for devices could lead to inherently waterproof electronic devices.</description>
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    <description>In the era of globalization a resource-intensive industry comes to its limits. Progress in materials science opens up alternatives to wasteful technologies and provides prospective innovations.</description>
    <dc:date>2011-10-04T16:00:00Z</dc:date>
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    <link>http://www.materialsviews.com/details/news/1346993/Nanosecond_Laser_Shots_Produce_Graphene_Ribbons.html</link>
    <description>Researchers have invented a method to fabricated grating structures on bulk graphite using nanosecond laser shots.</description>
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