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    <title>Flatland: news on g-C₃N₄</title>
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    <description>The newest items tagged g-C₃N₄ in the Flatland news feed.</description>
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    <lastBuildDate>Mon, 05 Oct 2026 08:10:53 GMT</lastBuildDate>
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      <title>Wafer-scale epitaxy growth of high-mobility p-type boron carbon nitride</title>
      <link>https://www.nature.com/articles/s41586-026-11047-9</link>
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      <pubDate>Wed, 30 Sep 2026 00:00:00 GMT</pubDate>
      <description>Nature: A dual-precursor chemical system is used to achieve wafer-scale epitaxy growth of boron carbon nitride, a high-performance p-type semiconductor, for potential integration in efficient 2D materials for electronics.</description>
      <category>Engineering</category>
      <category>g-C₃N₄</category>
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    <item>
      <title>Coupling Light‐Heat Utilization in Hydrogel‐Encapsulated Ultrathin Defective Carbon Nitride Nanosheets for Scalable Continuous‐Flow H2O2 Photosynthesis</title>
      <link>https://onlinelibrary.wiley.com/doi/10.1002/smll.75968?af=R</link>
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      <pubDate>Sun, 27 Sep 2026 16:49:49 GMT</pubDate>
      <description>Small</description>
      <category>Experiment</category>
      <category>g-C₃N₄</category>
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      <title>Wrinkled carbon nitride challenges flat-sheet model for photocatalyst design</title>
      <link>https://phys.org/news/2026-09-wrinkled-carbon-nitride-flat-sheet.html</link>
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      <pubDate>Fri, 04 Sep 2026 13:00:04 GMT</pubDate>
      <description>Phys.org: Graphene is flat. But that doesn't mean other 2D materials—particularly those containing more than one element—necessarily share the same structure. In the past, researchers have often simplified these materials by modeling them as perfectly flat sheets.</description>
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      <category>g-C₃N₄</category>
      <category>Graphene</category>
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