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greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
teer decrease » mean decrease (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
teer decrease » mean decrease (Expand Search)
we decrease » _ decrease (Expand Search), nn decrease (Expand Search), mean decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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3661
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3662
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3663
Three-Tier Hierarchical Porous Structure with Ultrafast Capillary Transport for Flexible Electronics Cooling
Published 2025“…The mesocrack, acting as the main water flow channel, efficiently decreases the flow resistance. The micropore, covered with densely distributed spore-like nanopapillae, creates a heterogeneous wetting surface. …”
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3664
Three-Tier Hierarchical Porous Structure with Ultrafast Capillary Transport for Flexible Electronics Cooling
Published 2025“…The mesocrack, acting as the main water flow channel, efficiently decreases the flow resistance. The micropore, covered with densely distributed spore-like nanopapillae, creates a heterogeneous wetting surface. …”
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3665
Three-Tier Hierarchical Porous Structure with Ultrafast Capillary Transport for Flexible Electronics Cooling
Published 2025“…The mesocrack, acting as the main water flow channel, efficiently decreases the flow resistance. The micropore, covered with densely distributed spore-like nanopapillae, creates a heterogeneous wetting surface. …”
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3666
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3667
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3668
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3669
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3670
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3671
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3672
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…This process continued up to 1000 °C, resulting in a significant reduction of the substrate area covered by gold from 47 to 10%. …”
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3673
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3674
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3675
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3676
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3677
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3678
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3679
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3680