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ns decrease » _ decrease (Expand Search), a decrease (Expand Search), use decreased (Expand Search)
nm decrease » _ decrease (Expand Search), a decrease (Expand Search), gy decreased (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
50 ns » 50 ms (Expand Search)
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1
Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries
Published 2023“…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
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2
Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries
Published 2023“…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
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3
Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries
Published 2023“…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
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4
Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries
Published 2023“…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
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5
Evidence of Formation of 1–10 nm Diameter Ice Nanotubes in Double-Walled Carbon Nanotube Capillaries
Published 2023“…However, the single-walled INTs reported in the literature all possess subnanometer diameters (<1 nm). Herein, based on systematic and large-scale molecular dynamics simulations, we demonstrate the spontaneous freezing transition of liquid water to single-walled INTs with diameters reaching ∼10 nm when confined to capillaries of double-walled carbon nanotubes (DW-CNTs). …”
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
12
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
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Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: -
20
Recombination of Autodissociated Water Ions in a Nanoscale Pure Water Droplet
Published 2025Subjects: