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marked decrease » marked increase (Expand Search)
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nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a marked » _ marked (Expand Search), a marker (Expand Search), a market (Expand Search)
b large » _ large (Expand Search), a large (Expand Search), _ larger (Expand Search)
marked decrease » marked increase (Expand Search)
large decrease » larger decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a marked » _ marked (Expand Search), a marker (Expand Search), a market (Expand Search)
b large » _ large (Expand Search), a large (Expand Search), _ larger (Expand Search)
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Modeling the Shape and Stability of Co Nanoparticles as a Function of Size and Support Interactions through DFT Calculations and Monte Carlo Simulations
Published 2025“…We make use of a lattice model where the energy of Co atoms is estimated based on their first-shell coordination number (CN), an approach that was validated via DFT calculations. …”
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Sodium Carboxymethyl Starch Films with Enhanced Cross-Linking, Electrical, and Mechanical Properties via Supercritical-Assisted Modification
Published 2025“…Mechanically, Young’s modulus decreased to 35.5% of its original value (from 203.50 to 71.15 MPa), while the elongation at break increased 5-fold (from 11.5 to 56.7%), transitioning CMS-Na from a rigid, brittle material to a ductile, flexible one. …”
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Sodium Carboxymethyl Starch Films with Enhanced Cross-Linking, Electrical, and Mechanical Properties via Supercritical-Assisted Modification
Published 2025“…Mechanically, Young’s modulus decreased to 35.5% of its original value (from 203.50 to 71.15 MPa), while the elongation at break increased 5-fold (from 11.5 to 56.7%), transitioning CMS-Na from a rigid, brittle material to a ductile, flexible one. …”
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Sodium Carboxymethyl Starch Films with Enhanced Cross-Linking, Electrical, and Mechanical Properties via Supercritical-Assisted Modification
Published 2025“…Mechanically, Young’s modulus decreased to 35.5% of its original value (from 203.50 to 71.15 MPa), while the elongation at break increased 5-fold (from 11.5 to 56.7%), transitioning CMS-Na from a rigid, brittle material to a ductile, flexible one. …”
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