Search alternatives:
nn decrease » _ decrease (Expand Search), gy decreased (Expand Search), b1 decreased (Expand Search)
we decrease » _ decrease (Expand Search), teer decrease (Expand Search), use decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
nn decrease » _ decrease (Expand Search), gy decreased (Expand Search), b1 decreased (Expand Search)
we decrease » _ decrease (Expand Search), teer decrease (Expand Search), use decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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466
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Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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468
Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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469
Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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470
Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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471
Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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472
Hydrogel Coated Mesh with Controlled Flux for Oil/Water Separation
Published 2024“…After 100 separations of a mixture of <i>n</i>-hexane and water, the flux was still higher than 50,000 L m<sup>–2</sup> h<sup>–1</sup> with a separation efficiency above 99%, which is superior to most of hydrogel-coated meshes reported so far. …”
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473
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Regenerating axons are increased by ATRA and decreased by clodronate.
Published 2021“…(E) ATRA and clodronate liposome treatment, composite from 2 sections. Scale bar: 100 μm in A and B. (F) Bar and scatter plots of the number of axons per transverse section, sampled at approximately 200 μm distal to the cut site, showing mean ± SEM. …”
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475
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Stability scores with refinement, no USM decreases, no W.
Published 2022“…<p>Effects of guided and random substitutions within GM designs with a maximum sequence identity to any expert-designed protein of less than 50%, when guided substitutions are not permitted to decrease USM EC<sub>50</sub> predictions and neither guided nor random substitutions are allowed to change amino acids to tryptophan.…”
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480
Stability scores with refinement, no USM decreases, no AFILMVWY.
Published 2022“…<p>Effects of guided and random substitutions within GM designs with a maximum sequence identity to any expert-designed protein of less than 50%, when guided substitutions are not permitted to decrease USM EC<sub>50</sub> predictions and neither guided nor random substitutions are allowed to change amino acids to alanine, phenylalanine, isoleucine, leucine, methionine, valine, tryptophan, or tyrosine.…”