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point decrease » point increase (Expand Search)
d decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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16581
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16582
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16583
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16584
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16585
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16586
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16587
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16588
Tuning Crystallinity and Stacking of Two-Dimensional Covalent Organic Frameworks through Side-Chain Interactions
Published 2023“…As pendant chain length is increased, trends show average layer offset increasing to a maximum of 2.07 Å in <b>C</b><sub><b>5</b></sub> <b>COF</b> and then decreasing as chain length is extended through <b>C</b><sub><b>11</b></sub> <b>COF</b>. …”
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16589
Sr<sub>2</sub>MnO<sub>2</sub>Na<sub>1.6</sub>Se<sub>2</sub>: A Metamagnetic Layered Oxychalcogenide Synthesized by Reductive Na Intercalation to Break [Se<sub>2</sub>]<sup>2–</sup>...
Published 2024“…Freshly prepared samples have 16(1) % Na-site vacancies corresponding to a formal oxidation state of Mn of +2.32, a mixed-valence between Mn<sup>2+</sup> (d<sup>5</sup>) and Mn<sup>3+</sup> (d<sup>4</sup>). …”
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16590
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16591
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16592
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16593
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16594
Graph showing a rise in the serum concentrations of 25-hydroxyvitamin D [25(OH)D] during vitamin D supplementation in patients with either type 1 diabetes or type 2 diabetes.
Published 2014“…<p>In patients with type 1 diabetes, 25(OH)D rose from a baseline of 53.3±14.6 nmol/L to a peak of 67.6±20.6 at 3 mo, and then decreased to 62.4±18.4 (ANOVA p<0.001). …”
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16595
Vitamin D receptor suppresses proliferation and metastasis in renal cell carcinoma cell lines via regulating the expression of the epithelial Ca<sup>2+</sup> channel TRPV5
Published 2018“…<div><p>We previously demonstrated that transient receptor potential vanilloid subfamily 5 (TRPV5) expression was decreased in renal cell carcinoma (RCC) compared with that in normal kidney tissues, a finding that was correlated with vitamin D receptor (VDR) expression, but further investigations is warranted. …”
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16596
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16597
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16598
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16599
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16600