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step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
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7001
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7002
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7003
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7004
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7005
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7006
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7007
Discovery of Novel 3‑Phenylpiperidine Derivatives Targeting the β‑Catenin/B-Cell Lymphoma 9 Interaction as a Single Agent and in Combination with the Anti-PD‑1 Antibody for the Tre...
Published 2023“…Among them, compound <b>41</b> showed the best IC<sub>50</sub> (0.72 μM) in a competitive fluorescence polarization assay and a <i>K</i><sub>D</sub> value of 0.26 μM for the β-catenin protein. …”
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7008
Discovery of Novel 3‑Phenylpiperidine Derivatives Targeting the β‑Catenin/B-Cell Lymphoma 9 Interaction as a Single Agent and in Combination with the Anti-PD‑1 Antibody for the Tre...
Published 2023“…Among them, compound <b>41</b> showed the best IC<sub>50</sub> (0.72 μM) in a competitive fluorescence polarization assay and a <i>K</i><sub>D</sub> value of 0.26 μM for the β-catenin protein. …”
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7009
Discovery of Novel 3‑Phenylpiperidine Derivatives Targeting the β‑Catenin/B-Cell Lymphoma 9 Interaction as a Single Agent and in Combination with the Anti-PD‑1 Antibody for the Tre...
Published 2023“…Among them, compound <b>41</b> showed the best IC<sub>50</sub> (0.72 μM) in a competitive fluorescence polarization assay and a <i>K</i><sub>D</sub> value of 0.26 μM for the β-catenin protein. …”
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7010
Discovery of Novel 3‑Phenylpiperidine Derivatives Targeting the β‑Catenin/B-Cell Lymphoma 9 Interaction as a Single Agent and in Combination with the Anti-PD‑1 Antibody for the Tre...
Published 2023“…Among them, compound <b>41</b> showed the best IC<sub>50</sub> (0.72 μM) in a competitive fluorescence polarization assay and a <i>K</i><sub>D</sub> value of 0.26 μM for the β-catenin protein. …”
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7011
Water interaction and bond strength to dentin of dye-labelled adhesive as a function of the addition of rhodamine B
Published 2022“…No significance in µTBS between MP and MP-RB for seven days or one year was observed, whereas for SE a decrease in the µTBS means occurred in both storage times. …”
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7012
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7013
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7014
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
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7015
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
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7016
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
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7017
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
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7018
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
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7019
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”
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7020
Trade-Off for Better Balanced Nonlinear Optical Performance with Disordered Si in ZnGeP<sub>2</sub>
Published 2022“…Theoretical calculations with special quasirandom structures show that the NLO coefficient decreases gradually with increasing Si content, but the decrease is tiny in the 0–50% range and acute in the 50–100% range of Si. …”