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larger decrease » marked decrease (Expand Search)
linear decrease » linear increase (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
larger decrease » marked decrease (Expand Search)
linear decrease » linear increase (Expand Search)
teer decrease » mean decrease (Expand Search), greater decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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2661
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2662
Sequence of <i>DpAP2</i> promoter.
Published 2024“…It was speculated that MeJA significantly decreased expression of <i>DpAP2</i> gene, then the decreasing <i>DpAP2</i> expression significantly inhibited expression of some key enzyme genes such as <i>PSY</i>, <i>PDS</i> and <i>GGPS</i> in carotenoid biosynthesis pathway. …”
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2663
Predicted <i>cis</i>-acting elements in <i>DpAP2</i> promoter.
Published 2024“…It was speculated that MeJA significantly decreased expression of <i>DpAP2</i> gene, then the decreasing <i>DpAP2</i> expression significantly inhibited expression of some key enzyme genes such as <i>PSY</i>, <i>PDS</i> and <i>GGPS</i> in carotenoid biosynthesis pathway. …”
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2664
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2665
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2666
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2667
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2668
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2669
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2670
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2671
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2672
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2673
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2674
Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles
Published 2025“…Achieving tunable electrical conductivity in organic materials is a key challenge for the development of next-generation semiconductors. …”
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2675
Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles
Published 2025“…Achieving tunable electrical conductivity in organic materials is a key challenge for the development of next-generation semiconductors. …”
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2676
Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles
Published 2025“…Achieving tunable electrical conductivity in organic materials is a key challenge for the development of next-generation semiconductors. …”
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2677
Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles
Published 2025“…Achieving tunable electrical conductivity in organic materials is a key challenge for the development of next-generation semiconductors. …”
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2678
Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles
Published 2025“…Achieving tunable electrical conductivity in organic materials is a key challenge for the development of next-generation semiconductors. …”
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2679
Charge-Transfer-Driven Electrical Conductivity in Single Crystals of Assembled Triphenylamine Bis-urea Macrocycles
Published 2025“…Achieving tunable electrical conductivity in organic materials is a key challenge for the development of next-generation semiconductors. …”
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2680
Promotion of CO<sub>2</sub> Reactivity by Organic Acid on Aerosol Surfaces
Published 2025“…The results show that the reactions of CO<sub>2</sub>-NH<sub>3</sub>/amines predominantly occur at the interface of water droplets since CO<sub>2</sub>/NH<sub>3</sub>/amines show a surface tendency. At the surface with formic acid (HCOOH), the barrier of C–N compound formation from the CO<sub>2</sub>-NH<sub>3</sub> reaction catalyzed by HCOOH is calculated to be 6.8 kcal/mol, which can be easily overcome at ambient temperature and is significantly decreased in comparison to both gas phase and surface without organic acid. …”