Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significance b » significance _ (Expand Search), significance set (Expand Search), significant _ (Expand Search)
b decrease » _ decrease (Expand Search), a decrease (Expand Search), b1 decreased (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
significance b » significance _ (Expand Search), significance set (Expand Search), significant _ (Expand Search)
b decrease » _ decrease (Expand Search), a decrease (Expand Search), b1 decreased (Expand Search)
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661
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662
Surface structure of B<sub>4</sub>C.
Published 2025“…</p><p>Discussion</p><p>The research on LM6/B<sub>4</sub>C/fly ash composite fabrication using Grey Relational Analysis (GRA) has significantly contributed to the development of high-performance materials for wear-related applications. …”
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663
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664
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665
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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666
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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667
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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668
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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669
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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670
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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671
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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672
Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts
Published 2025“…These findings underscore the significant influence of ligand architecture on the reactivity of <b>1</b><sup><b>+</b></sup> toward H<sub>2</sub> activation. …”
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673
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674
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675
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676
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677
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678
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680