Search alternatives:
linear decrease » linear increase (Expand Search)
teer decrease » greater decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
linear decrease » linear increase (Expand Search)
teer decrease » greater decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
-
3821
-
3822
-
3823
-
3824
-
3825
-
3826
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3827
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3828
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3829
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3830
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3831
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3832
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3833
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“…Additionally, the interaction between the phosphorus atom and the nitrogen atom of the pyridine ring in the pincer ligand plays a critical role in stabilizing the cationic product of the reaction. …”
-
3834
-
3835
-
3836
-
3837
-
3838
-
3839
-
3840