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1101
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“…Phosphenium pincer complexes have emerged as promising alternatives to transition metal catalysts for small-molecule activation. Among them, only the 2,6-bis(o-carborano)pyridine-stabilized phosphenium cation (<b>1</b><sup><b>+</b></sup>) has been shown to activate molecular hydrogen (H<sub>2</sub>). …”
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1102
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“…Phosphenium pincer complexes have emerged as promising alternatives to transition metal catalysts for small-molecule activation. Among them, only the 2,6-bis(o-carborano)pyridine-stabilized phosphenium cation (<b>1</b><sup><b>+</b></sup>) has been shown to activate molecular hydrogen (H<sub>2</sub>). …”
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1103
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“…Phosphenium pincer complexes have emerged as promising alternatives to transition metal catalysts for small-molecule activation. Among them, only the 2,6-bis(o-carborano)pyridine-stabilized phosphenium cation (<b>1</b><sup><b>+</b></sup>) has been shown to activate molecular hydrogen (H<sub>2</sub>). …”
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1104
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“…Phosphenium pincer complexes have emerged as promising alternatives to transition metal catalysts for small-molecule activation. Among them, only the 2,6-bis(o-carborano)pyridine-stabilized phosphenium cation (<b>1</b><sup><b>+</b></sup>) has been shown to activate molecular hydrogen (H<sub>2</sub>). …”
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1105
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“…Phosphenium pincer complexes have emerged as promising alternatives to transition metal catalysts for small-molecule activation. Among them, only the 2,6-bis(o-carborano)pyridine-stabilized phosphenium cation (<b>1</b><sup><b>+</b></sup>) has been shown to activate molecular hydrogen (H<sub>2</sub>). …”
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1106
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“…Phosphenium pincer complexes have emerged as promising alternatives to transition metal catalysts for small-molecule activation. Among them, only the 2,6-bis(o-carborano)pyridine-stabilized phosphenium cation (<b>1</b><sup><b>+</b></sup>) has been shown to activate molecular hydrogen (H<sub>2</sub>). …”
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1107
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1108
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1109
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1110
Development of a Highly Efficient NIR-II Phototherapeutic Agent for Fluorescence Imaging-Guided Synergistic PTT/PDT/Chemotherapy of Colorectal Cancer
Published 2025“…This study develops a small-molecule NIR-II phototherapeutic agent (IRF) with a high fluorescence quantum yield (17.4%), excellent PCE (96.8%) for photothermal therapy (PTT), and photodynamic therapy (PDT) activity. …”
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1111
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1112
Table1_Assessing physical fitness adaptations in collegiate male soccer players through training load parameters: a two-arm randomized study on combined small-sided games and runni...
Published 2024“…Objective<p>To evaluate the effects of a 4-week intervention combining small-sided games (SSGs) and high-intensity interval training (HIIT) on physical fitness in collegiate male soccer players.…”
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1113
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1114
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1115
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1116
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1117
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1118
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1119
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1120