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Pore Space Partition by Symmetry-Matching Regulated Ligand Insertion and Dramatic Tuning on Carbon Dioxide Uptake

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Figshare2016-02-15 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Pore_Space_Partition_by_Symmetry_Matching_Regulated_Ligand_Insertion_and_Dramatic_Tuning_on_Carbon_Dioxide_Uptake/2210464
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Metal–organic frameworks (MOFs) with the highest CO2 uptake capacity are usually those equipped with open metal sites. Here we seek alternative strategies and mechanisms for developing high-performance CO2 adsorbents. We demonstrate that through a ligand insertion pore space partition strategy, we can create crystalline porous materials (CPMs) with superior CO2 uptake capacity. Specifically, a new material, CPM-33b-Ni without any open metal sites, exhibits the CO2 uptake capacity comparable to MOF-74 with the same metal (Ni) at 298 K and 1 bar.
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2016-02-15
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