Singh, Manpreet, Neogi, Subhadip (2023) Largely Entangled Diamondoid Framework with High-Density Urea and Divergent Metal Nodes for Selective Scavenging of CO2 and Molecular Dimension-Mediated Size-Exclusive H-Bond Donor Catalysis. Inorganic Chemistry, 62 (2) 871-884 doi:10.1021/acs.inorgchem.2c03684
Reference Type | Journal (article/letter/editorial) | ||
---|---|---|---|
Title | Largely Entangled Diamondoid Framework with High-Density Urea and Divergent Metal Nodes for Selective Scavenging of CO2 and Molecular Dimension-Mediated Size-Exclusive H-Bond Donor Catalysis | ||
Journal | Inorganic Chemistry | ||
Authors | Singh, Manpreet | Author | |
Neogi, Subhadip | Author | ||
Year | 2023 (January 16) | Volume | 62 |
Issue | 2 | ||
Publisher | American Chemical Society (ACS) | ||
DOI | doi:10.1021/acs.inorgchem.2c03684Search in ResearchGate | ||
Generate Citation Formats | |||
Mindat Ref. ID | 15672766 | Long-form Identifier | mindat:1:5:15672766:4 |
GUID | 0 | ||
Full Reference | Singh, Manpreet, Neogi, Subhadip (2023) Largely Entangled Diamondoid Framework with High-Density Urea and Divergent Metal Nodes for Selective Scavenging of CO2 and Molecular Dimension-Mediated Size-Exclusive H-Bond Donor Catalysis. Inorganic Chemistry, 62 (2) 871-884 doi:10.1021/acs.inorgchem.2c03684 | ||
Plain Text | Singh, Manpreet, Neogi, Subhadip (2023) Largely Entangled Diamondoid Framework with High-Density Urea and Divergent Metal Nodes for Selective Scavenging of CO2 and Molecular Dimension-Mediated Size-Exclusive H-Bond Donor Catalysis. Inorganic Chemistry, 62 (2) 871-884 doi:10.1021/acs.inorgchem.2c03684 | ||
In | (2023, January) Inorganic Chemistry Vol. 62 (2) American Chemical Society (ACS) |
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