Matches in SemOpenAlex for { <https://semopenalex.org/work/W2052133041> ?p ?o ?g. }
- W2052133041 endingPage "5908" @default.
- W2052133041 startingPage "5902" @default.
- W2052133041 abstract "Abstract Use of the ditopic ligand 1,4‐benzenedi(1 H ‐1,2,3‐triazole) (H 2 BDTri) enabled isolation of two new three‐dimensional metal–organic frameworks of formulae Cu(BDTri)L in which L=DMF ( 1 ) and diethylformamide (DEF; 2 ). These compounds have the same primary structure, featuring one‐dimensional channels with the bridging DMF or DEF molecules pointing into the cavity. Upon exposure to solvent vapors, both display a reversible flexibility, as characterized by single‐crystal to single‐crystal phase transitions in 1 . The O 2 adsorption isotherms for the compounds show a two‐step adsorption behavior associated with a permanent microporosity and a pore‐opening process. In the case of N 2 adsorption, only 1 exhibits a two‐step adsorption isotherm, whereas 2 does not present any pore opening, demonstrating that design of a flexible framework cavity can control the pore opening and thereby possibly enhance O 2 /N 2 separation." @default.
- W2052133041 created "2016-06-24" @default.
- W2052133041 creator A5042591801 @default.
- W2052133041 creator A5053553877 @default.
- W2052133041 date "2010-05-14" @default.
- W2052133041 modified "2023-10-18" @default.
- W2052133041 title "Selective Gas Adsorption in the Flexible Metal-Organic Frameworks Cu(BDTri)L (L=DMF, DEF)" @default.
- W2052133041 cites W11476871 @default.
- W2052133041 cites W1969406166 @default.
- W2052133041 cites W1970048015 @default.
- W2052133041 cites W1987652875 @default.
- W2052133041 cites W1991337183 @default.
- W2052133041 cites W1999937609 @default.
- W2052133041 cites W2001081785 @default.
- W2052133041 cites W2004364435 @default.
- W2052133041 cites W2007998078 @default.
- W2052133041 cites W2022167379 @default.
- W2052133041 cites W2027254520 @default.
- W2052133041 cites W2029513184 @default.
- W2052133041 cites W2047480702 @default.
- W2052133041 cites W2052459860 @default.
- W2052133041 cites W2057374101 @default.
- W2052133041 cites W2058877670 @default.
- W2052133041 cites W2060325015 @default.
- W2052133041 cites W2062997825 @default.
- W2052133041 cites W2065823494 @default.
- W2052133041 cites W2066001826 @default.
- W2052133041 cites W2068126260 @default.
- W2052133041 cites W2072436367 @default.
- W2052133041 cites W2075731109 @default.
- W2052133041 cites W2082621257 @default.
- W2052133041 cites W2083615943 @default.
- W2052133041 cites W2084294292 @default.
- W2052133041 cites W2088771535 @default.
- W2052133041 cites W2099486431 @default.
- W2052133041 cites W2101421043 @default.
- W2052133041 cites W2102567539 @default.
- W2052133041 cites W2103829561 @default.
- W2052133041 cites W2106259156 @default.
- W2052133041 cites W2108712263 @default.
- W2052133041 cites W2109981002 @default.
- W2052133041 cites W2117204828 @default.
- W2052133041 cites W2119101083 @default.
- W2052133041 cites W2125761900 @default.
- W2052133041 cites W2128141951 @default.
- W2052133041 cites W2130304166 @default.
- W2052133041 cites W2135978823 @default.
- W2052133041 cites W2137879490 @default.
- W2052133041 cites W2141067506 @default.
- W2052133041 cites W2162148042 @default.
- W2052133041 cites W2952599686 @default.
- W2052133041 cites W4205928040 @default.
- W2052133041 cites W4232142777 @default.
- W2052133041 cites W4235243082 @default.
- W2052133041 cites W4236524274 @default.
- W2052133041 cites W4249811000 @default.
- W2052133041 cites W4251020667 @default.
- W2052133041 cites W4252019908 @default.
- W2052133041 cites W4252458669 @default.
- W2052133041 doi "https://doi.org/10.1002/chem.201000053" @default.
- W2052133041 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/20397165" @default.
- W2052133041 hasPublicationYear "2010" @default.
- W2052133041 type Work @default.
- W2052133041 sameAs 2052133041 @default.
- W2052133041 citedByCount "114" @default.
- W2052133041 countsByYear W20521330412012 @default.
- W2052133041 countsByYear W20521330412013 @default.
- W2052133041 countsByYear W20521330412014 @default.
- W2052133041 countsByYear W20521330412015 @default.
- W2052133041 countsByYear W20521330412016 @default.
- W2052133041 countsByYear W20521330412017 @default.
- W2052133041 countsByYear W20521330412018 @default.
- W2052133041 countsByYear W20521330412019 @default.
- W2052133041 countsByYear W20521330412021 @default.
- W2052133041 countsByYear W20521330412022 @default.
- W2052133041 countsByYear W20521330412023 @default.
- W2052133041 crossrefType "journal-article" @default.
- W2052133041 hasAuthorship W2052133041A5042591801 @default.
- W2052133041 hasAuthorship W2052133041A5053553877 @default.
- W2052133041 hasConcept C116569031 @default.
- W2052133041 hasConcept C127413603 @default.
- W2052133041 hasConcept C147789679 @default.
- W2052133041 hasConcept C150394285 @default.
- W2052133041 hasConcept C170493617 @default.
- W2052133041 hasConcept C178790620 @default.
- W2052133041 hasConcept C179104552 @default.
- W2052133041 hasConcept C179366358 @default.
- W2052133041 hasConcept C185592680 @default.
- W2052133041 hasConcept C192562407 @default.
- W2052133041 hasConcept C2777895876 @default.
- W2052133041 hasConcept C2780471494 @default.
- W2052133041 hasConcept C32909587 @default.
- W2052133041 hasConcept C42360764 @default.
- W2052133041 hasConcept C544153396 @default.
- W2052133041 hasConcept C55493867 @default.
- W2052133041 hasConcept C73922627 @default.
- W2052133041 hasConcept C8010536 @default.
- W2052133041 hasConceptScore W2052133041C116569031 @default.