Mof-74 cif
Cu-MOF-74 (also known as Cu-CPO-27) was identified as a sorbent having one of the highest densities of Cu (II) sites per unit volume. Given that Cu (II) in the framework can be thermally activated to yield a five-coordinate Cu (II) species, we identified this MOF as a potential candidate for maximal volumetric uptake of …
duplicates into the original files, and marking the new files as duplicated. The cif/4/51/ (antanas@kurmis) Replacing _[local]_cod_* tags with their equivalents from the COD CIF dictionary in multiple entries in subrange 4/51/20. 4512072.cif: 126822: 2014-11-11: cif/ Updating files of 4512072, 4512073, 4512074 Original log message: Adding full bibliography for 4512072--4512074.cif. 4512072.cif: 124959: 2014-10-07: cif Cu-MOF-74 is an active catalyst in the Friedel–Craft acylation of anisole. MOF-74-Mg Supplemental Information Explore MOF Applications, Properties and Materials to construct MOFs in the MOF Constructor Tool Literature suggests that the following materials can be used to prepare MOF-74-Mg.
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Aug 6, 2019 MOF-74,34 M(isonicotinic acid)2 (M = Zn, Co, Cu, Cd),35 MFM-300(Al),36. M2Cl2BBTA (M Crystallographic data for NU-300 (CIF). Materials example is Mg-MOF-74, an air stable MOF, with a remarkable. CO2 uptake of 35.2 graphic data in CIF or other electronic format see DOI: 10.1039/ c4ce01667j. Jul 12, 2016 Full Tutorial on Rietveld Refinement using FullProf Software |CIF file| VESTA Soft| Crystal Struct.
A new metal–organic framework Zn2(H2O)(dobdc)·0.5(H2O) (UTSA-74, H4dobdc = 2,5-dioxido-1,4-benzenedicarboxylic acid), Zn-MOF-74/CPO-27-Zn isomer, has been synthesized and structurally characterized. It has a novel four coordinated fgl topology with one-dimensional channels of about 8.0 Å.
288477. 139. where the same structure type can be obtained by expanding the length of the linker from the one phenylene ring present in the original MOF-74 (Rosi et al., given in Supporting Information as CIF files.
Aug 21, 2012 NNIN Computation Program .at University of Michigan. NNIN Computation Program .at University of Michigan. •. 74K views 7 years ago
48 Curriculum Vitae 54 4. List of Tables and Figures Figure 1.1. A schematic representation of a typical electrochromic device. 6 Figure 1.2.
Authors of onedMOF/mof74/mg-mof-74. cif · Go to file T · Go to line L · Copy path Copy permalink. Aug 30, 2013 CCDC CIF depository request form is available free of charge via the Internet at CPO-27-Ni, Ni-MOF-74 Ni2(DOT). Ni. LECQEQ. 288477.
Some of the so-formed crystals are the smallest ones of any metal–organic framework (MOF) material (and, to the best of our knowledge, of any microporous material) ever reported. cif/7/10/ (antanas@kurmis) Replacing _[local]_cod_* tags with their equivalents from the COD CIF dictionary in multiple entries in subrange 7/10/88. 7108869.cif: 111965: 2014-04-28: cif/ (saulius@koala.ibt.lt) Merging information from the recently deposited Chem. Comm. duplicates into the original files, and marking the new files as duplicated. The cif/4/51/ (antanas@kurmis) Replacing _[local]_cod_* tags with their equivalents from the COD CIF dictionary in multiple entries in subrange 4/51/20. 4512072.cif: 126822: 2014-11-11: cif/ Updating files of 4512072, 4512073, 4512074 Original log message: Adding full bibliography for 4512072--4512074.cif.
Structure of MOF-74 built with 2,5-dioxidoterephthalate (DOT) as the Jan 12, 2018 MOF-74 resembles a series of tightly packed straws comprised mostly of carbon atoms (white balls) with columns of zinc ions (blue balls) running down the walls. Heavy hydrogen molecules (green balls) adsorbed in MOF-74 pack into the tubes more densely than they would in solid form. Aug 06, 2015 Paper: Water Adsorption in Porous Metal–Organic Frameworks and Related Materials Authors: H. Furukawa, F. Gándara, Y.-B. Zhang, J. Jiang, W. L. Queen, M. R. Hudson A database of MOFs and simulated Isotherms . 10.1021/acs.cgd.7b00848 10.1021/acs.cgd.7b00848 10.1021/acs.cgd.7b00848 10.1021/acs.cgd.7b00848 10.1021/acs.cgd.7b00848 onedMOF / mof74 / mg-mof-74.cif Go to file Go to file T; Go to line L; Copy path Cannot retrieve contributors at this time. 186 lines (184 sloc) 14.5 KB Raw Blame C0 C 0.0669848147496 0.228584349477 0.436908259086 1.727558 Uiso 1.00 C1 C 0.114935336832 0.196447741598 0.293040691884 -0.987069 Uiso 1.00 C2 C 0.110278083607 0.215529741387 0.096925016056 0.425146 Uiso 1.00 C3 C 0.158451082821 0.182136038029 0.976373456129 -0.191852 Uiso 1.00 H4 H 0.156066268055 0 2.1.1. Cobalt MOF-74 (Co-MOF-74) In a 400 mL jar, with sonication, 0.5 g of 2,5 dihydroxyter-ephthalicacid(DHTA)and1.5gofCo(NO 3) 2 6H 2Oweredissolvedin 70mLofdimethylformamide(DMF),70mLofethanol,and70mLof water.
•. 13K views Aug 21, 2012 NNIN Computation Program .at University of Michigan. NNIN Computation Program .at University of Michigan. •.
duplicates into the original files, and marking the new files as duplicated. The cif/4/51/ (antanas@kurmis) Replacing _[local]_cod_* tags with their equivalents from the COD CIF dictionary in multiple entries in subrange 4/51/20. 4512072.cif: 126822: 2014-11-11: cif/ Updating files of 4512072, 4512073, 4512074 Original log message: Adding full bibliography for 4512072--4512074.cif. 4512072.cif: 124959: 2014-10-07: cif This paper describes the preparation and characterization of nanoscaled M-MOF-74/CPO-27-M (M = Mg, Mn, Co, Ni, and Zn) materials at room temperature. Some of the so-formed crystals are the smallest ones of any metal–organic framework (MOF) material (and, to the best of our knowledge, of any microporous material) ever reported.
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This paper describes the preparation and characterization of nanoscaled M-MOF-74/CPO-27-M (M = Mg, Mn, Co, Ni, and Zn) materials at room temperature. Some of the so-formed crystals are the smallest ones of any metal–organic framework (MOF) material (and, to the best of our knowledge, of any microporous material) ever reported.
The cif/4/51/ (antanas@kurmis) Replacing _[local]_cod_* tags with their equivalents from the COD CIF dictionary in multiple entries in subrange 4/51/20. 4512072.cif: 126822: 2014-11-11: cif/ Updating files of 4512072, 4512073, 4512074 Original log message: Adding full bibliography for 4512072--4512074.cif. 4512072.cif: 124959: 2014-10-07: cif This paper describes the preparation and characterization of nanoscaled M-MOF-74/CPO-27-M (M = Mg, Mn, Co, Ni, and Zn) materials at room temperature. Some of the so-formed crystals are the smallest ones of any metal–organic framework (MOF) material (and, to the best of our knowledge, of any microporous material) ever reported.