DUT-5 (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "DUT-5" in English language version.

refsWebsite
Global rank English rank
2nd place
2nd place
5th place
5th place
4th place
4th place
2,020th place
1,872nd place
11th place
8th place
102nd place
76th place

doi.org

  • Senkovska, Irena; Hoffmann, Frank; Fröba, Michael; Getzschmann, Juergen; Böhlmann, Winfried; Kaskel, Stefan (June 2009). "New highly porous aluminium based metal-organic frameworks: Al(OH)(ndc) (ndc=2,6-naphthalene dicarboxylate) and Al(OH)(bpdc) (bpdc=4,4′-biphenyl dicarboxylate)". Microporous and Mesoporous Materials. 122 (1–3): 93–98. doi:10.1016/j.micromeso.2009.02.020.
  • Millange, Franck; Walton, Richard I. (October 2018). "MIL-53 and its Isoreticular Analogues: a Review of the Chemistry and Structure of a Prototypical Flexible Metal-Organic Framework". Israel Journal of Chemistry. 58 (9–10): 1019–1035. doi:10.1002/ijch.201800084. S2CID 105480508.
  • Liu, Ying-Ya; Couck, Sarah; Vandichel, Matthias; Grzywa, Maciej; Leus, Karen; Biswas, Shyam; Volkmer, Dirk; Gascon, Jorge; Kapteijn, Freek; Denayer, Joeri F. M.; Waroquier, Michel (2013-01-07). "New V IV -Based Metal–Organic Framework Having Framework Flexibility and High CO 2 Adsorption Capacity". Inorganic Chemistry. 52 (1): 113–120. doi:10.1021/ic301338a. ISSN 0020-1669. PMID 23256823.
  • Kunicki, Hannah; Chamberlain, Thomas W.; Clarkson, Guy J.; Kashtiban, Reza J.; Hooper, Joseph E.; Dawson, Daniel M.; Ashbrook, Sharon E.; Walton, Richard I. (2018). "An expanded MIL-53-type coordination polymer with a reactive pendant ligand". CrystEngComm. 20 (31): 4355–4358. doi:10.1039/C8CE00891D. hdl:10023/15542. ISSN 1466-8033.
  • Yildiz, Ceylan; Kutonova, Ksenia; Oßwald, Simon; Titze‐Alonso, Alba; Bitzer, Johannes; Bräse, Stefan; Kleist, Wolfgang (2020-02-20). "Post‐synthetic Modification of DUT‐5‐based Metal Organic Frameworks for the Generation of Single‐site Catalysts and their Application in Selective Epoxidation Reactions". ChemCatChem. 12 (4): 1134–1142. doi:10.1002/cctc.201901434. ISSN 1867-3880.
  • Liu, Ying-Ya; Decadt, Roel; Bogaerts, Thomas; Hemelsoet, Karen; Kaczmarek, Anna M.; Poelman, Dirk; Waroquier, Michel; Van Speybroeck, Veronique; Van Deun, Rik; Van Der Voort, Pascal (2013-05-30). "Bipyridine-Based Nanosized Metal–Organic Framework with Tunable Luminescence by a Postmodification with Eu(III): An Experimental and Theoretical Study". The Journal of Physical Chemistry C. 117 (21): 11302–11310. doi:10.1021/jp402154q. ISSN 1932-7447.
  • Bloch, Eric D.; Britt, David; Lee, Chain; Doonan, Christian J.; Uribe-Romo, Fernando J.; Furukawa, Hiroyasu; Long, Jeffrey R.; Yaghi, Omar M. (2010-10-20). "Metal Insertion in a Microporous Metal−Organic Framework Lined with 2,2′-Bipyridine". Journal of the American Chemical Society. 132 (41): 14382–14384. doi:10.1021/ja106935d. ISSN 0002-7863. PMID 20849109.
  • Wang, Guangbo; Leus, Karen; Couck, Sarah; Tack, Pieter; Depauw, Hannes; Liu, Ying-Ya; Vincze, Laszlo; Denayer, Joeri F. M.; Van Der Voort, Pascal (2016). "Enhanced gas sorption and breathing properties of the new sulfone functionalized COMOC-2 metal organic framework". Dalton Transactions. 45 (23): 9485–9491. doi:10.1039/C6DT01355D. ISSN 1477-9226. PMID 27192612.
  • Couck, Sarah; Liu, Ying-Ya; Leus, Karen; Baron, Gino V.; Van der Voort, Pascal; Denayer, Joeri F.M. (April 2015). "Gas phase adsorption of alkanes, alkenes and aromatics on the sulfone-DUT-5 Metal Organic Framework". Microporous and Mesoporous Materials. 206: 217–225. doi:10.1016/j.micromeso.2014.11.028.
  • Halis, Selda; Reimer, Nele; Klinkebiel, Arne; Lüning, Ulrich; Stock, Norbert (November 2015). "Four new Al-based microporous metal-organic framework compounds with MIL-53-type structure containing functionalized extended linker molecules". Microporous and Mesoporous Materials. 216: 13–19. doi:10.1016/j.micromeso.2015.01.030.
  • Gotthardt, Meike A.; Grosjean, Sylvain; Brunner, Tobias S.; Kotzel, Johannes; Gänzler, Andreas M.; Wolf, Silke; Bräse, Stefan; Kleist, Wolfgang (2015). "Synthesis and post-synthetic modification of amine-, alkyne-, azide- and nitro-functionalized metal–organic frameworks based on DUT-5". Dalton Transactions. 44 (38): 16802–16809. doi:10.1039/C5DT02276B. ISSN 1477-9226. PMID 26336838.
  • Tahmouresilerd, Babak; Moody, Michael; Agogo, Louis; Cozzolino, Anthony F. (2019). "The impact of an isoreticular expansion strategy on the performance of iodine catalysts supported in multivariate zirconium and aluminum metal–organic frameworks". Dalton Transactions. 48 (19): 6445–6454. doi:10.1039/C9DT00368A. ISSN 1477-9226. PMID 31017171. S2CID 129944197.

handle.net

hdl.handle.net

nih.gov

pubmed.ncbi.nlm.nih.gov

rsc.org

xlink.rsc.org

semanticscholar.org

api.semanticscholar.org

worldcat.org

search.worldcat.org