MIL-53 (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "MIL-53" in German language version.

refsWebsite
Global rank German rank
2nd place
3rd place
4th place
7th place
2,020th place
3,598th place

doi.org (Global: 2nd place; German: 3rd place)

  • T. Loiseau, C. Serre, C. Huguenard, G. Fink, F. Taulelle, M. Henry, T. Bataille, G. Férey: A Rationale for the Large Breathing of the Porous Aluminum Terephthalate (MIL-53) Upon Hydration. In: Chem. Eur. J. 2004, 10, S. 1373–1382, doi:10.1002/chem.200305413.
  • Sebastian Leubner, Robert Stäglich, Julia Franke, Jannick Jacobsen, Jonas Gosch, Renée Siegel, Helge Reinsch, Guillaume Maurin, Jürgen Senker, Pascal G. Yot, Norbert Stock: Solvent Impact on the Properties of Benchmark Metal–Organic Frameworks: Acetonitrile‐Based Synthesis of CAU‐10, Ce‐UiO‐66, and Al‐MIL‐53. In: Chemistry – A European Journal. Band 26, Nr. 17, 23. März 2020, S. 3877–3883, doi:10.1002/chem.201905376, PMID 31991507, PMC 7154691 (freier Volltext).
  • Thomas Devic, Patricia Horcajada, Christian Serre, Fabrice Salles, Guillaume Maurin, Béatrice Moulin, Daniela Heurtaux, Guillaume Clet, Alexandre Vimont, Jean-Marc Grenèche, Benjamin Le Ouay, Florian Moreau, Emmanuel Magnier, Yaroslav Filinchuk, Jerôme Marrot, Jean-Claude Lavalley, Marco Daturi, Gérard Férey: Functionalization in Flexible Porous Solids: Effects on the Pore Opening and the Host−Guest Interactions. In: Journal of the American Chemical Society. Band 132, Nr. 3, 27. Januar 2010, S. 1127–1136, doi:10.1021/ja9092715.
  • Yun Liu, Jae-Hyuk Her, Anne Dailly, Anibal J. Ramirez-Cuesta, Dan A. Neumann, Craig M. Brown: Reversible Structural Transition in MIL-53 with Large Temperature Hysteresis. In: J. Am. Chem. Soc. 2008, 130, S. 11813–11818, doi:10.1021/ja803669w.
  • C. Serre, F. Millange, C. Thouvenot, M. Noguès, G. Marsolier, D. Louër, and G. Férey: Very Large Breathing Effect in the First Nanoporous Chromium(III)-Based Solids: MIL-53 or CrIII(OH)·{O2C-C6H4-CO2}·{HO2C-C6H4-CO2H}x·H2Oy. In: J. Am. Chem. Soc. 2002, 124, 45, S. 13519–13526, doi:10.1021/ja0276974.
  • Anne Boutin, Marie-Anne Springuel-Huet, Andrei Nossov, Antoine Gédéon, Thierry Loiseau, Christophe Volkringer, Gérard Férey, François-Xavier Coudert, Alain H. Fuchs: Breathing Transitions in MIL-53(Al) Metal-Organic Framework Upon Xenon Adsorption. In: Angewandte Chemie. 2009, 121, S. 8464–8467, doi:10.1002/ange.200903153.
  • Franck Millange, Richard I. Walton: MIL-53 and its Isoreticular Analogues: a Review of the Chemistry and Structure of a Prototypical Flexible Metal-Organic Framework. In: Israel Journal of Chemistry. Band 58, Nr. 9–10, Oktober 2018, S. 1019–1035, doi:10.1002/ijch.201800084.
  • Karin Barthelet, Jérôme Marrot, Didier Riou, Gérard Férey: A Breathing Hybrid Organic–Inorganic Solid with Very Large Pores and High Magnetic Characteristics. In: Angewandte Chemie International Edition. Band 41, Nr. 2, 2002, S. 281–284, doi:10.1002/1521-3773(20020118)41:23.0.CO;2-Y.
  • Hervé Leclerc, Thomas Devic, Sabine Devautour-Vinot, Philippe Bazin, Nathalie Audebrand: Influence of the Oxidation State of the Metal Center on the Flexibility and Adsorption Properties of a Porous Metal Organic Framework: MIL-47(V). In: The Journal of Physical Chemistry C. Band 115, Nr. 40, 13. Oktober 2011, S. 19828–19840, doi:10.1021/jp206655y.
  • Franck Millange, Christian Serre, Gérard Férey: Synthesis, structure determination and properties of MIL-53as and MIL-53ht: the first Criii hybrid inorganic–organic microporous solids: Criii(OH)·{O2C–C6H4–CO2}·{HO2C–C6H4–CO2H}xElectronic supplementary information (ESI) available: crystal data, atomic coordinates and metrical parameters for MIL-53as and MIL-53ht. See http://www.rsc.org/suppdata/cc/b2/b201381a/. In: Chemical Communications. Nr. 8, 11. April 2002, S. 822–823, doi:10.1039/b201381a.
  • Tabatha R. Whitfield, Xiqu Wang, Lumei Liu, Allan J. Jacobson: Metal-organic frameworks based on iron oxide octahedral chains connected by benzenedicarboxylate dianions. In: Solid State Sciences. Band 7, Nr. 9, September 2005, S. 1096–1103, doi:10.1016/j.solidstatesciences.2005.03.007.
  • Ekaterina V. Anokhina, Marie Vougo-Zanda, Xiqu Wang, Allan J. Jacobson: In(OH)BDC·0.75BDCH 2 (BDC = Benzenedicarboxylate), a Hybrid Inorganic−Organic Vernier Structure. In: Journal of the American Chemical Society. Band 127, Nr. 43, November 2005, S. 15000–15001, doi:10.1021/ja055757a.
  • Nathaniel L. Rosi, Jaheon Kim, Mohamed Eddaoudi, Banglin Chen, Michael O'Keeffe: Rod Packings and Metal−Organic Frameworks Constructed from Rod-Shaped Secondary Building Units. In: Journal of the American Chemical Society. Band 127, Nr. 5, Februar 2005, S. 1504–1518, doi:10.1021/ja045123o.
  • Alexis S. Munn, Guy J. Clarkson, Franck Millange, Yves Dumont, Richard I. Walton: M(ii) (M = Mn, Co, Ni) variants of the MIL-53-type structure with pyridine-N-oxide as a co-ligand. In: CrystEngComm. Band 15, Nr. 45, 2013, S. 9679, doi:10.1039/c3ce41268g.
  • Marie Vougo-Zanda, Jin Huang, Ekaterina Anokhina, Xiqu Wang, Allan J. Jacobson: Tossing and Turning: Guests in the Flexible Frameworks of Metal(III) Dicarboxylates. In: Inorganic Chemistry. Band 47, Nr. 24, 15. Dezember 2008, S. 11535–11542, doi:10.1021/ic800008f.
  • Guohai Xu, Xiaoguang Zhang, Peng Guo, Chengling Pan, Hongjie Zhang: Mn II -based MIL-53 Analogues: Synthesis Using Neutral Bridging μ 2 -Ligands and Application in Liquid-Phase Adsorption and Separation of C6−C8 Aromatics. In: Journal of the American Chemical Society. Band 132, Nr. 11, 24. März 2010, S. 3656–3657, doi:10.1021/ja910818a.
  • John P.S. Mowat, Stuart R. Miller, Alexandra M.Z. Slawin, Valerie R. Seymour, Sharon E. Ashbrook: Synthesis, characterisation and adsorption properties of microporous scandium carboxylates with rigid and flexible frameworks. In: Microporous and Mesoporous Materials. Band 142, Nr. 1, Juni 2011, S. 322–333, doi:10.1016/j.micromeso.2010.12.016.
  • Karen Leus, Sarah Couck, Matthias Vandichel, Gauthier Vanhaelewyn, Ying-Ya Liu: Synthesis, characterization and sorption properties of NH2-MIL-47. In: Physical Chemistry Chemical Physics. Band 14, Nr. 44, 2012, S. 15562, doi:10.1039/c2cp42137b.
  • Tim Ahnfeldt, Daniel Gunzelmann, Thierry Loiseau, Dunja Hirsemann, Jürgen Senker: Synthesis and Modification of a Functionalized 3D Open-Framework Structure with MIL-53 Topology. In: Inorganic Chemistry. Band 48, Nr. 7, 6. April 2009, S. 3057–3064, doi:10.1021/ic8023265.
  • Tim Ahnfeldt, Nathalie Guillou, Daniel Gunzelmann, Irene Margiolaki, Thierry Loiseau: [Al4(OH)2(OCH3)4(H2N-bdc)3]⋅ x H2O: A 12-Connected Porous Metal-Organic Framework with an Unprecedented Aluminum-Containing Brick. In: Angewandte Chemie International Edition. Band 48, Nr. 28, 29. Juni 2009, S. 5163–5166, doi:10.1002/anie.200901409.
  • Sebastian Bauer, Christian Serre, Thomas Devic, Patricia Horcajada, Jérôme Marrot: High-Throughput Assisted Rationalization of the Formation of Metal Organic Frameworks in the Iron(III) Aminoterephthalate Solvothermal System. In: Inorganic Chemistry. Band 47, Nr. 17, September 2008, S. 7568–7576, doi:10.1021/ic800538r.
  • Pablo Serra-Crespo, Elena Gobechiya, Enrique V. Ramos-Fernandez, Jana Juan-Alcañiz, Alberto Martinez-Joaristi: Interplay of Metal Node and Amine Functionality in NH 2 -MIL-53: Modulating Breathing Behavior through Intra-framework Interactions. In: Langmuir. Band 28, Nr. 35, 4. September 2012, S. 12916–12922, doi:10.1021/la302824j.
  • Shyam Biswas, Tom Rémy, Sarah Couck, Dmytro Denysenko, Geert Rampelberg: Partially fluorinated MIL-47 and Al-MIL-53 frameworks: influence of functionalization on sorption and breathing properties. In: Physical Chemistry Chemical Physics. Band 15, Nr. 10, 2013, S. 3552, doi:10.1039/c3cp44204g.
  • Shyam Biswas, Tom Rémy, Sarah Couck, Dmytro Denysenko, Geert Rampelberg: Partially fluorinated MIL-47 and Al-MIL-53 frameworks: influence of functionalization on sorption and breathing properties. In: Physical Chemistry Chemical Physics. Band 15, Nr. 10, 2013, S. 3552, doi:10.1039/c3cp44204g.
  • Shyam Biswas, Danny E. P. Vanpoucke, Toon Verstraelen, Matthias Vandichel, Sarah Couck: New Functionalized Metal–Organic Frameworks MIL-47-X (X = −Cl, −Br, −CH3, −CF3, −OH, −OCH3): Synthesis, Characterization, and CO 2 Adsorption Properties. In: The Journal of Physical Chemistry C. Band 117, Nr. 44, 7. November 2013, S. 22784–22796, doi:10.1021/jp406835n.
  • Pascal G. Yot, Ke Yang, Vincent Guillerm, Florence Ragon, Vladimir Dmitriev: Impact of the Metal Centre and Functionalization on the Mechanical Behaviour of MIL-53 Metal-Organic Frameworks: Impact of the Metal Centre and Functionalization on the Mechanical Behaviour of MIL-53 Metal-Organic Frameworks. In: European Journal of Inorganic Chemistry. Band 2016, Nr. 27, September 2016, S. 4424–4429, doi:10.1002/ejic.201600263.
  • Shyam Biswas, Tim Ahnfeldt, Norbert Stock: New Functionalized Flexible Al-MIL-53-X (X = -Cl, -Br, -CH3, -NO2, -(OH)2) Solids: Syntheses, Characterization, Sorption, and Breathing Behavior. In: Inorganic Chemistry. Band 50, Nr. 19, 3. Oktober 2011, S. 9518–9526, doi:10.1021/ic201219g.
  • Thomas Devic, Patricia Horcajada, Christian Serre, Fabrice Salles, Guillaume Maurin: Functionalization in Flexible Porous Solids: Effects on the Pore Opening and the Host−Guest Interactions. In: Journal of the American Chemical Society. Band 132, Nr. 3, 27. Januar 2010, S. 1127–1136, doi:10.1021/ja9092715.
  • Shyam Biswas, Danny E. P. Vanpoucke, Toon Verstraelen, Matthias Vandichel, Sarah Couck: New Functionalized Metal–Organic Frameworks MIL-47-X (X = −Cl, −Br, −CH3, −CF3, −OH, −OCH3): Synthesis, Characterization, and CO 2 Adsorption Properties. In: The Journal of Physical Chemistry C. Band 117, Nr. 44, 7. November 2013, S. 22784–22796, doi:10.1021/jp406835n.
  • Shyam Biswas, Tim Ahnfeldt, Norbert Stock: New Functionalized Flexible Al-MIL-53-X (X = -Cl, -Br, -CH3, -NO2, -(OH)2) Solids: Syntheses, Characterization, Sorption, and Breathing Behavior. In: Inorganic Chemistry. Band 50, Nr. 19, 3. Oktober 2011, S. 9518–9526, doi:10.1021/ic201219g.
  • Thomas Devic, Patricia Horcajada, Christian Serre, Fabrice Salles, Guillaume Maurin: Functionalization in Flexible Porous Solids: Effects on the Pore Opening and the Host−Guest Interactions. In: Journal of the American Chemical Society. Band 132, Nr. 3, 27. Januar 2010, S. 1127–1136, doi:10.1021/ja9092715.
  • Lei Wu, Gérald Chaplais, Ming Xue, Shilun Qiu, Joël Patarin: New functionalized MIL-53(In) solids: syntheses, characterization, sorption, and structural flexibility. In: RSC Advances. Band 9, Nr. 4, 2019, S. 1918–1928, doi:10.1039/C8RA08522F.
  • Babak Tahmouresilerd, Patrick J. Larson, Daniel K. Unruh, Anthony F. Cozzolino: Make room for iodine: systematic pore tuning of multivariate metal–organic frameworks for the catalytic oxidation of hydroquinones using hypervalent iodine. In: Catalysis Science & Technology. Band 8, Nr. 17, 2018, S. 4349–4357, doi:10.1039/C8CY00794B.
  • Nele Reimer, Barbara Gil, Bartosz Marszalek, Norbert Stock: Thermal post-synthetic modification of Al-MIL-53–COOH: systematic investigation of the decarboxylation and condensation reaction. In: CrystEngComm. Band 14, Nr. 12, 2012, S. 4119, doi:10.1039/c2ce06649a.
  • Shyam Biswas, Danny E. P. Vanpoucke, Toon Verstraelen, Matthias Vandichel, Sarah Couck: New Functionalized Metal–Organic Frameworks MIL-47-X (X = −Cl, −Br, −CH3, −CF3, −OH, −OCH3): Synthesis, Characterization, and CO 2 Adsorption Properties. In: The Journal of Physical Chemistry C. Band 117, Nr. 44, 7. November 2013, S. 22784–22796, doi:10.1021/jp406835n.
  • Dieter Himsl, Dirk Wallacher, Martin Hartmann: Improving the Hydrogen-Adsorption Properties of a Hydroxy-Modified MIL-53(Al) Structural Analogue by Lithium Doping. In: Angewandte Chemie International Edition. Band 48, Nr. 25, 8. Juni 2009, S. 4639–4642, doi:10.1002/anie.200806203.
  • Jinzhu Chen, Kegui Li, Limin Chen, Ruliang Liu, Xing Huang: Conversion of fructose into 5-hydroxymethylfurfural catalyzed by recyclable sulfonic acid-functionalized metal–organic frameworks. In: Green Chem. Band 16, Nr. 5, 2014, S. 2490–2499, doi:10.1039/C3GC42414F.
  • Christophe Volkringer, Seth M. Cohen: Generating Reactive MILs: Isocyanate- and Isothiocyanate-Bearing MILs through Postsynthetic Modification. In: Angewandte Chemie International Edition. Band 49, Nr. 27, 21. Juni 2010, S. 4644–4648, doi:10.1002/anie.201001527.
  • Andrea Centrone, Takuya Harada, Scott Speakman, T. Alan Hatton: Facile Synthesis of Vanadium Metal-Organic Frameworks and their Magnetic Properties. In: Small. Band 6, Nr. 15, 7. Juli 2010, S. 1598–1602, doi:10.1002/smll.201000773.
  • Andrea Centrone, Takuya Harada, Scott Speakman, T. Alan Hatton: Facile Synthesis of Vanadium Metal-Organic Frameworks and their Magnetic Properties. In: Small. Band 6, Nr. 15, 7. Juli 2010, S. 1598–1602, doi:10.1002/smll.201000773.
  • Alexis S. Munn, Franck Millange, Michel Frigoli, Nathalie Guillou, Clément Falaise: Iodine sequestration by thiol-modified MIL-53(Al). In: CrystEngComm. Band 18, Nr. 41, 2016, S. 8108–8114, doi:10.1039/C6CE01842D.
  • Shyam Biswas, Sarah Couck, Dmytro Denysenko, Asamanjoy Bhunia, Maciej Grzywa: Sorption and breathing properties of difluorinated MIL-47 and Al-MIL-53 frameworks. In: Microporous and Mesoporous Materials. Band 181, November 2013, S. 175–181, doi:10.1016/j.micromeso.2013.07.030.
  • Shyam Biswas, Sarah Couck, Dmytro Denysenko, Asamanjoy Bhunia, Maciej Grzywa: Sorption and breathing properties of difluorinated MIL-47 and Al-MIL-53 frameworks. In: Microporous and Mesoporous Materials. Band 181, November 2013, S. 175–181, doi:10.1016/j.micromeso.2013.07.030.
  • Claudia Zlotea, Delphine Phanon, Matjaz Mazaj, Daniela Heurtaux, Vincent Guillerm: Effect of NH2 and CF3 functionalization on the hydrogen sorption properties of MOFs. In: Dalton Transactions. Band 40, Nr. 18, 2011, S. 4879, doi:10.1039/c1dt10115c.
  • Karen Markey, Martin Krüger, Tomasz Seidler, Helge Reinsch, Thierry Verbiest: Emergence of Nonlinear Optical Activity by Incorporation of a Linker Carrying the p -Nitroaniline Motif in MIL-53 Frameworks. In: The Journal of Physical Chemistry C. Band 121, Nr. 45, 16. November 2017, S. 25509–25519, doi:10.1021/acs.jpcc.7b09190, PMID 29170688, PMC 5694968 (freier Volltext).
  • Christophe Volkringer, Thierry Loiseau, Nathalie Guillou, Gérard Férey, Mohamed Haouas: High-Throughput Aided Synthesis of the Porous Metal−Organic Framework-Type Aluminum Pyromellitate, MIL-121, with Extra Carboxylic Acid Functionalization. In: Inorganic Chemistry. Band 49, Nr. 21, November 2010, S. 9852–9862, doi:10.1021/ic101128w.
  • Morgane Sanselme, Jean-Marc Grenèche, Myriam Riou-Cavellec, Gérard Férey: The first ferric carboxylate with a three-dimensional hydrid open-framework (MIL-82): its synthesis, structure, magnetic behavior and study of its dehydration by Mössbauer spectroscopy. In: Solid State Sciences. Band 6, Nr. 8, August 2004, S. 853–858, doi:10.1016/j.solidstatesciences.2004.04.001.
  • Christian Serre, Franck Millange, Thomas Devic, Nathalie Audebrand, Wouter Van Beek: Synthesis and structure determination of new open-framework chromium carboxylate MIL-105 or CrIII(OH)·{O2C–C6(CH3)4–CO2}·nH2O. In: Materials Research Bulletin. Band 41, Nr. 8, August 2006, S. 1550–1557, doi:10.1016/j.materresbull.2006.01.013.
  • Andrea Centrone, Takuya Harada, Scott Speakman, T. Alan Hatton: Facile Synthesis of Vanadium Metal-Organic Frameworks and their Magnetic Properties. In: Small. Band 6, Nr. 15, 7. Juli 2010, S. 1598–1602, doi:10.1002/smll.201000773.
  • Angiolina Comotti, Silvia Bracco, Piero Sozzani, Satoshi Horike, Ryotaro Matsuda: Nanochannels of Two Distinct Cross-Sections in a Porous Al-Based Coordination Polymer. In: Journal of the American Chemical Society. Band 130, Nr. 41, 15. Oktober 2008, S. 13664–13672, doi:10.1021/ja802589u.

nih.gov (Global: 4th place; German: 7th place)

ncbi.nlm.nih.gov

  • Sebastian Leubner, Robert Stäglich, Julia Franke, Jannick Jacobsen, Jonas Gosch, Renée Siegel, Helge Reinsch, Guillaume Maurin, Jürgen Senker, Pascal G. Yot, Norbert Stock: Solvent Impact on the Properties of Benchmark Metal–Organic Frameworks: Acetonitrile‐Based Synthesis of CAU‐10, Ce‐UiO‐66, and Al‐MIL‐53. In: Chemistry – A European Journal. Band 26, Nr. 17, 23. März 2020, S. 3877–3883, doi:10.1002/chem.201905376, PMID 31991507, PMC 7154691 (freier Volltext).
  • Karen Markey, Martin Krüger, Tomasz Seidler, Helge Reinsch, Thierry Verbiest: Emergence of Nonlinear Optical Activity by Incorporation of a Linker Carrying the p -Nitroaniline Motif in MIL-53 Frameworks. In: The Journal of Physical Chemistry C. Band 121, Nr. 45, 16. November 2017, S. 25509–25519, doi:10.1021/acs.jpcc.7b09190, PMID 29170688, PMC 5694968 (freier Volltext).

rsc.org (Global: 2,020th place; German: 3,598th place)

  • Franck Millange, Christian Serre, Gérard Férey: Synthesis, structure determination and properties of MIL-53as and MIL-53ht: the first Criii hybrid inorganic–organic microporous solids: Criii(OH)·{O2C–C6H4–CO2}·{HO2C–C6H4–CO2H}xElectronic supplementary information (ESI) available: crystal data, atomic coordinates and metrical parameters for MIL-53as and MIL-53ht. See http://www.rsc.org/suppdata/cc/b2/b201381a/. In: Chemical Communications. Nr. 8, 11. April 2002, S. 822–823, doi:10.1039/b201381a.