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Chemical Science|June 5, 2018
Mechanical energy storage performance of an aluminum fumarate metal-organic frameworkPascal G Yot, Louis Vanduyfhuys, Elsa Alvarez, et al.Inorganic Chemistry|February 1, 2005
An open-framework rare-earth acetylenedicarboxylate: MIL-95, Eu(III)2(H2O)2(CO3)2.{O2C-C2-CO2}.{H2O}xChristian Serre, Jérôme Marrot, Gérard FéreyChemical Communications (Cambridge, England)|December 4, 2003
Rational design of porous titanophosphatesChristian Serre, Francis Taulelle, Gérard FereyAdvanced Healthcare Materials|October 10, 2024
Iron-MOFs for Biomedical ApplicationsZhihao Yu, Mathilde Lepoitevin, Christian SerreInorganic Chemistry|May 11, 2004
Unexpected reactivity of PdCl(2) and PtCl(2) complexes of the unsaturated diphosphine o-Me(2)TTF(PPh(2))(2) toward chloride abstraction with thallium triflateThomas Devic, Patrick Batail, Marc Fourmigué, et al.Journal of the American Chemical Society|September 29, 2011
How linker's modification controls swelling properties of highly flexible iron(III) dicarboxylates MIL-88Patricia Horcajada, Fabrice Salles, Stefan Wuttke, et al.Journal of the American Chemical Society|November 13, 2009
Co-adsorption and separation of CO2-CH4 mixtures in the highly flexible MIL-53(Cr) MOFLomig Hamon, Philip L Llewellyn, Thomas Devic, et al.Chemical Communications (Cambridge, England)|May 21, 2013
A rare example of a porous Ca-MOF for the controlled release of biologically active NOStuart R Miller, Elsa Alvarez, Lucie Fradcourt, et al.Chemsuschem|February 5, 2017
Synthesis Optimization, Shaping, and Heat Reallocation Evaluation of the Hydrophilic Metal-Organic Framework MIL-160(Al)Anastasia Permyakova, Oleksandr Skrylnyk, Emilie Courbon, et al.Chemical Communications (Cambridge, England)|February 28, 2015
A biocompatible porous Mg-gallate metal-organic framework as an antioxidant carrierLucy Cooper, Tania Hidalgo, Martin Gorman, et al.Pageof 24