Revisiting the Aluminum Trimesate-Based MOF (MIL-96): From Structure Determination to the Processing of Mixed Matrix Membranes for CO2 Capture

被引:93
作者
Benzaqui, Marvin [1 ,2 ]
Pillai, Renjith S. [3 ]
Sabetghadam, Anahid [4 ]
Benoit, Virginie [5 ]
Normand, Perine [6 ]
Marrot, Jerome [1 ]
Menguy, Nicolas [7 ]
Montero, David [8 ]
Shepard, William [9 ]
Tissot, Antoine [2 ]
Martineau-Corcos, Charlotte [1 ,10 ]
Sicard, Clemence [1 ]
Mihaylov, Mihail [11 ]
Carn, Florent [12 ]
Beurroies, Isabelle [5 ]
Llewellyn, Philip L. [5 ]
De Weireld, Guy [6 ]
Hadjiivanov, Konstantin [11 ]
Gascon, Jorge [4 ,13 ]
Kapteijn, Freek [4 ]
Maurin, Guillaume [3 ]
Steunou, Nathalie [1 ]
Serre, Christian [1 ,2 ]
机构
[1] Univ Paris Saclay, Univ Versailles St Quentin En Yvelines, Inst Lavoisier Versailles, UMR CNRS 8180, 45 Ave Etats Unis, F-78035 Versailles, France
[2] PSL Res Univ, Inst Mat Poreux Paris, Ecole Super Phys & Chim Ind Paris, FRE CNRS 2000,Ecole Normale Super, F-75005 Paris, France
[3] Univ Montpellier, Inst Charles Gerhardt Montpellier, UMR CNRS 5253, Pl E Bataillon, F-34095 Montpellier 05, France
[4] Delft Univ Technol, Catalysis Engn Chem Engn Dept, Van der Maasweg 9, NL-2629 HZ Delft, Netherlands
[5] Aix Marseille Univ, CNRS, MADIREL, UMR 7246, F-13397 Marseille, France
[6] Univ Mons, Fac Polytech, Serv Thermodynam & Phys Math, 20 Pl Parc, B-7000 Mons, Belgium
[7] Sorbonne Univ, UPMC Univ Paris 06, Inst Mineral Phys Mat & Cosmochim, UMR CNRS 7590,MNHN IRD, 4 Pl Jussieu, F-75005 Paris, France
[8] Sorbonne Univ, IMPC, FR CNRS 2482, UPMC Univ Paris 06, 4 Pl Jussieu, F-75252 Paris 05, France
[9] Synchrotron Soleil, BP 48, F-91192 Gif Sur Yvette, France
[10] Univ Orleans, CNRS, CEMHTI UPR3079, F-F45071 Orleans, France
[11] Bulgarian Acad Sci, Inst Gen & Inorgan Chem, BU-1113 Sofia, Bulgaria
[12] Univ Paris Diderot, Lab Matiere & Syst Complexes MSC, UMR CNRS 7057, Batiment Condorcet,10 Rue Domon & L Duquet, F-75013 Paris, France
[13] King Abdullah Univ Sci & Technol, KAUST Catalysis Ctr, Adv Catalyt Mat, Thuwal 23955, Saudi Arabia
关键词
METAL-ORGANIC FRAMEWORKS; CARBON-DIOXIDE; CONTROLLABLE SYNTHESIS; SEPARATION; ADSORPTION; GAS; WATER; EXPLORATION; TRANSPORT; ZEOLITES;
D O I
10.1021/acs.chemmater.7b03203
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A microporous Al trimesate-based metal-organic framework (MOF), denoted MIL-96-(Al), was selected as a porous hybrid filler for the processing of mixed matrix membranes (MMMs) for CO2/N-2 postcombustion separation. First, the structural model of MIL-96-(Al) initially reported was revisited using a combination of synchrotron-based single-crystal X-ray diffraction, solid-state nuclear magnetic resonance spectroscopy, and density functional theory (DFT) calculations. In a second step, pure MIL-96-(Al) crystals differing by their size and aspect ratio, including anisotropic hexagonal platelets and nanoparticles of about 70 nm in diameter, were prepared. Then, a combination of in situ IR spectroscopy, single-gas, and CO2/N-2 coadsorption experiments, calorimetry, and molecular simulations revealed that MIL-96-(Al) nanoparticles show a relatively high CO2 affinity over N-2 owing to strong interactions between CO2 molecules and several adsorption sites such as Al3+ Lewis centers, coordinated water, and hydroxyl groups. Finally, the high compatibility between MIL-96-(Al) nanoparticles and the 6FDA-DAM polymer allowed the processing of homogeneous and defect-free MMMs with a high MOF loading (up to 25 wt %) that outperform pure polymer membranes for CO2/N-2 separation.
引用
收藏
页码:10326 / 10338
页数:13
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