-
1
-
-
23044451308
-
Strategies for hydrogen storage in metal-organic frameworks
-
DOI 10.1002/anie.200462786
-
Rowsell, J. L. C. & Yaghi, O. M. Strategies for hydrogen storage in metal-organic frameworks. Angew. Chem. Int. Ed. 44, 4670-4679 (2005). (Pubitemid 41065044)
-
(2005)
Angewandte Chemie - International Edition
, vol.44
, Issue.30
, pp. 4670-4679
-
-
Rowsell, J.L.C.1
Yaghi, O.M.2
-
2
-
-
53249142635
-
Hydrogen storage in microporous metal-organic frameworks with exposed metal sites
-
Dinca, M. & Long, J. R. Hydrogen storage in microporous metal-organic frameworks with exposed metal sites. Angew. Chem. Int. Ed. 47, 6766-6779 (2008).
-
(2008)
Angew. Chem. Int. Ed.
, vol.47
, pp. 6766-6779
-
-
Dinca, M.1
Long, J.R.2
-
3
-
-
22544466119
-
Highly controlled acetylene accommodation in a metal-organic microporous material
-
DOI 10.1038/nature03852
-
Matsuda, R. et al. Highly controlled acetylene accommodation in a metal- organic microporous material. Nature 436, 238-241 (2005). (Pubitemid 41021271)
-
(2005)
Nature
, vol.436
, Issue.7048
, pp. 238-241
-
-
Matsuda, R.1
Kitaura, R.2
Kitagawa, S.3
Kubota, Y.4
Belosludov, R.V.5
Kobayashi, T.C.6
Sakamoto, H.7
Chiba, T.8
Takata, M.9
Kawazoe, Y.10
Mita, Y.11
-
4
-
-
58249124562
-
A luminescent metal-organic framework with lewis basic pyridyl sites for the sensing of metal ions
-
Chen, B. et al. A luminescent metal-organic framework with Lewis basic pyridyl sites for the sensing of metal ions. Angew. Chem. Int. Ed. 48, 500-503 (2009).
-
(2009)
Angew. Chem. Int. Ed.
, vol.48
, pp. 500-503
-
-
Chen, B.1
-
5
-
-
55549097490
-
Stress-induced chemical detection using flexible metal- organic frameworks
-
Allendorf, M. D. et al. Stress-induced chemical detection using flexible metal- organic frameworks. J. Am. Chem. Soc. 130, 14404-14405 (2008).
-
(2008)
J. Am. Chem. Soc.
, vol.130
, pp. 14404-14405
-
-
Allendorf, M.D.1
-
6
-
-
70349784890
-
A luminescent microporous metal-organic framework for the fast and reversible detection of high explosives
-
Lan, A. J. et al. A luminescent microporous metal-organic framework for the fast and reversible detection of high explosives. Angew. Chem. Int. Ed. 48, 2334-2338 (2009).
-
(2009)
Angew. Chem. Int. Ed.
, vol.48
, pp. 2334-2338
-
-
Lan, A.J.1
-
7
-
-
34548153336
-
Metal-organic frameworks for asymmetric catalysis and chiral separations
-
Lin, W. Metal-organic frameworks for asymmetric catalysis and chiral separations. MRS Bull. 32, 544-548 (2007). (Pubitemid 47310222)
-
(2007)
MRS Bulletin
, vol.32
, Issue.7
, pp. 544-548
-
-
Lin, W.1
-
8
-
-
65349147078
-
Metal-organic framework materials as catalysts
-
Lee, J. et al. Metal-organic framework materials as catalysts. Chem. Soc. Rev. 38, 1450-1459 (2009).
-
(2009)
Chem. Soc. Rev.
, vol.38
, pp. 1450-1459
-
-
Lee, J.1
-
9
-
-
65349140088
-
Enantioselective catalysis with homochiral metal-organic frameworks
-
Ma, L., Abney, C. & Lin, W. Enantioselective catalysis with homochiral metal-organic frameworks. Chem. Soc. Rev. 38, 1248-1256 (2009).
-
(2009)
Chem. Soc. Rev.
, vol.38
, pp. 1248-1256
-
-
Ma, L.1
Abney, C.2
Lin, W.3
-
10
-
-
33746102900
-
Nanoscale metal-organic frameworks as potential multimodal contrast enhancing agents
-
DOI 10.1021/ja0627444
-
Rieter, W. J., Taylor, K. M. L., An, H. Y., Lin, W. L. & Lin, W. Nanoscale metal-organic frameworks as potential multimodal contrast enhancing agents. J. Am. Chem. Soc. 128, 9024-9025 (2006). (Pubitemid 44078972)
-
(2006)
Journal of the American Chemical Society
, vol.128
, Issue.28
, pp. 9024-9025
-
-
Rieter, W.J.1
Taylor, K.M.L.2
An, H.3
Lin, W.4
Lin, W.5
-
11
-
-
54749152747
-
Surfactant-assisted synthesis of nanoscale gadolinium metal-organic frameworks for potential multimodal imaging
-
Taylor, K. M. L., Jin, A. & Lin, W. Surfactant-assisted synthesis of nanoscale gadolinium metal-organic frameworks for potential multimodal imaging. Angew. Chem. Int. Ed. 47, 7722-7725 (2008).
-
(2008)
Angew. Chem. Int. Ed.
, vol.47
, pp. 7722-7725
-
-
Taylor, K.M.L.1
Jin, A.2
Lin, W.3
-
12
-
-
55549086881
-
Manganese-based nanoscale metal-organic frameworks for magnetic resonance imaging
-
Taylor, K. M. L., Rieter, W. J. & Lin, W. Manganese-based nanoscale metal-organic frameworks for magnetic resonance imaging. J. Am. Chem. Soc. 130, 14358-14359 (2008).
-
(2008)
J. Am. Chem. Soc.
, vol.130
, pp. 14358-14359
-
-
Taylor, K.M.L.1
Rieter, W.J.2
Lin, W.3
-
13
-
-
44349109487
-
Flexible porous metal-organic frameworks for a controlled drug delivery
-
DOI 10.1021/ja710973k
-
Horcajada, P. et al. Flexible porous metal-organic frameworks for a controlled drug delivery. J. Am. Chem. Soc. 130, 6774-6780 (2008). (Pubitemid 351748413)
-
(2008)
Journal of the American Chemical Society
, vol.130
, Issue.21
, pp. 6774-6780
-
-
Horcajada, P.1
Serre, C.2
Maurin, G.3
Ramsahye, N.A.4
Balas, F.5
Vallet-Regi, M.6
Sebban, M.7
Taulelle, F.8
Ferey, G.9
-
14
-
-
51349147939
-
Nanoscale coordination polymers for platinum-based anticancer drug delivery
-
Rieter, W. J., Pott, K. M., Taylor, K. M. L. & Lin, W. Nanoscale coordination polymers for platinum-based anticancer drug delivery. J. Am. Chem. Soc. 130, 11584-11585 (2008).
-
(2008)
J. Am. Chem. Soc.
, vol.130
, pp. 11584-11585
-
-
Rieter, W.J.1
Pott, K.M.2
Taylor, K.M.L.3
Lin, W.4
-
15
-
-
8344285762
-
Hysteretic adsorption and desorption of hydrogen by nanoporous metal-organic frameworks
-
Zhao, X. B. et al. Hysteretic adsorption and desorption of hydrogen by nanoporous metal-organic frameworks. Science 306, 1012-1015 (2004).
-
(2004)
Science
, vol.306
, pp. 1012-1015
-
-
Zhao, X.B.1
-
16
-
-
43949089483
-
2 adsorption on a mixed metal-organic framework material
-
DOI 10.1021/ja710144k
-
Chen, B. et al. Surface interactions and quantum kinetic molecular sieving for H-2 and D-2 adsorption on a mixed metal-organic framework material. J. Am. Chem. Soc. 130, 6411-6423 (2008). (Pubitemid 351706102)
-
(2008)
Journal of the American Chemical Society
, vol.130
, Issue.20
, pp. 6411-6423
-
-
Chen, B.1
Zhao, X.2
Putkham, A.3
Hong, K.4
Lobkovsky, E.B.5
Hurtado, E.J.6
Fletcher, A.J.7
Thomas, K.M.8
-
17
-
-
1142298818
-
A route to high surface area, porosity and inclusion of large molecules in crystals
-
Chae, H. K. et al. A route to high surface area, porosity and inclusion of large molecules in crystals. Nature 427, 523-527 (2004).
-
(2004)
Nature
, vol.427
, pp. 523-527
-
-
Chae, H.K.1
-
18
-
-
25444507730
-
A chromium terephthalate-based solid with unusually large pore volumes and surface area
-
Ferey, G. et al. A chromium terephthalate-based solid with unusually large pore volumes and surface area. Science 309, 2040-2042 (2005).
-
(2005)
Science
, vol.309
, pp. 2040-2042
-
-
Ferey, G.1
-
19
-
-
38349003061
-
A crystalline mesoporous coordination copolymer with high microporosity
-
Koh, K., Wong-Foy, A. G. & Matzger, A. J. A crystalline mesoporous coordination copolymer with high microporosity. Angew. Chem. Int. Ed. 47, 677-680 (2008).
-
(2008)
Angew. Chem. Int. Ed.
, vol.47
, pp. 677-680
-
-
Koh, K.1
Wong-Foy, A.G.2
Matzger, A.J.3
-
20
-
-
0001412882
-
A homochiral metal-organic porous material for enantioselective separation and catalysis
-
Seo, J. S. et al. A homochiral metal-organic porous material for enantioselective separation and catalysis. Nature 404, 982-986 (2000).
-
(2000)
Nature
, vol.404
, pp. 982-986
-
-
Seo, J.S.1
-
21
-
-
0035944454
-
Chiral porous solids based on lamellar lanthanide phosphonates [5]
-
DOI 10.1021/ja0163772
-
Evans, O. R., Ngo, H. L. & Lin, W. Chiral porous solids based on lamellar lanthanide phosphonates. J. Am. Chem. Soc. 123, 10395-10396 (2001). (Pubitemid 32982149)
-
(2001)
Journal of the American Chemical Society
, vol.123
, Issue.42
, pp. 10395-10396
-
-
Evans, O.R.1
Ngo, H.L.2
Lin, W.3
-
22
-
-
21244446924
-
A homochiral porous metal-organic framework for highly enantioselective heterogeneous asymmetric catalysis
-
DOI 10.1021/ja052431t
-
Wu, C.-D., Hu, A., Zhang, L. & Lin, W. Homochiral porous metal-organic framework for highly enantioselective heterogeneous asymmetric catalysis. J. Am. Chem. Soc. 127, 8940-8941 (2005). (Pubitemid 40897572)
-
(2005)
Journal of the American Chemical Society
, vol.127
, Issue.25
, pp. 8940-8941
-
-
Wu, C.-D.1
Hu, A.2
Zhang, L.3
Lin, W.4
-
23
-
-
33745193730
-
A metal-organic framework material that functions as an enantioselective catalyst for olefin epoxidation
-
DOI 10.1039/b600408c
-
Cho, S. H., Ma, B. Q., Nguyen, S. T., Hupp, J. T. & Albrecht-Schmitt, T. E. A metal-organic framework material that functions as an enantioselective catalyst for olefin epoxidation. Chem. Commun. 2563-2565 (2006). (Pubitemid 43909976)
-
(2006)
Chemical Communications
, Issue.24
, pp. 2563-2565
-
-
Cho, S.-H.1
Ma, B.2
Nguyen, S.T.3
Hupp, J.T.4
Albrecht-Schmitt, T.E.5
-
24
-
-
34250698001
-
Heterogeneous asymmetric catalysis with homochiral metal-organic frameworks: Network-structure-dependent catalytic activity
-
DOI 10.1002/anie.200602099
-
Wu, C.-D. & Lin, W. Heterogeneous asymmetric catalysis with homochiral metal-organic frameworks: network-structure-dependent catalytic activity. Angew. Chem. Int. Ed. 46, 1075-1078 (2007). (Pubitemid 46959352)
-
(2007)
Angewandte Chemie - International Edition
, vol.46
, Issue.7
, pp. 1075-1078
-
-
Wu, C.-D.1
Lin, W.2
-
25
-
-
67650523201
-
Postsynthetic modification switches an achiral framework to catalytically active homochiral metal-organic porous materials
-
Banerjee, M. et al. Postsynthetic modification switches an achiral framework to catalytically active homochiral metal-organic porous materials. J. Am. Chem. Soc. 131, 7524-7525 (2009).
-
(2009)
J. Am. Chem. Soc.
, vol.131
, pp. 7524-7525
-
-
Banerjee, M.1
-
26
-
-
33751202433
-
2 adsorption by coordination-framework materials
-
DOI 10.1002/anie.200601991
-
2 adsorption by coordination-framework materials. Angew. Chem. Int. Ed. 45, 7358-7364 (2006). (Pubitemid 44786957)
-
(2006)
Angewandte Chemie - International Edition
, vol.45
, Issue.44
, pp. 7358-7364
-
-
Lin, X.1
Jia, J.2
Zhao, X.3
Thomas, K.M.4
Blake, A.J.5
Walker, G.S.6
Champness, N.R.7
Hubberstey, P.8
Schroder, M.9
-
27
-
-
44349167193
-
3D metal-organic frameworks based on elongated tetracarboxylate building blocks for hydrogen storage
-
Ma, L., Lee, J. Y., Li, J. & Lin, W. 3D metal-organic frameworks based on elongated tetracarboxylate building blocks for hydrogen storage. Inorg. Chem. 47, 3955-3957 (2008).
-
(2008)
Inorg. Chem.
, vol.47
, pp. 3955-3957
-
-
Ma, L.1
Lee, J.Y.2
Li, J.3
Lin, W.4
-
28
-
-
64349083103
-
Three-dimensional metal-organic frameworks based on functionalized tetracarboxylate linkers: Synthesis, structures, and gas sorption
-
Wu, S., Ma, L., Long, L., Zheng, L. & Lin, W. Three-dimensional metal-organic frameworks based on functionalized tetracarboxylate linkers: synthesis, structures, and gas sorption. Inorg. Chem. 48, 2436-2442 (2009).
-
(2009)
Inorg. Chem.
, vol.48
, pp. 2436-2442
-
-
Wu, S.1
Ma, L.2
Long, L.3
Zheng, L.4
Lin, W.5
-
29
-
-
54249084031
-
Chirality-controlled and solvent-templated catenation isomerism in metal-organic frameworks
-
Ma, L. & Lin, W. Chirality-controlled and solvent-templated catenation isomerism in metal-organic frameworks. J. Am. Chem. Soc. 130, 13834-13835 (2008).
-
(2008)
J. Am. Chem. Soc.
, vol.130
, pp. 13834-13835
-
-
Ma, L.1
Lin, W.2
-
30
-
-
67749124300
-
High capacity hydrogen adsorption in Cu(II) tetracarboxylate framework materials: The role of pore size, ligand functionalization, and exposed metal sites
-
Lin, X. et al. High capacity hydrogen adsorption in Cu(II) tetracarboxylate framework materials: the role of pore size, ligand functionalization, and exposed metal sites. J. Am. Chem. Soc. 131, 2159-2171 (2009).
-
(2009)
J. Am. Chem. Soc.
, vol.131
, pp. 2159-2171
-
-
Lin, X.1
-
31
-
-
0001792356
-
Single-crystal structure validation with the program PLATON
-
Spek, A. L. Single-crystal structure validation with the program PLATON. J. Appl. Crystallogr. 36, 7-13 (2003).
-
(2003)
J. Appl. Crystallogr.
, vol.36
, pp. 7-13
-
-
Spek, A.L.1
-
32
-
-
0033568015
-
Variable pore size, variable chemical functionality, and an example of reactivity within porous phenylacetylene silver salts
-
Kiang, Y. H., Gardner, G. B., Lee, S., Xu, Z. T. & Lobkovsky, E. B. Variable pore size, variable chemical functionality, and an example of reactivity within porous phenylacetylene silver salts. J. Am. Chem. Soc. 121, 8204-8215 (1999). (Pubitemid 129550920)
-
(1999)
Journal of the American Chemical Society
, vol.121
, Issue.36
, pp. 8204-8215
-
-
Kiang, Y.-H.1
Gardner, G.B.2
Lee, S.3
Xu, Z.4
Lobkovsky, E.B.5
-
33
-
-
35348982278
-
Postsynthetic covalent modification of a neutral metal-organic framework
-
Wang, Z. Q. & Cohen, S. M. Postsynthetic covalent modification of a neutral metal-organic framework. J. Am. Chem. Soc. 129, 12368-12369 (2007).
-
(2007)
J. Am. Chem. Soc.
, vol.129
, pp. 12368-12369
-
-
Wang, Z.Q.1
Cohen, S.M.2
-
34
-
-
65349143171
-
Postsynthetic modification of metal-organic frameworks
-
Wang, Z. Q. & Cohen, S. M. Postsynthetic modification of metal-organic frameworks. Chem. Soc. Rev. 38, 1315-1329 (2009).
-
(2009)
Chem. Soc. Rev.
, vol.38
, pp. 1315-1329
-
-
Wang, Z.Q.1
Cohen, S.M.2
-
35
-
-
0037127013
-
Systematic design of pore size and functionality in isoreticular MOFs and their application in methane storage
-
DOI 10.1126/science.1067208
-
Eddaoudi, M. et al. Systematic design of pore size and functionality in isoreticular MOFs and their application in methane storage. Science 295, 469-472 (2002). (Pubitemid 34101630)
-
(2002)
Science
, vol.295
, Issue.5554
, pp. 469-472
-
-
Eddaoudi, M.1
Kim, J.2
Rosi, N.3
Vodak, D.4
Wachter, J.5
O'Keeffe, M.6
Yaghi, O.M.7
-
36
-
-
0036073574
-
Crystal engineering of NLO materials based on metal-organic coordination networks
-
Evans, O. R. & Lin, W. Crystal engineering of NLO materials based on metal-organic coordination networks. Acc. Chem. Res. 35, 511-522 (2002).
-
(2002)
Acc. Chem. Res.
, vol.35
, pp. 511-522
-
-
Evans, O.R.1
Lin, W.2
-
37
-
-
0038128307
-
Reticular synthesis and the design of new materials
-
Yaghi, O. M. et al. Reticular synthesis and the design of new materials. Nature 423, 705-714 (2003).
-
(2003)
Nature
, vol.423
, pp. 705-714
-
-
Yaghi, O.M.1
-
39
-
-
57149103316
-
An example of node-based postassembly elaboration of a hydrogen-sorbing, metal-organic framework material
-
Farha, O. K., Mulfort, K. L. & Hupp, J. T. An example of node-based postassembly elaboration of a hydrogen-sorbing, metal-organic framework material. Inorg. Chem. 47, 10223-10225 (2008).
-
(2008)
Inorg. Chem.
, vol.47
, pp. 10223-10225
-
-
Farha, O.K.1
Mulfort, K.L.2
Hupp, J.T.3
-
40
-
-
72449140084
-
Freeze drying significantly increases permanent porosity and hydrogen uptake in 4,4-connected metal-organic frameworks
-
Ma, L., Xie, Z., Jin, A. & Lin, W. Freeze drying significantly increases permanent porosity and hydrogen uptake in 4,4-connected metal-organic frameworks. Angew. Chem. Int. Ed. 48, 9905-9908 (2009).
-
(2009)
Angew. Chem. Int. Ed.
, vol.48
, pp. 9905-9908
-
-
Ma, L.1
Xie, Z.2
Jin, A.3
Lin, W.4
-
41
-
-
34447502239
-
Applicability of the BET method for determining surface areas of microporous metal-organic frameworks
-
Walton, K. S. & Snurr, R. Q. Applicability of the BET method for determining surface areas of microporous metal-organic frameworks. J. Am. Chem. Soc. 129, 8552-8556 (2007).
-
(2007)
J. Am. Chem. Soc.
, vol.129
, pp. 8552-8556
-
-
Walton, K.S.1
Snurr, R.Q.2
-
42
-
-
34147217224
-
Role of solvent-host interactions that lead to very large swelling of hybrid frameworks
-
DOI 10.1126/science.1137975
-
Serre, C. et al. Role of solvent-host interactions that lead to very large swelling of hybrid frameworks. Science 315, 1828-1831 (2007). (Pubitemid 46580138)
-
(2007)
Science
, vol.315
, Issue.5820
, pp. 1828-1831
-
-
Serre, C.1
Mellot-Draznieks, C.2
Surble, S.3
Audebrand, N.4
Filinchuk, Y.5
Ferey, G.6
-
43
-
-
52449110278
-
Prediction of the conditions for breathing of metal organic framework materials using a combination of X-ray powder diffraction, microcalorimetry, and molecular simulation
-
Llewellyn, P. L. et al. Prediction of the conditions for breathing of metal organic framework materials using a combination of X-ray powder diffraction, microcalorimetry, and molecular simulation. J. Am. Chem. Soc. 130, 12808-12814 (2008).
-
(2008)
J. Am. Chem. Soc.
, vol.130
, pp. 12808-12814
-
-
Llewellyn, P.L.1
-
44
-
-
67749137433
-
Supercritical processing as a route to high internal surface areas and permanent microporosity in metal- organic framework materials
-
Nelson, A. P., Farha, O. K., Mulfort, K. L. & Hupp, J. T. Supercritical processing as a route to high internal surface areas and permanent microporosity in metal- organic framework materials. J. Am. Chem. Soc. 131, 458-460 (2009).
-
(2009)
J. Am. Chem. Soc.
, vol.131
, pp. 458-460
-
-
Nelson, A.P.1
Farha, O.K.2
Mulfort, K.L.3
Hupp, J.T.4
-
45
-
-
0035263817
-
Catalytic asymmetric organozinc additions to carbonyl compounds
-
DOI 10.1021/cr000411y
-
Pu, L. & Yu, H. B. Catalytic asymmetric organozinc additions to carbonyl compounds. Chem. Rev. 101, 757-824 (2001). (Pubitemid 35377682)
-
(2001)
Chemical Reviews
, vol.101
, Issue.3
, pp. 757-824
-
-
Pu, L.1
Yu, H.-B.2
|