Ye Y.,Ahn C C.,Witham C.,et al. Hydrogen adsorption and cohesive energy of single-walled carbon nanotubes [J]. Applied Physics Letter,1999,74:2307-2309.
M.A.de la Casa-Lillo, F.Lamari-Darkrim, et al. Hydrogen Storage in Activated Carbons and Activated Carbon Fibers [J]. J.Phys .Chem.B 2002,106,10930-10934.
24
Langmi H.W., Walton A., Al-Mamouri M.M., Jhonson S.R., et al., Hydrogen adsorption in zeolites A,X,Y and RHO [J]. J.Alloys Compd,2003,356-357:710-715.
25
Weitkamp J., Fritz M., Ernst S., Zeolites as media for hydrogen storage [J]. International Journal of Hydrogen Energy, 1995, 20(12):967-970.
A. Züttela,Ch.Nützenadel,P. Sudan,et al.Hydrogen sorption by carbon nanotubes and other carbon nanostructures [J]. Journal of Alloys and Compounds,2002,330–332:676–682.
Yury G,Ranjan K D,Gleb Y,et al.Tailoring of nanoscale porosity in carbide-derived carbons for hydrogen storage[J]. American Chemical Society,2005,127(46):16006-16007.
40
Dapeng C,Pingyun F,Jianzhoug W.Molecular smulation of novel carbonaceous materials for hydrogen storage[J].American Chemical Society,2004,4(8):1489-1492.
Kaisheng Xia, Qiuming Gao, Chundong Wu, et al. Activation, characterization and hydrogen storage properties of the mesoporous carbon CMK-3 [J]. Carbon,2007, 45(10):1989-1996.
43
"Roger Gadiou, Seif-Eddine Saadallah, Thierry Piquero, et al,The influence of textural properties on the adsorption of hydrogen on ordered nanostructured carbons [J]. Microporous and Mesoporous Materials,2005, 79(1-3):121-128."
44
"Zhuxian Yang, Yongde Xia, and Robert Mokaya. Enhanced Hydrogen Storage Capacity of High Surface Area Zeolite-like Carbon Materials [J]. J. Am. Chem. Soc., 2007, 129(6):1673–1679."
45
Zhuxian Yang, Yongde Xia, Xuezhong Sun,et al. Preparation and Hydrogen Storage Properties of Zeolite-Templated Carbon Materials Nanocast via Chemical Vapor Deposition: Effect of the Zeolite Template and Nitrogen Doping [J]. J. Phys. Chem. B, 2006, 110 (37):8424–18431.
Jinxiang Donga, Xiaoyan Wanga, Hong Xua,et al. Hydrogen storage in several microporous zeolites [J]. International Journal of Hydrogen Energy,2007, 32(18):4998-5004.
50
Treacy MMJ, Higgins JB. Collection of simulated XRD powder patterns for zeolites [J]. Amsterdam: Elsevier, 2007,18.
51
Sung Hwa Jhung, Ji Woong Yoon, Hye-Kyung Kim, and Jong-San Chang. Low Temperature Adsorption of Hydrogen on Nanoporous Materials [J]. Bull. Korean Chem. Soc. 2005, 26(7):1075-1078.
52
"Adriano Zecchina, Silvia Bordiga, Jenny G. Vitillo, et al. Liquid Hydrogen in Protonic Chabazite [J]. J. Am. Chem. Soc., 2005, 127 (17):6361–6366."
53
"Laura Regli, Adriano Zecchina, Jenny G. Vitillo, Donato Cocina, et al. Hydrogen storage in Chabazite zeolite frameworks [J]. Phys. Chem. Chem. Phys., 2005, 7, 3197-3203."
54
Li Y W,Yang R T.Hydrogen Storage in Low Silica Type X Zeolites, J.Phys.Chem.B,2006,110,17175-17181.
55
J.L.C.Rowsell and O.M.Yaghi,Effects of Functionalization,Catenation,and Variation of the Metal Oxide and Organic Linking Units on the Low-Pressure Hydrogen Adsorption Properties of Metal-Organic Frameworks [J]. J.Am.Chem.Soc.,2006,128,1304-1315.
56
A.Dailly,J.J.Vajo and C.C.Ahn,Saturation of Hydrogen Sorption in Zn Benzenedicarboxylate and Zn Naphthalenedicarboxylate [J]. J.Phys.Chem.B, 2006,110,1099-1101.
57
J.L.C.Rowsell,A.R.Millward,K.S.Park and O.M.Yaghi,Hydrogen Sorption in Functionalized Metal-Organic Frameworks [J]. J.Am.Chem.Soc.,2004,126,5666-5667.
58
"Bei Liu, Qingyuan Yang, Chunyu Xue, et al. J. Phys. Chem. C, 2008, 112 (26):9854–9860."
59
"Houston Frost and Randall Q. Snurr. Design Requirements for Metal-Organic Frameworks as Hydrogen Storage Materials [J]. J. Phys. Chem. C, 2007, 111 (50):18794-18803."
60
B.Panella, M.Hirscher,H.Pütter and U.Müller,Hydrogen Adsorption in Metal-Organic Frameworks:Cu-MOFs and Zn-MOFs Compared [J]. Adv.Funct.Mater.,2006,16,520.
61
A.G.Wong-Foy, A.J.Matzger and O.M.Yaghi. Exceptional H2 Saturation Uptake in Microporous Metal-Organic Frameworks [J]. J.Am.Chem.Soc.2006,128(11):3494-3495.
62
"Nathaniel L. Rosi, Jaheon Kim, Mohamed Eddaoudi, et al. Rod Packings and Metal-Organic Frameworks Constructed from Rod-Shaped Secondary Building Units [J]. J. Am. Chem. Soc., 2005, 127 (5):1504–1518."
63
"Yun Liu, Houria Kabbour, Craig M. Brown, Dan A. Neumann, and Channing C. Ahn. Langmuir, 2008, 24 (9):4772–4777."
64
X.Lin, J.H.Jia,X.B.Zhao,K.M.Thomas,A.J.Blake,et al. High H2 Adsorption by Coordination-Framework Materials [J]. Angew. Chem.,Int.Ed.,2006,45,7358.
65
Mulfort K L,Hupp J T.Alkali, Metal Cation Effects on Hydrogen Uptake and Binding in Metal-Organic Frameworks [J]. Inorganic Chemistry,2008,47:7936-7938.
66
B.L.Chen, X.B.Zhao, A.Putkham, K.Hong,et al. Surface Interactions and Quantum Kinetic Molecular Sieving for H2 and D2 Adsorption on a Mixed Metal-Organic Framework Material [J]. J.Am.Chem.Soc.,2008,130,6411-6423.
67
"Danil N. Dybtsev, Hyungphil Chun, Sun Hong Yoon, et al. J. Am. Chem. Soc., 2004, 126 (1):32–33."
68
Guillou, N.; Gao, Q.; Forster, P. M.; Chang, J. S.; Nogues, M.; Park, S.E.; Ferey, G.; Cheetham, A. K. Nickel(II) Phosphate VSB-5: A Magnetic Nanoporous Hydrogenation Catalyst with 24-Ring Tunnels [J]. Angew. Chem., Int. Ed. 2001, 40(15): 2831-2834.
69
Foster P M, Echert J,Park S,et al. Hydrogen Adsorption in Nanoporous Nickel(II) Phosphates [J]. J.Am.Chem.Soc., 2003, 125: 1309-1312.
70
Thierry Loiseau, Christian Serre, Clarisse Huguenard, et al. A Rationale for the Large Breathing of the Porous Aluminum Terephthalate (MIL-53) Upon Hydration [J]. Chem. Eur. J.,2004, 10, 1373-1382.
71
"Gérard Férey, Michel Latroche, Christian Serre, et al. Hydrogen adsorption in the nanoporous metal-benzenedicarboxylate M(OH)(O2C–C6H4–CO2)(M = Al3+, Cr3+), MIL-53 [J]. Chem. Commun., 2003,2976-2977."
72
T.Loiseau,L.Lecroq,C.Volkringer,J.Marrot,et al. MIL-96,a Porous Aluminum Trimesate 3D Structure Constructed from a Hexagonal Network of 18-Membered Rings and μ3-Oxo-Centered Trinuclear Units [J]. J.Am.Chem.Soc.,2006,128,10223-10230.
73
M.Latroche, S.Surblé, C.Serre, C.Mellot-Draznieks, P.L.Liewellyn,et al. ,Hydrogen Storage in the Giant-Pore Metal-Organic Frameworks MIL-100 and MIL-101 [J]. Angew.Chem.,Int.Ed.,2006,45(48),8227-8231.
74
"O. I. Lebedev, F. Millange, C. Serre, et al. First Direct Imaging of Giant Pores of the Metal?Organic Framework MIL-101 [J]. Chem. Mater., 2005, 17 (26):6525–6527."
75
S.Surblé, F.Millange, C.Serre, T.Düren, et al. Synthesis of MIL-102, a Chromium Carboxylate Metal-Organic Framework, with Gas Sorption Analysia [J]. J.Am.Chem.Soc.,2006,128,14889-14896.
76
S.Q.Ma,X.S.Wang,E.S.Manis,C.D.Collier and H.C.Zhou. Metal-Organic Framework Based on a Trinickel Secondary Building Unit Exhibiting Gas-Sorption Hysteresis [J]. Inorg.Chem.,2007,46(9):3432-3434.
77
S.Q.Ma,D.F.Sun,M.Ambrogio,J.A.Fillinger,S.Parkin and H.C.Zhou. Framework-Catenation Isomerism in Metal-Organic Frameworks and Its Impact on Hydrogen Uptake [J]. J.Am.Chem.Soc.,2007,129(7):1858-1859.
78
S.O.Ma and H.C.Zhou, A Metal-Organic Framework with Entatic Metal Centers Exhibiting High Gas Adsorption Affinity [J]. J.Am.Chem.Soc.,2006,128,11734-11735
79
X.S.Wang, S.Q.Ma, K.Rauch, et al. Metal-Organic Frameworks Based on Double-Bond-Coupled Di-Isophthalate Linkers with High Hydrogen and Methane Uptakes [J]. Chem.Mater.,2008,20,3145-3152.
80
S.Q.Ma, X.S.Wang, C.D.Collier, E.S.Manis and H.C.Zhou, Ultramicroporous Metal-Organic Framework Based on 9,10-Anthracenedicarboxylate for selective Gas Adsorption [J]. Inorg.Chem.,2007,46,8499-8501.
81
Xi-Sen Wang, Shengqian Ma, Daqiang Yuan, et al [J]. Inorg. Chem. 2009, 48(16):7519–7521.
D.F.Sava, V.C.Kravtsov, F.Nouar, L.Wojtas, et al. Quest for Zeolite-like Metal-Organic Frameworks:On Pyrimidinecarboxylate Bis-Chelating Bridging Ligands [J]. J.Am.Chem.Soc.,2008,130,3768-3770.
85
"Farid Nouar, Juergen Eckert, Jarrod F. Eubank, et al. Zeolite-like Metal?Organic Frameworks (ZMOFs) as Hydrogen Storage Platform: Lithium and Magnesium Ion-Exchange and H2-(rho-ZMOF) Interaction Studies [J]. J. Am. Chem. Soc., 2009, 131 (8):2864–2870."
86
A.G.Wong-Foy,O.Lebel and A.J.Matzger, Porous Crystal Derived from a Tricarboxylate Linker with Two Distinct Binding Motifs [J]. J.Am.Chem.Soc.,2007,129,15740-15741.
87
J.A.Rood, B.C.Noll and K.W.Henderson,Synthesis,Structural Characterization,Gas Sorption and Guest-Exchange Studies of the Lightweight,Porous Metal-Organic Framework α-[Mg3(O2CH)6] [J]. Inorg.Chem.,2006,45,5521-5528.
88
M.Dinc? and J.R.Long, Strong H2 Binding and Selective Gas Adsorption within the Microporous Coordination Solid Mg3(O2C-C10H6-CO2)3 [J]. J.Am.Chem.Soc.,2005,127,9376-9377.
89
M.Dinc?,A.Dailly,C.Tsay and J.R.Long, Expanded Sodalite-Type Metal-Organic Frameworks:Increased Stability and H2 Adsorption through Ligand-Directed Catenation [J]. Inorg.Chem.,2008,47(1):11-13.
90
P.M.Forster, J.Eckert, B.D.Heiken, et al,Adsorption of Molecular Hydrogen on Coordinatively Unsaturated Ni(П) Sites in a Nanoporous Hybrid Material [J]. J.Am.Chem.Soc.,2006,128(51):16846-16850.
91
J.T.Culp,S.Natesakhawat,M.R.Smith,et al,Hydrogen Storage Properties of Rigid Three-Dimensional Hofmann Clathrate Derivatives:The Effects of Pore Size [J]. J.Phys.Chem.C.,2008,112(17):7079-7083.
92
B.L.Chen, S.Q.Ma, F.Zapata,et al, Hydrogen Adsorption in an Interpenetrated Dynamic Metal-Organic Framework [J]. Inorg, Chem.,2006,45(15):5718-5720
93
H.Chun and J.Moon,Discovery,Synthesis,and Characterization of an Isomeric Coordination Polymer with Pillared Kagome Net Topology [J]. Inorg.Chem.,2007,46(11):4371-4373.
94
X.Lin,A.J.Blake,C.Wilson,X.Z.Sun, et al,A porous Framework Polymer Based on a Zinc(П)4,4'-Bipyridine-2,6,2',6'-tetracarboxylate:Synthesis,Structure,and "Zeolite-Like" Behaviors [J]. J.Am.Chem.Soc.,2006,128(33):10745-10753.
95
J.Y.Lee,D.H.Olson,L.Pan,T.J.Emge and J.Li, Microporous Metal-Organic Frameworks with High Gas Sorption and Separation Capacity [J]. Adv.Funct.Mater.,2007,17,1255-1262.
96
J.C.Liu, J.Y.Lee,L.Pan,R.T.Obermyer,S.Simizu,B.Zande,J.Li,S.G.Sankar and J.K.Johnson,Adsorption and Diffusion of Hydrogen in a New Metal-Organic Framework Material:[Zn(bdc)(ted)0.5] [J]. J.Phy.Chem.C.,2008,112(8),2911-2917.
97
J.Y.Lee, L.Pan, S.P.Kelly, J.Jagiello, T.J.Emge and J.Li. Achieving High Density of Adsorbed Hydrogen in Microporous Metal Organic Frameworks [J]. Advanced Materials, 2005,17(22):2703-2706.
98
"O.K.Farha,A.M.Spokoyny,K.L.Mulfort,M.F.Hawthorne,C.A.Mirkin and J.T.Hupp,Synthesis and Hydrogen Sorption Properties of Carborane Based Metal?Organic Framework Materials [J]. J.Am.Chem.Soc.,2007,129 (42):12680–12681."
99
"Steven S. Kaye and Jeffrey R. Long, Hydrogen Storage in the Dehydrated Prussian Blue Analogues M3[Co(CN)6]2 (M = Mn, Fe, Co, Ni, Cu, Zn) [J]. J. Am. Chem. Soc., 2005, 127 (18):6506–6507."
100
M.Dinc? and J.R.Long,High-Enthalpy Hydrogen Adsorption in Cation-Exchanged Variants of the Microporous Metal-Organic Framework Mn3[(Mn4Cl)3(BTT)8(CH3OH)10]2 [J]. J.Am.Chem.Soc.,2007,129(36):11172-11176.
Wang Y, Cheng P, Yan S P. A Heterometallic Porous Material for Hydrogen Adsorption [J]. Inorg Chem, 2007,46,4530-4534.
103
Pan L, Sander M B, Huang X Y, et al.Microporous Metal Organic Materials: Promising Candidates as Sorbents for Hydrogen Storage [J]. Journal of American Chemistry Society,2004,126,1308-1309.
104
H.Chun,H.Jung,G.Koo,H.Jeong ,et al. Efficient Hydrogen Sorption in 8-Connected MOFs Based on Trinuclear Pinwheel Motifs [J]. Inorg.Chem.,2008,47,5355-5358.
105
Dinca M, Dailly A, Liu Y, et al. Hydrogen Storage in a Microporous Metal-Organic Framework with Exposed Mn2+ Coordination Sites [J]. Journal of the American Chemistry Society, 2006,128:16876-16883.
106
"Qian-Rong Fang Dr.,Guang-Shan Zhu Prof., Zhao Jin, et al. Mesoporous Metal–Organic Framework with Rare etb Topology for Hydrogen Storage and Dye Assembly [J]. Angewandte Chemie,2007,119(35):6758-6762. "
107
Xue M, Zhu G S, Li Y Y,et al. Structure,Hydrogen Storage, and Luminescence Properties of Three 3D Metal-Organic Frameworks with NbO and PtS Topologies [J]. Crystal Growth & Design,2008,8:2478-2483.
108
C.Yang,X.P.Wang and M.A.Omary,Fluorous Metal-Organic Frameworks for High-Density Gas Adsorption [J]. J.Am.Chem.Soc., 2007,129,15454-15455.
109
Kabbour H,Baumann T F,Satcher J H,Jr.,Saulnier A,Channing C A.Toward New Candidates for Hydrogen Storage:High-Surface-Area Carbon Aerogela [J]. Chem Mater,2006,18(26):6085-6087.
Chae H K,Siberio Perez D Y, Kim J. A route to high surface area, porosity and inclusion of large molecules in crystals [J].Nature, 2004,427:523-527.
115
"Anupama Ghosh, K. S. Subrahmanyam, Katla Sai Krishna, Sudipta Datta, A. Govindaraj, Swapan K. Pati, C. N. R. Rao.Uptake of H2 and CO2 by Graphene [J]. J. Phys. Chem. C, 2008, 112 (40):15704–15707."