[1]
A.Y. Robin and K.M. Fromm: Coord. Chem. Rev Vol. 250(2006), p.2127.
Google Scholar
[2]
J.L.C. Rowsell and O.M. Yaghi: Microporous Mesoporous Mater Vol. 73(2004), p.3.
Google Scholar
[3]
E. Tynan,P. Jensen P.E. Kruger and A.C. Lees: Chem. Commun (2004), p.776.
Google Scholar
[4]
S.S. Han J.L. Mendoza-Cortés and W.A. Goddard: Chem. Soc. Rev Vol. 38(2009), p.460.
Google Scholar
[5]
L. Ma,C. Abney and W. Lin: Chem. Soc. Rev Vol. 38(2009), p.1248.
Google Scholar
[6]
B. Cen,Y. Yang,F. Zapata,G. Lin and G. Qian: Adv. Mater Vol. 19(2007), p.1693.
Google Scholar
[7]
A. Corma,H. Garcia and F. Xamena: Chem. Rev Vol. 110(2010), p.4606.
Google Scholar
[8]
Y. Li,J.P. Zou W.Q. Zou F.K. Zheng G.C. Guo C.Z. Lu and C.J. Huang: Inogr. Chem. Commun Vol. 10(2007), p.1026.
Google Scholar
[9]
Y.B. Go,X. Wang E.V. Anokhina and A.J. Jacobson: Inorg. Chem Vol. 44(2005), p.8265.
Google Scholar
[10]
X. Cheng,T. Liu,X. Duan,F. Wang,Q. Meng and C. Lu: CrystEngComm Vol. 13(2011), p.1314.
Google Scholar
[11]
G.L. Wen Y.Y. Wang W.H. Zhang,C. Ren R.T. Liu and Q.Z. Shi: CrystEngComm Vol. 12(2010), p.1238.
Google Scholar
[12]
D. Sun G.G. Luo,N. Zhang J.H. Chen R.B. Huang L.R. Lin and L.S. Zheng: Polyhedron Vol. 28 (2009), p.2983.
Google Scholar
[13]
M. Munakata L.P. Wu,T. Kuroda-Sowa,M. Maekawa,K. Moriwaki and S. Kitagawa: Inorg. Chem Vol. 36(1997), p.5416.
DOI: 10.1021/ic970427f
Google Scholar
[14]
A.N. Khlobystov, A.J. Blake, N.R. Champness, D.A. Lemenovskii, A.G. Majouga, N.V. Zyk and M. Schröder: Coord. Chem. Rev Vol. 222(2001), p.155.
DOI: 10.1016/s0010-8545(01)00370-8
Google Scholar
[15]
S.K. Mäkinen, N.J. Melcer, M. Parvez and G.K.H. Shimizu: Chem. Eur. J Vol. 23(2001), p.5176.
Google Scholar
[16]
X.Y. Huang,K. Fen. Yue J.C. Jin J.Q. Liu C.J. Wang Y.Y. Wang and Q.Z. Shi: Inorg. Chem. Commun Vol. 13(2010), p.338.
Google Scholar
[17]
H.Q. Hao W.T. Liu, W. Tan,Z. j. Lin and M.L. Tong: Cryst. Growth Des Vol. 9(2009), p.457.
Google Scholar
[18]
J.Q. Liu Y.S. Huang, Y.Y. Zhao and Z.B. Jia: Cryst. Growth Des Vol. 11(2011), p.569.
Google Scholar