[1]
Aizhong Jia, Jie Li, Yinqing Zhang: Mat. Sci. and Eng.C.Vol.28(2008),p.1217.
Google Scholar
[2]
R.Zakaria A.R. Mohamed:Applied Catalysis A:General.Vol.274(2004),p.15.
Google Scholar
[3]
Masaru Ogura, Kazuya Inoue, Taiji Yamaguchi: Catalysis Today.Vol.168 (2011),p.118.
Google Scholar
[4]
Su Young Ryu,William Balcerski,T. K. Lee:J.Phys.Chem.C.Vol.111(2007),p.18195.
Google Scholar
[5]
Jihong Yu,Ruren Xu:Accounts of chem.res.Vol.43(2010)1195.
Google Scholar
[6]
Pedro Atienzar, Susana Valencia:Chem.Phys.Chem.Vol.8(2007), p.1115.
Google Scholar
[7]
Pe´rez-Ramı´rez, J,Christensen, C. H:Chem.Soc.Rev.Vol.37(2008), p.2530.
Google Scholar
[8]
Y.Li,J.Yu, R.Xu:Angew.Chem., Int. Ed.Vol.47(2008), p.4405.
Google Scholar
[9]
Yan, Y,Li, J,Qi, M:Sci. China, Ser. B:Chem.Vol.52(2009),p.1734.
Google Scholar
[10]
Y. Fang, H. Hu, J:Am.Chem. Soc.Vol.128 (2006),p.10636.
Google Scholar
[11]
M. Ogura:Catal.Surv.Asia.Vol.12 (2008),p.16.
Google Scholar
[12]
Fengxi Chen,He-Kuan Luo,Yi-Fan Han: Catalysis Today.Vol.131(2008),p.76.
Google Scholar
[13]
Y. He,N.A. Seaton:Langmuir.Vol.22(2006),p.1150.
Google Scholar
[14]
X.Liu,J.Li,L.Zhou:Chem.phys.Lett.Vol.415(2005),p.195.
Google Scholar
[15]
S.Inagaki,M.Ogura,T.Inami,et al:Micropor.Mesopor.Mater.Vol.74(2004),p.163.
Google Scholar
[16]
H.Xu:J.Colloid Inter.Sci.Vol.329(2009),p.346.
Google Scholar
[17]
Guangwei Ma ,Xuegui Ge, Shaoyun Huang:Industrial catalysis.Vol.11(2003),p.40.
Google Scholar
[18]
Claus J. H. Jacobsen, C Madsen, T V W Janssens,et al:J.Am.Chem.Soc.Vol.122(2000),p.7116.
Google Scholar
[19]
I Schmidt,C Madsen,Claus J. H. Jacobsen:Chem.Commun.Vol.39(2000),p.2279.
Google Scholar
[20]
Wanping Guo,Chunrong Xiong:J.Mater.Chem.Vol.11(2001),p.1886.
Google Scholar
[21]
Liping Liu, Guang Xiong, Xiangsheng Wang: Mic.meso.mater.Vol.123(2009),p.221.
Google Scholar
[22]
Fengxi Chen,He-Kuan Luo,Yi-Fan Han,et al. Catalysis Today.Vol.131 (2008),p.76.
Google Scholar
[23]
Y. Zhou, H.S. Jan, A. Markus:Nano Lett.Vol.4(2004),p.477.
Google Scholar
[24]
K. Zhu, P. Franc, D. Lawrence, et al:Micropor.Mesopor.Mater.Vol. 91(2006),p.40.
Google Scholar
[25]
R.P. Emily, E.M. Russell:J. Am. Chem. Soc.Vol.128 (2006),p.2204.
Google Scholar
[26]
H. Park, S.H. Yang, Y.S. Jun, et al:Chem. Mater.Vol.19(2007),p.535.
Google Scholar
[27]
J. Cao, B. Fang, J. Wang, et al:Prog. Chem.Vol.17(2005),p.1028.
Google Scholar
[28]
B.G. Trewyn, C.M. Whitman, V.S.Y. Lin:Nano Lett.Vol.4 (2004),p.2139.
Google Scholar
[29]
T. Brezesinski, C. Erpen, K. Iimura:Chem. Mater.Vol.17(2005),p.1683.
Google Scholar
[30]
T. Wang, H. Kaper, M. Antonietti:Langmuir.Vol.23(2007),p.1489.
Google Scholar
[31]
Tanaka S,Okada H,Nakatani N,etc:J.Colloid.Interface.Sci.Vol.333(2009),p.491.
Google Scholar
[32]
Limin Huang,Wanping Guo,Peng Deng,et al:J.Phys Chem B.Vol.104(2000),p.104.
Google Scholar
[33]
Yanhui Ma,Huiling Zhao: Acta Phys.Chim.Sin.Vol.27(2011),p.689.
Google Scholar
[34]
S. Inagaki, K. Kamino, M. Hoshino:Chem. Soc.Jpn.Vol. 77(2004),p.1249.
Google Scholar
[35]
Yanxia Li,Biaohua Chen:J Che.Ind.and Eng.Vol.55(2004),p.2015.
Google Scholar
[36]
S. Inagaki, K. Kamino, M. Hoshino, et al: Bull. Chem. Soc.Jpn.Vol.77 (2004),p.1249.
Google Scholar
[37]
Do Trong On,S.Kaliaguine:Angew Chem.Int.Ed.Vol.41(2002),p.1036.
Google Scholar
[38]
Do Trong On,S.Kaliaguine:J.Am.Chem.Soc.Vol.125(2003),p.618.
Google Scholar
[39]
Do Trong On,S.Kaliaguine:J.Am.Chem.Soc.Vol.126(2004),p.14324.
Google Scholar
[40]
Jianhong Li[Supervisor:Wenyuan Wu]. Microwave Radiation Hydrothermal Synthesis and Characterization of Y/SBA-15 Micro-mesoporous Composite Molecular Sieve[D].Northeastern University: School of Materials & Metallurgy,2008,p.38.
Google Scholar