[1] CAMBLOR M A,CORMA A,P’EREZ-PARIENTE J.Infrared Spectroscopic Investigation of Titanium in Zeolites.A New Assignment of the 960 cm-1 Band[J].Journal of the Chemical Society,Chemical Communications,1993(6):557-559.
[2] SUDHAKAR REDDY J,SIVASANKER S,RATNASAMY P.Hydroxylation of Phenol over TS-2,a Titanium Silicate Molecular Sieve[J].Journal of Molecular Catalysis,1992,71(3):373-381.
[3] BLASCO T,CAMBLOR M A,COMA A,et al.The State of Ti in Titanoaluminosilicates Isomorphous with Zeolite β[J].J. Am. Chem. Soc.,1993,115:11 806-11 813.
[4] CORMA A,NAVARRO M T,PREZ PARIENTE J.Synthesis of an Ultralarge Pore Titanium Silicate Isomorphous to MCM-41 and Its Application as a Catalyst for Selective Oxidation of Hydrocarbons[J].Journal of the Chemical Society,Chemical Communications,1994(2):147-148.
[5] BLASCO T,CORMA A,NAVARRO M T,et al.Synthesis,Characterization,and Catalytic Activity of Ti-MCM-41 Structures[J].Journal of Catalysis,1995,156(1):65-74.
[6] ZHANG W H,FRBA M,WANG J L,et al.Mesoporous Titanosilicate Molecular Sieves Prepared at Ambient Temperature by Electrostatic (S+I-,S+X-I+) and Neutral (S0I0) Assembly Pathways:A Comparison of Physical Properties and Catalytic Activity for Peroxide Oxidations[J].Journal of the American Chemical Society,1996,118(38):9 164-9 171.
[7] CHEN Yangying,HUANG Yanlei,XIU Jinghai,et al.Direct Synthesis,Characterization and Catalytic Activity of Titanium-Substituted SBA-15 Mesoporous Molecular Sieves[J].Applied Catalysis A:General,2004,273:185-191.
[8] PENG R,ZHAO D,DIMITRIJEVIC N M,et al.Room Temperature Synthesis of Ti-MCM-48 and Ti-MCM-41 Mesoporous Materials and Their Performance on Photocatalytic Splitting of Water[J].Journal of Physical Chemistry C,2012,116(1):1 605-1 613.
[9] TANEV P T,CHIBWE M,PINNAVAIA T J.Titanium-Containing Mesoporous Molecular Sieves for Catalytic Oxidation of Aromatic Compounds[J].Nature,1994,368:321-323.
[10] FREDDY KLEITZ,SHIN HEI CHOI,RYONG RYOO.Cubic Ia3d Large Mesoporous Silica:Synthesis and Replication to Platinum Nanowires,Carbon Nanorods and Carbon Nanotubes[J].Chemical Communications,2003(17):2 136-2 137.
[11] TAE-WAN Kim,FREDDY KLEITZ,BLAIN PAUL,et al.MCM-48-Like Large Mesoporous Silicas with Tailored Pore Structure:Facile Synthesis Domain in a Ternary Triblock Copolymer-Butanol-Water System[J].Journal of the American Chemical Society,2005,127(20):7 601-7 610.
[12] HUSSAIN MURID,AKNTER PARVEEN,RUSSO NUNZIO,et al.Novel Ti-KIT-6 Material for the Photocatalytic Reduction of Carbon Dioxide to Methane[J].Catalysis Communications,2013,36:58-62.
[13] HUSSAIN MURID,AKHTER PARVEEN,RUSSO NUNZIO,et al.New Optimized Mesoporous Silica Incorporated Isolated Ti Materials Towards Improved Photocatalytic Reduction of Carbon Dioxide to Renewable Fuels[J].Chemical Engineering Journal,2015,278:279-292.
[14] KUMARESAN L,PRABHU A,PALANICHAMY M,et al.Mesoporous Ti-KIT-6 Molecular Sieves:Their Catalytic Activity in the Epoxidation of Cyclohexene[J].Journal of Taiwan Institute of Chemical Engineers,2010,41:670-675.
[15] BRINKER C J.Hydrolysis and Condensation of Silicates:Effect on Structure[J].Journal of Non-Crystalline Solids,1988,100(1/2/3):31-50.
[16] YU Jiaguo,SU Yaorong,BEI Cheng,et al.Effects of pH on the Microstructures and Photocatalytic Activity of Mesoporous Nanocrystalline Titania Powders Prepared via Hydrothermal Method[J].Journal of Molecular Catalysis A Chemical,2006,258(1):104-112.
[17] ZHAO Dongyuan,HUO Qisheng,FENG Jianglin,et al.Nonionic Triblock and Star Diblock Copolymer and Oligomeric Surfactant Syntheses of Highly Ordered,Hydrothermally Stable,Mesoporous Silica Structures[J].J. Am. Chem. Soc.,1998,120(24):6 024-6 036.
[18] MICHAL KRUK,MIETEK JARONIEC.Gas Adsorption Characterization of Ordered Organic-Inorganic Nanocomposite Materials[J].Chemistry of Materials,2001,13(10):3 169-3 183.
[19] JERMY BALASAMY RABINDRAN,KIM SANG-YUN,BINEESH KANATTUKARA VIJAYAN,et al.Direct Incorporation of Vanadium into Three-Dimensional KIT-6:1. Optimization of Synthesis Conditions[J].Korean Journal of Chemical Engineering,2009,26(5):1 235-1 240.
[20] WU Peng,TATSUMI TAKASHI.Postsynthesis,Characterization,and Catalytic Properties in Alkene Epoxidation of Hydrothermally Stable Mesoporous Ti-SBA-15[J].Chemistry Materials,2002,14(4):1 657-1 664.
[21] SHAH P,RAMASWAMY A V,LAZAR K,et al.Direct Hydrothermal Synthesis of Mesoporous Sn-SBA-15 Materials Under Weak Acidic Conditions[J].Microporous and Mesoporous Materials,2007,100(1/2/3):210-226.
[22] WU Shuo,HAN Yu,ZOU Yongcun,et al.Synthesis of Heteroatom Substituted SBA-15 by the “pH-Adjusting” Method[J].Chemistry of Materials,2004,16(3):486-492.
[23] LETTOW J S,HAN Y J,SCHMIDT-WINKEL P,et al.Hexagonal to Mesocellular Foam Phase Transition in Polymer-Templated Mesoporous Silicas[J].Langmuir,2000,16:8 291-8 295. |