[1] 陈强.苯酚羟基化制备苯二酚介孔分子筛催化剂的合成与改性[J].化工进展,2015,34(2):381-446. [2] CHENG C F,Lin Y C,CHENG H H,et al.The effect and model of silica concentrations on physical properties and particle sizes of three-dimensional SBA-16 nanoporous materials[J]. Chem.Phys.Lett.,2003,382(5/6):496-501. [3] 朱玉君,湛鑫琳,董永利,等.金属修饰SBA-16分子筛的合成及其催化性能研究进展[J].黑龙江大学自然科学学报,2011,28(4):513-520. [4] BORDIGA S,BUZZONI R,GEOBALDO F,et al. Structure and reactivity of framework and extraframework iron in Fe-silicalite as investigated by spectroscopic and physicochemical methods[J].J.Catal.,1996,158:486-489. [5] ZHAO D,HUO Q,FENG J,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.,1998,120:6024-6036. [6] LI Yongsheng,YONG Chen,LI Liang.A simple co-impregnation route to load highly dispersed Fe(Ⅲ)centers into the pore structure of SBA-15 and the extraordinarily high catalytic performance[J].Applied Catalysis A:General,2009,366:57-64. [7] WANG L M,FAN J,TIAN B Z,et al.Synthesis and characterization of small pore thick-walled SBA-16 templated by oligomeric surfactant with ultra-long hydrophilic chains[J]. Microporous Mesoporous Mater.,2004,67:l35-141. [8] SHYLESH S,SINGH A P.Heterogenized vanadyl cations over modified silica surfaces:a comprehensive understanding toward the structural property and catalytic activity difference over mesoporous and amorphous silica supports[J].J.Catal.,2006,244:52-64. [9] CORMA A.From microporous to mesoporous molecular sieve materials and their use in catalysis[J].Chem.Rev.,1997,97:2373-2419. [10] GUIDOTTI M,RAVASIO N,PSARO R,et al. Epoxidation on titanium-containing silicates:do structural features really affect the catalytic performance[J].J.Catal.,2003,214(2):242-250. [11] YU Y,Xiong G,LI C,et al.Characterization of iron atoms in the framework of MFI-type zeolites by UV resonance Raman spectroscopy[J].J.Catal.,2000,194:487-490. [12] TIMOFEEVA M N,MEL'GUNOV M S,KHOLDEEVA O A,et al.Full phenol peroxide oxidation over Fe-MMM-2 catalysts with enhanced hydrothermal stability[J]. Appl.Catal.B,2007,75:290-297. [13] PEREZ Ramirez J,GROEN J C,BRUCKNER A,et al.Evolution of isomorphously substituted iron zeolites during activation:comparison of Fe-beta and Fe-ZSM-5[J]. J. Catal.,2005,232:318-334. [14] PEREZ Ramirez J,KAPTEIJN F,BRUCKNER A.Active site structure sensitivity in N2O conversion over FeMFI zeolites[J].J.Catal.,2003,218:234-238. [15] CHOI J-S,YOON S S,JANG S H,et al.Phenol hydroxylation using Fe-MCM-41 cataysts[J].Catal.Today,2006,111:280-287. |