Controlled synthesis of hierarchical beta zeolite through design template to enhance gas-phase beckmann rearrangement performance

[1]  Hongxia Xi,et al.  In Situ Assembly of Nanoparticles into Hierarchical Beta Zeolite with Tailored Simple Organic Molecule. , 2017, Langmuir : the ACS journal of surfaces and colloids.

[2]  Wei Zhang,et al.  Directly synthesized V-containing BEA zeolite: Acid-oxidation bifunctional catalyst enhancing C-alkylation selectivity in liquid-phase methylation of phenol , 2017 .

[3]  Hongxia Xi,et al.  Tailoring Hierarchical Zeolites with Designed Cationic Surfactants and Their High Catalytic Performance. , 2017, Chemistry, an Asian journal.

[4]  Jianfeng Yao,et al.  Effects of crystal size and pore structure on catalytic performance of TS-1 in the isomerization of styrene oxide to phenyl acetaldehyde , 2017 .

[5]  Anmin Zheng,et al.  External or internal surface of H-ZSM-5 zeolite, which is more effective for the Beckmann rearrangement reaction? , 2017 .

[6]  Joseph D. Smith,et al.  Hydrogenolysis of glycerol over Ni, Cu, Zn, and Zr supported on H-beta , 2017 .

[7]  Hongxia Xi,et al.  Synthesis and catalytic performance of hierarchically structured beta zeolites by a dual-functional templating approach , 2017 .

[8]  Jianfeng Yao,et al.  Isomerization of Styrene Oxide to Phenyl Acetaldehyde over Different Modified Beta Zeolites , 2017, Catalysis Letters.

[9]  C. Catlow,et al.  Understanding the Role of Molecular Diffusion and Catalytic Selectivity in Liquid-Phase Beckmann Rearrangement , 2017 .

[10]  J. Čejka,et al.  Effect of hierarchical porosity in Beta zeolites on the Beckmann rearrangement of oximes , 2017 .

[11]  Jianguo Wang,et al.  Kinetic study of vapor-phase Beckmann rearrangement of cyclohexanone oxime over silicalite-1 , 2016 .

[12]  B. Weckhuysen,et al.  Spectroscopic study on the active site of a SiO2 supported niobia catalyst used for the gas-phase Beckmann rearrangement of cyclohexanone oxime to ε-caprolactam. , 2016, Physical chemistry chemical physics : PCCP.

[13]  Ke Zhang,et al.  Optimization of Hierarchical Structures for Beta Zeolites by Post-Synthetic Base Leaching , 2016 .

[14]  Ke Zhang,et al.  Innovations in hierarchical zeolite synthesis , 2016 .

[15]  S. Bare,et al.  Expanding Beyond the Micropore: Active-Site Engineering in Hierarchical Architectures for Beckmann Rearrangement , 2015 .

[16]  K. D. de Jong,et al.  Tailoring and visualizing the pore architecture of hierarchical zeolites. , 2015, Chemical Society reviews.

[17]  Chun-nuan Ji,et al.  Improved synthesis of silica-gel-based dendrimer-like highly branched polymer as the Au(III) adsorbents , 2015 .

[18]  Zhongmin Liu,et al.  In situ growth and assembly of microporous aluminophosphate nanosheets into ordered architectures at low temperature and their enhanced catalytic performance , 2015 .

[19]  Hongxia Xi,et al.  Investigation of structure formation mechanism of a mesoporous ZSM-5 zeolite by mesoscopic simulation , 2015 .

[20]  S. Casuscelli,et al.  Nature of the active sites in Al-MCM-41 nano-structured catalysts for the selective rearrangement of cyclohexanone oxime toward ɛ-caprolactam , 2014 .

[21]  J. Hofmann,et al.  Synthesis of hierarchical zeolites using an inexpensive mono-quaternary ammonium surfactant as mesoporogen. , 2014, Chemical communications.

[22]  Liang Wang,et al.  Highly mesoporous single-crystalline zeolite beta synthesized using a nonsurfactant cationic polymer as a dual-function template. , 2014, Journal of the American Chemical Society.

[23]  Jie Zhu,et al.  Enhanced performance in catalytic combustion of toluene over mesoporous Beta zeolite-supported platinum catalyst , 2013 .

[24]  Sungjune Lee,et al.  Microporous aluminophosphate nanosheets and their nanomorphic zeolite analogues tailored by hierarchical structure-directing amines. , 2013, Journal of the American Chemical Society.

[25]  D. Serrano,et al.  Synthesis strategies in the search for hierarchical zeolites. , 2013, Chemical Society reviews.

[26]  Kyungsu Na,et al.  Recent advances in the synthesis of hierarchically nanoporous zeolites , 2013 .

[27]  Hongxia Xi,et al.  Direct synthesis of mesoporous ZSM-5 zeolite by a dual-functional surfactant approach , 2012 .

[28]  R. Ryoo,et al.  Zeolite nanosheet of a single-pore thickness generated by a zeolite-structure-directing surfactant , 2012 .

[29]  A. Inayat,et al.  Assemblies of mesoporous FAU-type zeolite nanosheets. , 2012, Angewandte Chemie.

[30]  R. Ryoo,et al.  Surfactant-Directed Zeolite Nanosheets: A High-Performance Catalyst for Gas-Phase Beckmann Rearrangement , 2011 .

[31]  Rijie Wang,et al.  Beckmann rearrangement of cyclohexanone oxime over Al-MCM-41 and P modified Al-MCM-41 molecular sieves , 2011 .

[32]  Huanting Wang,et al.  Controlling zeolite structures and morphologies using polymer networks , 2010 .

[33]  Yunqi Liu,et al.  High‐Performance Phototransistors Based on Organic Microribbons Prepared by a Solution Self‐Assembly Process , 2010 .

[34]  R. Ryoo,et al.  Generation of Mesoporosity in LTA Zeolites by Organosilane Surfactant for Rapid Molecular Transport in Catalytic Application , 2009 .

[35]  O. Terasaki,et al.  Stable single-unit-cell nanosheets of zeolite MFI as active and long-lived catalysts , 2009, Nature.

[36]  J. Sueiras,et al.  Effect of microwaves in the dealumination of mordenite on its surface and acidic properties , 2009 .

[37]  J. Limtrakul,et al.  Effect of the acidic strength on the vapor phase Beckmann rearrangement of cyclohexanone oxime over the MFI zeolite: an embedded ONIOM study. , 2009, Physical chemistry chemical physics : PCCP.

[38]  Huanting Wang,et al.  Cubes of zeolite A with an amorphous core. , 2008, Angewandte Chemie.

[39]  R. Ryoo,et al.  Organosilane surfactant-directed synthesis of mesoporous aluminophosphates constructed with crystalline microporous frameworks. , 2006, Chemical communications.

[40]  Rajendra Srivastava,et al.  Amphiphilic organosilane-directed synthesis of crystalline zeolite with tunable mesoporosity , 2006, Nature materials.

[41]  Tatsuya Suzuki,et al.  Theoretical study on vapour phase Beckmann rearrangement of cyclohexanone oxime over a high silica MFI zeolite , 2003 .