Recent advances in adsorption characterization of mesoporous molecular sieves
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[1] M. Jaroniec,et al. New Approach to Evaluate Pore Size Distributions and Surface Areas for Hydrophobic Mesoporous Solids , 1999 .
[2] M. Jaroniec,et al. Characterization of high-quality MCM-48 and SBA-1 mesoporous silicas , 1999 .
[3] J. P. Olivier,et al. Standard Nitrogen Adsorption Data for Characterization of Nanoporous Silicas , 1999 .
[4] M. Jaroniec,et al. Characterization of Highly Ordered MCM-41 Silicas Using X-ray Diffraction and Nitrogen Adsorption , 1999 .
[5] M. Jaroniec,et al. A Unified Interpretation of High-Temperature Pore Size Expansion Processes in MCM-41 Mesoporous Silicas , 1999 .
[6] M. Jaroniec,et al. Expanding the Pore Size of MCM-41 Silicas: Use of Amines as Expanders in Direct Synthesis and Postsynthesis Procedures , 1999 .
[7] V. B. Fenelonov,et al. Mesopore size and surface area calculations for hexagonal mesophases (types MCM-41, FSM-16, etc.) using low-angle XRD and adsorption data , 1999 .
[8] F. Renzo,et al. Micelle-templated silicates as a test bed for methods of mesopore size evaluation , 1999 .
[9] M. Jaroniec,et al. Influence of hydrothermal restructuring conditions on structural properties of mesoporous molecular sieves , 1999 .
[10] M. Jaroniec,et al. Relations between pore structure parameters and their implications for characterization of MCM-41 using gas adsorption and X-ray diffraction , 1999 .
[11] M. Jaroniec,et al. Adsorption methods for characterization of surface and structural properties of mesoporous molecular sieves , 1998 .
[12] A. Neimark,et al. Pore Size Analysis of MCM-41 Type Adsorbents by Means of Nitrogen and Argon Adsorption. , 1998, Journal of colloid and interface science.
[13] A. Neimark,et al. Density functional theory model for calculating pore size distributions: pore structure of nanoporous catalysts , 1998 .
[14] M. Jaroniec,et al. Tailoring Surface and Structural Properties of MCM-41 Silicas by Bonding Organosilanes , 1998 .
[15] Bradley F. Chmelka,et al. Nonionic Triblock and Star Diblock Copolymer and Oligomeric Surfactant Syntheses of Highly Ordered, Hydrothermally Stable, Mesoporous Silica Structures , 1998 .
[16] S. Bhatia,et al. Experimental and Theoretical Investigations of Adsorption Hysteresis and Criticality in MCM-41: Studies with O2, Ar, and CO2† , 1998 .
[17] M. Jaroniec,et al. Characterization of microporous-mesoporous MCM-41 silicates prepared in the presence of octyltrimethylammonium bromide , 1997 .
[18] M. Jaroniec,et al. Physicochemical Foundations for Characterization of Adsorbents by Using High-Resolution Comparative Plots , 1997 .
[19] M. Jaroniec,et al. Characterization of Large-Pore MCM-41 Molecular Sieves Obtained via Hydrothermal Restructuring , 1997 .
[20] M. Jaroniec,et al. Application of large pore MCM-41 molecular sieves to improve pore size analysis using nitrogen adsorption measurements , 1997 .
[21] M. Jaroniec,et al. Monitoring of the structure of siliceous mesoporous molecular sieves tailored using different synthesis conditions , 1997 .
[22] J. Choma,et al. Critical discussion of simple adsorption methods used to evaluate the micropore size distribution , 1997 .
[23] A. Neimark,et al. Evaluation of Pore Structure Parameters of MCM-41 Catalyst Supports and Catalysts by Means of Nitrogen and Argon Adsorption , 1997 .
[24] J. P. Olivier,et al. Characterization of MCM-41 Using Molecular Simulation: Heterogeneity Effects , 1997 .
[25] Shiono,et al. Analysis of Nitrogen Adsorption Isotherms for a Series of Porous Silicas with Uniform and Cylindrical Pores: A New Method of Calculating Pore Size Distribution of Pore Radius 1-2 nm , 1997, Journal of colloid and interface science.
[26] M. Jaroniec,et al. Adsorption Study of Surface and Structural Properties of MCM-41 Materials of Different Pore Sizes , 1997 .
[27] Q. Huo,et al. Surfactant Control of Phases in the Synthesis of Mesoporous Silica-Based Materials , 1996 .
[28] Stephen A. Bagshaw,et al. Templating of Mesoporous Molecular Sieves by Nonionic Polyethylene Oxide Surfactants , 1995, Science.
[29] P. Tanev,et al. A Neutral Templating Route to Mesoporous Molecular Sieves , 1995, Science.
[30] J. B. Higgins,et al. A new family of mesoporous molecular sieves prepared with liquid crystal templates , 1992 .
[31] H. C. Foley,et al. Curvature and parametric sensitivity in models for adsorption in micropores , 1991 .
[32] K. Kawazoe,et al. METHOD FOR THE CALCULATION OF EFFECTIVE PORE SIZE DISTRIBUTION IN MOLECULAR SIEVE CARBON , 1983 .
[33] S. J. Gregg,et al. Adsorption Surface Area and Porosity , 1967 .
[34] M. Jaroniec,et al. Determination of Pore Size and Pore Wall Structure of MCM-41 by Using Nitrogen Adsorption, Transmission Electron Microscopy, and X-ray Diffraction , 2000 .
[35] M. Jaroniec,et al. Accurate Method for Calculating Mesopore Size Distributions from Argon Adsorption Data at 87 K Developed Using Model MCM-41 Materials , 2000 .
[36] J. P. Olivier,et al. A new method for the accurate pore size analysis of MCM-41 and other silica based mesoporous materials , 2000 .
[37] J. Choma,et al. On the applicability of the Horwath-Kawazoe method for pore size analysis of MCM-41 and related mesoporous materials , 2000 .
[38] C. Guizard,et al. Synthesis and characterization of inorganic gels in a lyotropic liquid crystal medium. Part 2.-Synthesis of silica gels in lyotropic crystal phases obtained from cationic surfactants , 1996 .
[39] A. Patrykiejew,et al. Adsorption in energetically heterogeneous slit-like pores: comparison of density functional theory and computer simulations , 1994 .
[40] Peter Bräuer,et al. The solution of adsorption integral equations by means of the regularization method , 1992 .
[41] K. Kuroda,et al. The preparation of alkyltrimethylammonium-kanemite complexes and their conversion to microporous materials. , 1990 .
[42] Lesile Glasser. The chemistry of silica: By Ralph K. Iller. Pp. vii+ 866. Wiley, Chichester. 1979, £39.50 , 1980 .
[43] K. Sing,et al. Analysis of nitrogen adsorption isotherms on porous and nonporous silicas by the BET and αs methods , 1972 .
[44] E. Barrett,et al. (CONTRIBUTION FROM THE MULTIPLE FELLOWSHIP OF BAUGH AND SONS COMPANY, MELLOX INSTITUTE) The Determination of Pore Volume and Area Distributions in Porous Substances. I. Computations from Nitrogen Isotherms , 1951 .