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Do, D.D., Do, H.D. and Nicholson, D. (2010) A computer appraisal of BET theory, BET surface area and the calculation of surface excess for gas adsorption on a graphite surface. Chemical Engineering Science, 65 10: 3331-3340. doi:10.1016/j.ces.2010.02.023 230   7 Cited 7 times in Scopus7 0
Do, D.D. and Do, H. D. (2003). Adsorption equilibria of sub- and super-critical fluids in carbonaceous materials. In: Chang Ha Lee, Proceedings of the Third Pacific Basin Conference on Adsorption Science and Technology, Kyongju, Korea, May 25-29, 2003. Third Pacific Basin Conference on Adsorption Science and Technology, Kyongju, Korea, (1-8). 25-29 May, 2009. 68  
Do, D., Nicholson, D and Do, H. (2009) Adsorption in micropores (nanopores): a computer appraisal of the Dubinin equations. MOLECULAR SIMULATION, 35 1-2: 122-137. doi:10.1080/08927020802331349 91   7 Cited 7 times in Scopus7 0
Do, D. D. and Do, H. D. (2005) Adsorption of argon from sub- to supercritical conditions on graphitized thermal carbon black and in graphitic slit pores: A grand canonical Monte Carlo simulation study. Journal of Chemical Physics, 123 8: 084701 - 1-084701 - 15. doi:10.1063/1.1996573 95   15 Cited 18 times in Scopus18 0
Do, D. D. and Do, H. D. (2005) Adsorption of argon on homogeneous graphitized thermal carbon black and heterogeneous carbon surface. Journal Of Colloid And Interface Science, 287 2: 452-460. doi:10.1016/j.jcis.2005.02.039 318   15 Cited 18 times in Scopus18 0
Do, D. D. and Do, H. D. (2006) Adsorption of benzene on graphitized thermal carbon black: Reduction of the quadrupole moment in the adsorbed phase. Langmuir, 22 3: 1121-1128. doi:10.1021/la052545i 161   19 Cited 19 times in Scopus19 0
Do, D. D. and Do, H. D. (2006) Adsorption of carbon tetrachloride on graphitized thermal carbon black and in slit graphitic pores: Five-site versus one-site potential models. Journal of Physical Chemistry B, 110 19: 9520-9528. doi:10.1021/jp057230q 103   20 Cited 21 times in Scopus21 0
Do, D. D. and Do, H. D. (2004) Adsorption of ethylene on graphitized thermal carbon black and in slit pores: A computer simulation study. Langmuir, 20 17: 7103-7116. doi:10.1021/la0495682 119   20 Cited 21 times in Scopus21 0
Do, D. D. and Do, H. D. (2005) Adsorption of flexible n-alkane on graphitized thermal carbon black: analysis of adsorption isotherm by means of GCMC simulation. Chemical Engineering Science, 60 7: 1977-1986. doi:10.1016/j.ces.2004.12.009 161   4 Cited 4 times in Scopus4 0
Do, DD and Do, HD (2002) Adsorption of mixtures containing subcritical fluids on activated carbon. Aiche Journal, 48 10: 2213-2229. doi:10.1002/aic.690481012 47   11 Cited 10 times in Scopus10 0
Do, D. D. and Do, H. D. (2005) Adsorption of pure fluids in activated carbon with a modified lattice gas model. Chemical Engineering Communications, 192 3: 295-309. doi:10.1080/00986440590473506 104   3 Cited 4 times in Scopus4 0
Do, D. D. and Do, H. D. (2005) Adsorption of quadrupolar, diatomic nitrogen onto graphitized thermal carbon black and in slit-shaped carbon pores. Effects of surface mediation. Adsorption Science & Technology, 23 4: 267-287. doi:10.1260/0263617054770020 106   14 Cited 14 times in Scopus14 0
Do, D. D. and Do, H. D. (2003) Adsorption of supercritical fluids in non-porous and porous carbons: analysis of adsorbed phase volume and density. Carbon, 41 9: 1777-1791. doi:10.1016/S0008-6223(03)00152-0 82   41 Cited 50 times in Scopus50 0
Do, D. D., Do, H. D. and Ustinov, E. (2003) Adsorption of Supercritical fluids on graphitised thermal carbon black: Molecular layer structure theory versus grand canonical Monte Carlo simulation. Langmuir, 19 6: 2215-2225. doi:10.1021/la020786+ 75   13 Cited 13 times in Scopus13 0
Do, D. D. and Do, H. D. (2000) A Model for water adsorption in activated carbon. Carbon, 38 5: 767-773. doi:10.1016/S0008-6223(99)00159-1 80   92 Cited 94 times in Scopus94 0
Do, D. D. and Do, H. D. (2002) Analysis of adsorption data of graphitized thermal carbon black with a DFT-lattice gas theory. Adsorption-journal of The International Adsorption Society, 8 4: 309-324. doi:10.1023/A:1021581717773 41   5 Cited 7 times in Scopus7 0
Do, D. D., Do, H. D. and Tran, K. N. (2003) Analysis of adsorption of gases and vapors on nonporous graphitized thermal carbon black. Langmuir, 19 14: 5656-5668. doi:10.1021/la020191e 108   5 Cited 6 times in Scopus6 0
Do, H. D. and Do, D. D. (2001) A new diffusion and flow theory for activated carbon from low pressure to capillary condensation range. Chemical Engineering Journal, 84 3: 295-308. doi:10.1016/S1385-8947(00)00383-1 137   9 Cited 10 times in Scopus10 0
Do, D. D., Do, H. D. and Birkett, G. (2007). A new methodology in the use of super-critical adsorption data to determine the micropore size distribution. In: Li Zhou, Adsorption: Progress in fundamental and application research. 4th Pacific Basin Conference on Absorption Science and Technology, Tianjin, China, (154-174). 22-26 May, 2006. 89  
Do, D. D., Herrera, L. F. and Do, H. D. (2008) A new method to determine pore size and its volume distribution of porous solids having known atomistic configuration. Journal of colloid and interface science, 328 1: 110-119. doi:10.1016/j.jcis.2008.08.060 216   18 Cited 20 times in Scopus20 0
Do, D. D. and Do, H. D. (2007) Appropriate volumes for adsorption isotherm studies: The absolute void volume, accessible pore volume and enclosing particle volume. Journal of Colloid And Interface Science, 316 2: 317-330. doi:10.1016/j.jcis.2007.08.020 94   27 Cited 30 times in Scopus30 0
Do, DD and Do, HD (2002) Characterization of micro-mesoporous carbonaceous materials. Calculations of adsorption isotherm of hydrocarbons. Langmuir, 18 1: 93-99. doi:10.1021/la010232r 72   20 Cited 20 times in Scopus20 0
Do, D. D., Nguyen, C. and Do, H. D. (2001) Characterization of micro-mesoporous carbon media. Colloids And Surfaces A-physicochemical And Engineering Aspects, 187 51-71. doi:10.1016/S0927-7757(01)00621-5 49   86 Cited 88 times in Scopus88 0
Do, D. D. and Do, H. D. (2005) Comparative adsorption of spherical argon and flexible n-butane in carbon slit pores - a GCMC computer simulation study. Colloids And Surfaces A-Physicochemical And Engineering Aspects, 252 1: 7-20. doi:10.1016/j.colsurfa.2004.09.041 67   9 Cited 12 times in Scopus12 0
Do, H. D. and Do, D. D. (2005) Cooperative and competitive adsorption of ethylene, ethane, nitrogen and argon on graphitized carbon black and in slit pores. Adsorption-Journal of The International Adsorption Society, 11 1: 35-50. doi:10.1007/s10450-005-1091-y 74   12 Cited 13 times in Scopus13 0
Do, D. D., Do, H. D. and Kaneko, K. (2004) Effect of surface-perturbed intermolecular interaction on adsorption of simple gases on a graphitized carbon surface. Langmuir, 20 18: 7623-7629. doi:10.1021/la0496441 51   32 Cited 32 times in Scopus32 0
Do, D. D. and Do, H. D. (2002) Effects of adsorbate-adsorbate interaction in the description of adsorption isotherm of hydrocarbons in micro-mesoporous carbonaceous materials. Applied Surface Science, 196 1-4: 13-29. doi:10.1016/S0169-4332(02)00041-7 78   11 Cited 11 times in Scopus11 0
Do, D.D., Nicholson, D. and Do, H.D. (2008) Effects of adsorbent deformation on the adsorption of gases in slitlike graphitic pores: A computer simulation study. JOURNAL OF PHYSICAL CHEMISTRY C, 112 36: 14075-14089. doi:10.1021/jp8032269 18   14 Cited 14 times in Scopus14 0
Do, D. D. and Do, H. D. (2005) Effects of potential models in the vapor-liquid equilibria and adsorption of simple gases on graphitized thermal carbon black. Fluid Phase Equilibria, 236 1-2: 169-177. doi:10.1016/j.fluid.2005.06.012 105   46 Cited 47 times in Scopus47 0
Do, D. D. and Do, H. D. (2006) Effects of potential models on the adsorption of carbon dioxide on graphitized thermal carbon black: GCMC computer simulations. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 277 1-3: 239-248. doi:10.1016/j.colsurfa.2005.11.094 242 143 9 Cited 8 times in Scopus8 0
Do, D. D. and Do, H. D. (2004) Effects of potential models on the adsorption of ethane and ethylene on graphitized thermal carbon black. Study of two-dimensional critical temperature and isosteric heat versus loading. Langmuir, 20 25: 10889-10899. doi:10.1021/la0486483 96   10 Cited 11 times in Scopus11 0
Do, D. D. and Do, H. D. (2007). Effects of quadrupole moments of graphite surface on adsorption of simple gases on graphitized thermal carbon black. In: D. C. Prieve, D. N. Furlong and M. Adler, Colloids and Surfaces A: Physicochemical and Engineering Aspects: Proceedings of the Fourth International TRI/Princeton Workshop "Characterization of Porous Materials: from Angstroms to Millimeters". Fourth International TRI/Princeton Workshop "Characterization of Porous Materials: from Angstroms to Millimeters", Princeton, N.J., (50-59). June 21 - 23, 2006. doi:10.1016/j.colsurfa.2006.10.008 110   10 Cited 11 times in Scopus11 0
Do, D. D. and Do, H. D. (2005) Effects of surface heterogeneity on the adsorption of nitrogen on graphitized thermal carbon black. Molecular Simulation, 31 9: 651-659. doi:10.1080/08927020500108429 120   11 Cited 11 times in Scopus11 0
Do, D.D., Do, H.D. and Nicholson, D. (2007) Effects of surface structure and temperature on the surface mediation, layer concentration and molecular projection area: Adsorption of argon and nitrogen onto graphitized thermal carbon black. Adsorption Science and Technology, 25 6: 347-363. doi:10.1260/026361707783908319 72   13 Cited 13 times in Scopus13 0
Do, D. D. and Do, H. D. (2005) Evaluation of 1-site and 5-site models of methane on its adsorption on graphite and in graphitic slit pores. Journal Of Physical Chemistry B, 109 41: 19288-19295. doi:10.1021/jp052448y 75   31 Cited 30 times in Scopus30 0
Do, D. D. and Do, H. D. (2005) GCMC-surface area of carbonaceous materials with N-2 and Ar adsorption as an alternative to the classical BET method. Carbon, 43 10: 2112-2121. doi:10.1016/j.carbon.2005.03.042 123   15 Cited 15 times in Scopus15 0
Do, D. D., Nicholson, D. and Do, H. D. (2007). Heat of adsorption and density distribution in slit pores with defective walls: GCMC simulation studies and comparison with experimental data. In: F. H. P. M. Habraken, H. Kobayashi and J. E. Rowe, Applied Surface Science: Sixth International Symposium on Effects of surface heterogeneity in adsorption and catalysis on solids - ISSHAC-VI. Sixth International Symposium on Effects of surface heterogeneity in adsorption and catalysis on solids - ISSHAC-VI, Zakopane, Poland, (5580-5586). 28 August - 2 September 2007. doi:10.1016/j.apsusc.2006.12.057 80   6 Cited 7 times in Scopus7 0
Do, D.D., Do, H.D., Wongkoblap, A. and Nicholson, D. (2008) Henry constant and isosteric heat at zero-loading for gas adsorption in carbon nanotubes. Physical Chemistry Chemical Physics, 10 48: 7293-7303. doi:10.1039/b809022j 30   13 Cited 14 times in Scopus14 0
Do, D. D. and Do, H. D. (2005) Impact of potential models on adsorption of linear molecules on carbon black. Adsorption-journal of The International Adsorption Society, 11 Suppl. 1: 307-312. doi:10.1007/s10450-005-5942-3 39   0 Cited 0 times in Scopus0 0
Do, D. D., Junpirom, S., Nicholson, D. and Do, H. D. (2010) Importance of molecular shape in the adsorption of nitrogen, carbon dioxide and methane on surfaces and in confined spaces. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 353 1: 10-29. doi:10.1016/j.colsurfa.2009.10.021 107   8 Cited 8 times in Scopus8 0
Do, D. D. and Do, H. D. (2007) Isotherm and heat of adsorption in porous solids with defective pores-adsorption of argon and nitrogen at 77K in Saran activated carbon. Molecular Simulation, 33 9-10: 821-837. doi:10.1080/08927020701275043 97   1 Cited 2 times in Scopus2 0
Do, D. D. and Do, H. D. (2006) Modeling of adsorption on nongraphitized carbon surface: GCMC simulation studies and comparison with experimental data. Journal of Physical Chemistry B, 110 35: 17531-17538. doi:10.1021/jp062386r 89   57 Cited 58 times in Scopus58 0
Do, D., Do, H. and Nicholson, D. (2009) Molecular Simulation of Excess Isotherm and Excess Enthalpy Change in Gas-Phase Adsorption. JOURNAL OF PHYSICAL CHEMISTRY B, 113 4: 1030-1040. doi:10.1021/jp8046467 103   26 Cited 26 times in Scopus26 0
Do, D.D., Nicholson, D. and Do, H.D. (2008) On the anatomy of the adsorption heat versus loading as a function of temperature and adsorbate for a graphitic surface. Journal of Colloid and Interface Science, 325 1: 7-22. doi:10.1016/j.jcis.2008.05.027 15   15 Cited 15 times in Scopus15 0
Do, DD and Do, HD (1999) On the azeotropic behaviour of adsorption systems. Adsorption, 5 4: 319-329. doi:10.1023/A:1008944329330 42   3 Cited 4 times in Scopus4 0
Do, H. D., Do, D. D. and Prasetyo, I. (2001) On the surface diffusion of hydrocarbons in microporous activated carbon. Chemical Engineering Science, 56 14: 4351-4368. doi:10.1016/S0009-2509(01)00051-3 109   11 Cited 11 times in Scopus11 0
Do, D. D., Ustinov, E. and Do, H. D. (2003) Phase equilibria and surface tension of pure fluids using a molecular layer structure theory (MLST) model. Fluid Phase Equilibria, 204 2: 309-326. doi:10.1016/S0378-3812(02)00267-4 69   7 Cited 6 times in Scopus6 0
Do, D. D. and Do, H. D. (2003) Pore characterization of carbonaceous materials by DFT and GCMC simulations: A review. Adsorption Science & Technology, 21 5: 389-423. doi:10.1260/026361703769645753 205   37 Cited 42 times in Scopus42 0
Do, D. D., Ustinov, E. and Do, H.D. (2008). Porous texture characterization from gas-solid adsorption. In Tascon, J.M.D. (Ed.), Adsorption by Carbons Bottani, E.J. ed. (pp. 239-271) The Netherlands: Elsevier. doi:10.1016/B978-008044464-2.50015-8 42   Cited 6 times in Scopus6 0
Do, D. D. and Do, H. D. (2003) Refined method of potential enhancement in the equilibria characterization of activated carbon. Comparison with GCMC and DFT. Langmuir, 19 20: 8302-8315. doi:10.1021/la020834q 45   15 Cited 16 times in Scopus16 0

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