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Sonwane, C. G. and Bhatia, S. K. (1998) Adsorption in mesopores: A molecular-continuum model with application to MCM-41. Chemical Engineering Science, 53 17: 3143-3156. doi:10.1016/S0009-2509(98)00136-5 182   48 Cited 49 times in Scopus49 0
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 99   8 Cited 8 times in Scopus8 0
Ustinov, E. A. and Do, D. D. (2002) Adsorption in slit-like pores of activated carbons: Improvement of the Horvath and Kawazoe method. Langmuir, 18 12: 4637-4647. doi:10.1021/la010535l 103   16 Cited 16 times in Scopus16 0
Ustinov, E. A. and Do, D. D. (2006) Adsorption in slit pores and pore-size distribution: A molecular layer structure theory. Adsorption Science & Technology, 24 1: 1-16. doi:10.1260/026361706778062531 181   2 Cited 3 times in Scopus3 0
Prasetyo, I. and Do, D. D. (1999) Adsorption kinetics of light paraffins in AC by a constant molar flow-rate method. AIChE Journal, 45 8: 1892-1900. doi:10.1002/aic.690450907 76   16 0 0
Ustinov, E. A., Do, D. D. and Jaroniec, M. (2005) Adsorption of argon and nitrogen in cylindrical pores of MCM-41 materials: application of density functional theory. Applied Surface Science, 252 4: 1013-1028. doi:10.1016/j.apsusc.2005.01.122 144   11 Cited 15 times in Scopus15 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 115   16 Cited 21 times in Scopus21 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.2005.02.039 337   16 Cited 19 times in Scopus19 0
Li, Ling, Shi, Zhennan, Zhu, Hongyang, Hong, Wei, Xie, Fengwei and Sun, Keke (2016) Adsorption of azo dyes from aqueous solution by the hybrid MOFs/GO. Water Science and Technology, 73 7: 1728-1737. doi:10.2166/wst.2016.009     0 Cited 1 times in Scopus1 0
Nguyen, C, Sonwane, CG, Bhatia, SK and Do, DD (1998) Adsorption of benzene and ethanol on MCM-41 material. Langmuir, 14 17: 4950-4952. doi:10.1021/la971203c 165   45 Cited 51 times in Scopus51 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 174   21 Cited 21 times in Scopus21 0
Bhatia, SK (1998) Adsorption of binary hydrocarbon mixtures in carbon slit pores: A density functional theory study. Langmuir, 14 21: 6231-6240. doi:10.1021/la980354s 69   30 0 0
Ozdemir, O., Karakashev, S.I., Nguyen, A.V. and Miller, J.D. (2006) Adsorption of carbonate and bicarbonate salts at the air-brine interface. International Journal of Mineral Processing, 81 3: 149-158. doi:10.1016/j.minpro.2006.07.016 210   12 Cited 13 times in Scopus13 0
Jiao, Yan, Du, Aijun, Zhu, Zhonghua, Rudolph, Victor and Smith, Sean C. (2010) Adsorption of carbon dioxide and nitrogen on single-layer aluminum nitride nanostructures studied by density functional theory. The Journal of Physical Chemistry C: Nanomaterials, Interfaces and Hard Matter, 114 17: 7846-7849. doi:10.1021/jp911419k 155   21 Cited 21 times in Scopus21 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 118   20 Cited 21 times in Scopus21 0
Liu, Lang, Nicholson, David and Bhatia, Suresh K. (2015) Adsorption of CH4 and CH4/CO2 mixtures in carbon nanotubes and disordered carbons: a molecular simulation study. Chemical Engineering Science, 121 268-278. doi:10.1016/j.ces.2014.07.041 104   6 0 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 129   21 Cited 22 times in Scopus22 0
Ismadji, S and Bhatia, S. K. (2000) Adsorption of flavour esters on granular activated carbon. The Canadian Journal of Chemical Engineering, 78 5: 892-901. 199   16 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.2004.12.009 173   6 Cited 8 times in Scopus8 0
Wongkoblap, A., Junpirom, S. and Do, D. D. (2005) Adsorption of Lennard-Jones fluids in carbon slit pores of a finite length. A computer simulation study. Adsorption Science & Technology, 23 1: 1-18. doi:10.1260/0263617053737163 234   17 Cited 15 times in Scopus15 0
Mitchell, Timothy Kevin, Nguyen, Anh V., Evans, Geoffrey Michael, Tremain, Benjamin John, Thomsen, Lars and Dastoor, Paul Christopher (2006). Adsorption of mercaptan and thionocarbamate surfactants onto chalcopyrite minerals studied by X-ray photoelectron spectroscopy. In: 34th Annual Australasian Chemical and Process Engineering Conference, CHEMECA 2006. 34th Annual Australasian Chemical and Process Engineering Conference, CHEMECA 2006, Auckland, NZ, (). 17-20 September, 2006. 152  
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 56   11 Cited 11 times in Scopus11 0
Ustinov, E. A. and Do, D. D. (2005) Adsorption of N-2, Ar, acetone, chloroform and acetone-chloroform mixture on carbon black in the framework of molecular layer structure theory (MLST). Carbon, 43 12: 2463-2473. doi:10.1016/j.carbon.2005.04.028 259   2 Cited 3 times in Scopus3 0
Park, Yuri, Frost, Ray L., Ayoko, Godwin A. and Morgan, Dana L. (2013) Adsorption of p-nitrophenol on organoclays A thermoanalytical study. Journal of Thermal Analysis and Calorimetry, 111 1: 41-47. doi:10.1007/s10973-011-2103-7 40   8 Cited 8 times in Scopus8 0
Wongkoblap, A, Do, D. and Wang, K (2009) Adsorption of polar and non-polar fluids in carbon nanotube bundles: Computer simulation and experimental studies. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 331 1: 65-76. doi:10.1016/j.jcis.2008.11.042 102   13 Cited 12 times in Scopus12 0
Wongkoblap, A. and Do, D. D. (2008) Adsorption of polar and nonpolar fluids in finite-length carbon slit pore: A Monte Carlo simulation study. Chemical Engineering Communications, 195 11: 1382-1395. doi:10.1080/00986440801963733 68   6 Cited 6 times in Scopus6 0
Yu, Wei Hua, Li, Na, Tong, Dong Shen, Zhou, Chun Hui, Lin, Chun Xiang (Cynthia) and Xu, Chuan Yun (2013) Adsorption of proteins and nucleic acids on clay minerals and their interactions: A review. Applied Clay Science, 80-81 443-452. doi:10.1016/j.clay.2013.06.003 48   35 Cited 39 times in Scopus39 1
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 112   4 Cited 5 times in Scopus5 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 116   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 92   50 Cited 61 times in Scopus61 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+ 85   13 Cited 15 times in Scopus15 0
Nguyen, C. and Do, D. D. (1999) Adsorption of supercritical gases in porous media: Determination of micropore size distribution. Journal of Physical Chemistry B, 103 33: 6900-6908. doi:10.1021/jp9906536 63   40 0
Horikawa, Toshihide, Takenouchi, Masanori, Do, Duong D., Sotowa, Ken-Ichiro, Alcantara-Avila, J. Rafael and Nicholson, David (2015) Adsorption of Water and Methanol on Highly Graphitized Thermal Carbon Black and Activated Carbon Fibre. Australian Journal of Chemistry, 68 9: 1336-1341. doi:10.1071/CH15134     2 Cited 3 times in Scopus3 0
Klomkliang, Nikom, Kaewmanee, R., Saimoey, S., Intarayothya, S., Do, D. D. and Nicholson, D. (2016) Adsorption of water and methanol on highly graphitized thermal carbon black: The effects of functional group and temperature on the isosteric heat at low loadings. Carbon, 99 361-369. doi:10.1016/j.carbon.2015.12.036     0 0 0
Wongkoblap, Atichat and Do, Duong D. (2007) Adsorption of water in finite length carbon slit pore: comparison between computer simulation and experiment. The Journal of Physical Chemistry Part B, 111 50: 13949-13956. doi:10.1021/jp0747297 73   16 Cited 18 times in Scopus18 0
Mowla, D., Do, D. D. and Kaneko, K. (2003) Adsorption of water vapor on activated carbon: A brief overview. Chemistry And Physics of Carbon, 28 229-262. 252   48
Bruschi, Lorenzo, Mistura, Giampaolo, Phadungbut, Poomiwat, Do, D. D., Nicholson, D., Mayamei, Yashar and Lee, Woo (2015) Adsorption on ordered and disordered duplex layers of porous anodic alumina. Langmuir, 31 17: 4895-4905. doi:10.1021/acs.langmuir.5b00716 26   0 0 0
Massarotto, P., Golding, S. D., Iyer, R., Bae, J.-S. and Rudolph, V. (2007). Adsorption, porosity and permaebility effects of CO2 geosequestration in permian coal. In: 2007 International Coalbed Methane Symposium, Tuscaloosa, Alabama., (). 23-24 May, 2007. 147  
Massarotto, P., Rudolph, V. and Golding, S. D. (2006). Adsorption, prelimary feasibility economics and risks of CO2 geosequestration in coal seams of the Bowen Basin, Australia. In: GHGT-8 Conference Proceedings. GHGT8, Eight International Conference on Greenhouse Gas Control Technologies, Trondheim, Norway, (). 19-22 June, 2006. 96  
Zhao, X. S., Lu, G. and Hu, X. (1999). Adsorption study on modified MCM-41 materials. In: The Fifth IUMRS International Conference on Advanced Materials. IUMRS-ICAM '99, Beijing, China, (II51). 13-18 June. 93  
Saulov, D. N., Rudolph, V. and Klimenko, A. Y. (2011) Adsorption thermodynamics in the framework of the modified associate formalism. The Open Thermodynamics Journal, 5 11-15. doi:10.2174/1874396X01105010011 58 1 0
Bhatia, S. K. (2009). Adsorptive storage of hydrogen in nanoporous materials. In: Abstracts of scientific papers, 237th American Chemical Society national meeting and exposition. 237th National Meeting and Exposition of the American Chemical Society, ACS 2009, Salt Lake City, UT, (). 22 - 26 March 2009. 29   0
Zaidi, S. M. Javaid (2010) Advanced membrane materials for fuel cell applications. Current Applications of Polymers and Nano Materials, 657 88-115. doi:10.4028/www.scientific.net/MSF.657.88 28   1 Cited 2 times in Scopus2 0
Li, G., Zhao, X. S. and Ray, Madhumita B. (2007) Advanced oxidation of orange II using TiO2 supported on porous adsorbents: The role of pH, H2O2 and O3. Separation and Purification Technology, 55 1: 91-97. doi:10.1016/j.seppur.2006.11.003 79   61 Cited 74 times in Scopus74 0
Zhang, Li Li, Gu, Yi and Zhao, X. S. (2013) Advanced porous carbon electrodes for electrochemical capacitors. Journal of Materials Chemistry A, 1 33: 9395-9408. doi:10.1039/c3ta11114h 90   52 Cited 53 times in Scopus53 6
Shao, Zongping, Zhou, Wei and Zhu, Zhonghua (2012) Advanced synthesis of materials for intermediate-temperature solid oxide fuel cells. Progress in Materials Science, 57 4: 804-874. doi:10.1016/j.pmatsci.2011.08.002 111   119 Cited 128 times in Scopus128 0
Shi, Ge, Michelmore, Andrew, Jin, Jian, Li, Lu Hua, Chen, Ying, Wang, Lianzhou, Yu, Hua, Wallace, Gordon, Gambhir, Sanjeev, Zhu, Shenmin, Hojati-Talemi, Pejman and Ma, Jun (2014) Advancement in liquid exfoliation of graphite through simultaneously oxidizing and ultrasonicating. Journal of Materials Chemistry A, 2 47: 20382-20392. doi:10.1039/c4ta04367g 35   5 Cited 5 times in Scopus5 0
Dicks, Andrew L. (2001). Advances in catalyst materials for internal reforming in high temperature fuel cells. In: Americal Chemical Society, Division of Fuel Chemistry. 222nd ACS National Meeting, Chicago Il, United States, (680-683). 26-30 August, 2001. 60  
Chen, Yubo, Zhou, Wei, Ding, Dong, Liu, Meilin, Ciucci, Francesco, Tade, Moses and Shao, Zongping (2015) Advances in Cathode Materials for Solid Oxide Fuel Cells: Complex Oxides without Alkaline Earth Metal Elements. Advanced Energy Materials, 5 18: . doi:10.1002/aenm.201500537     6 Cited 8 times in Scopus8 0
Lee, T. T., Wang, F. Y. and Newell, R. B. (2006) Advances in distributed parameter approach to the dynamics and control of activated sludge processes for wastewater treatment. Water Research, 40 5: 853-869. doi:10.1016/j.watres.2005.12.025 90   18 Cited 19 times in Scopus19 0

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