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Li, Feng, Zhu, Zhonghua H., Zhao, Mingwen W. and Xia, Yueyuan Y. (2008) Ab initio calculations on the magnetic properties of hydrogenated boron nitride nanotubes. Journal of Physical Chemistry C, 112 42: 16231-16235. doi:10.1021/jp802524m 221   4 Cited 14 times in Scopus14 0
Zhu, Z. H., Finnerty, J., Lu, G. Q. and Yang, R. T. (2002) A comparative study of carbon gasification with O-2 and CO2 by density functional theory calculations. Energy & Fuels, 16 6: 1359-1368. doi:10.1021/ef0200020 188   29 Cited 31 times in Scopus31 0
Rufford, Thomas E., Hulicova-Jurcakova, Denisa, Zhu, Zhonghua and Lu, Gao Qing (2010) A comparative study of chemical treatment by FeCl3, MgCl2, and ZnCl2 on microstructure, surface chemistry, and double-layer capacitance of carbons from waste biomass. Journal of Materials Research, 25 8: 1451-1459. doi:10.1557/JMR.2010.0186 319 1 5 Cited 5 times in Scopus5 0
Xu, Xiaoyong, Zhou, Wei, Liang, Fengli and Zhu, Zhonghua (2013) A comparative study of different carbon fuels in an electrolyte-supported hybrid direct carbon fuel cell. Applied Energy, 108 402-409. doi:10.1016/j.apenergy.2013.03.053 105   10 Cited 14 times in Scopus14 0
Zhu, Z. H., Lu, G. Q. M., Zhuang, Y. H. and Shen, D. X. (1999) A comparative study of N2O conversion to N-2 over Co/AC and Cu/AC catalysts. Energy & Fuels, 13 4: 763-772. doi:10.1021/ef980181e 198   10 Cited 11 times in Scopus11 0
Niu, YJ, Sunarso, J, Liang, FL, Zhou, W, Zhu, ZH and Shao, ZP (2011) A comparative study of oxygen reduction reaction on Bi-and La-doped SrFeO3-δ perovskite cathodes. Journal of the Electrochemical Society, 158 2: B132-B138. doi:10.1149/1.3521316 127   21 Cited 22 times in Scopus22 0
Wang, L, Ge, L, Rufford, TE, Chen, JL, Zhou, W, Zhu, ZH and Rudolph, V (2011) A comparison study of catalytic oxidation and acid oxidation to prepare carbon nanotubes for filling with Ru nanoparticles. Carbon, 49 6: 2022-2032. doi:10.1016/j.carbon.2011.01.028 83   17 Cited 18 times in Scopus18 0
Zhu, Z. and Lu, G. (1999). Activated carbon-supported catalysts for N2O reduction. In: Chemeca' 99. Chemeca 99, Newcastle, (1085-1091). 26-29 September. 84  
Patel, Archana, Shukla, Pradeep, Chen, Jiuling, Rufford, Thomas E., Rudolph, Vincent and Zhu, Zhonghua (2013). Activity of mesoporous-MnOx (m-MnOx) and CuO/m-MnOx for catalytic reduction of NO with CO. In: Special Issue on Selected Contributions of the 4th International Symposium on New Catalytic Materials. 4th International Symposium on New Catalytic Materials, Cancun, Mexico, (38-44). 14-19 August 2011. doi:10.1016/j.cattod.2012.08.030 38   3 Cited 4 times in Scopus4 0
Jiao, Yan, Du, Aijun, Zhu, Zhonghua, Rudolph, Victor and Smith, Sean C. (2010) A density functional theory study of CO2 and N-2 adsorption on aluminium nitride single walled nanotubes. Journal of Materials Chemistry, 20 46: 10426-10430. doi:10.1039/c0jm01416h 68   17 Cited 21 times in Scopus21 0
Jiao, Yan, Du, Aijun, Zhu, Zhonghua, Rudolph, Victor, Lu, Gao Qing (Max) and Smith, Sean C. (2011). A density functional theory study on CO2 capture and activation by graphene-like boron nitride with boron vacancy. In: Can Li and Hong He, The 6th International Conference on Environmental Catalysis (6th ICEC). 6th International Conference on Environmental Catalysis (ICEC6 2010), Beijing, China, (271-275). 12-15 September 2010. doi:10.1016/j.cattod.2011.02.043 191 1 9 Cited 9 times in Scopus9 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 137   16 Cited 16 times in Scopus16 0
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 88   65 Cited 75 times in Scopus75 0
Wang, F.Y., Zhu, Z. H., Massarotto, P. and Rudolph, V. (2009). Advances in Integrated Modeling of Mass Transfer and Geo-mechanics in Coal Seams for CO2 Sequestration. In Columbus, F. (Ed.), Progress in Porous Media Research (pp. 263-339) Hauppauge, NY, USA: Nova Science Publishers, Inc. 96  
Liang, Fengli, Zhou, Wei and Zhu, Zhonghua (2014) A highly stable and active hybrid cathode for low-temperature solid oxide fuel cells. Chemelectrochem, 1 10: 1627-1631. doi:10.1002/celc.201402143 25   1 0
Zhou, Wei, Ge, Lei, Chen, Zhi-Gang, Liang, Fengli, Xu, Hong-Yi, Motuzas, Julius, Julbe, Anne and Zhu, Zhonghua (2011) Amorphous iron oxide decorated 3D heterostructured electrode for highly efficient oxygen reduction. Chemistry of Materials, 23 18: 4193-4198. doi:10.1021/cm201439d 103   16 Cited 17 times in Scopus17 0
Sitprasert, C., Zhu, Z. H., Wang, F. Y. and Rudolph, V. (2011) A multi-scale approach to the physical adsorption in slit pores. Chemical Engineering Science, 66 22: 5447-5458. doi:10.1016/j.ces.2011.04.045 82   5 Cited 4 times in Scopus4 0
Zou, Y., Li, F., Zhu, Z. H., Zhao, M. W., Xu, X. G. and Su, X. Y. (2011) An ab initio study on gas sensing properties of graphene and Si-doped graphene. European Physical Journal B, 81 4: 475-479. doi:10.1140/epjb/e2011-20225-8 64   27 Cited 28 times in Scopus28 0
Odedairo, Taiwo, Ma, Jun, Gu, Yi, Zhou, Wei, Jin, Jian, Zhao, X. S. and Zhu, Zhonghua (2014) A new approach to nanoporous graphene sheets via rapid microwave-induced plasma for energy applications. Nanotechnology, 25 49: 1-10. doi:10.1088/0957-4484/25/49/495604 20   0 Cited 0 times in Scopus0 0
Zhou, Wei, Shao, Zongping, Liang, Fengli, Chen, Zhi-Gang, Zhu, Zhonghua, Jin, Wanqin and Xu, Nanping (2011) A new cathode for solid oxide fuel cells capable of in situ electrochemical regeneration. Journal of Materials Chemistry, 21 39: 15343-15351. doi:10.1039/c1jm12660a 66   16 Cited 17 times in Scopus17 0
Wang, F.Y., Zhu, Z., Massarotto, P. and Rudolph, V. (2007) A simplified dynamic model for accelerated methane residual recovery from coals. Chemical Engineering Science, 62 12: 3268-3275. doi:10.1016/j.ces.2007.03.019 57   12 Cited 11 times in Scopus11 0
Niu, Yingjie, Zhou, Wei, Sunarso, Jaka, Liang, Fengli, Zhu, Zhonghua and Shao, Zongping (2011) A single-step synthesized cobalt-free barium ferrites-based composite cathode for intermediate temperature solid oxide fuel cells. Electrochemistry Communications, 13 12: 1340-1343. doi:10.1016/j.elecom.2011.08.007 39   6 Cited 5 times in Scopus5 0
Niu, Yingjie, Liang, Fengli, Zhou, Wei, Sunarso, Jaka, Zhu, Zhonghua and Shao, Zongping (2011) A three-dimensional highly interconnected composite oxygen reduction reaction electrocatalyst prepared from a core-shell precursor. Chemsuschem, 4 11: 1582-1586. doi:10.1002/cssc.201100254 44   5 Cited 4 times in Scopus4 0
Rufford, Thomas E., Fiset, Erika, Hulicova-Jurcakova, Denisa and Zhu, Zhonghua (2014). Biomass-derived carbon electrodes for electrochemical double-layer capacitors. In Thomas E. Rufford, Denisa Hulicova-Jurcakova and John Zhu (Ed.), Green Carbon Materials: Advances and Applications (pp. 93-113) Singapore: Pan Stanford Publishing. doi:10.1201/b15651-5 39   0
Koganemaru, Ali, Bin, Yuezhen Z., Tohora, Hidekazu, Okino, Fujio, Komiyama, Shingo, Zhu, John and Matsuo, Masaru (2008) Carbonization of oriented polyacrylonitrile and multiwalled carbon nanotube composite films. Asia-Pacific Journal of Chemical Engineering, 3 5: 521-526. doi:10.1002/apj.167 76   6 Cited 6 times in Scopus6 0
Li, Xiang, Zhu, Zonghua, De Marco, Roland, Bradley, John and Dicks, Andrew (2009) Carbon nanofibers synthesized by catalytic decomposition of methane and their electrochemical performance in a direct carbon fuel cell. Energy and Fuels, 23 7: 3721-3731. doi:10.1021/ef900203h 127   16 Cited 17 times in Scopus17 0
Li, Li, Wang, Yinghua, Xu, Zhi Ping and Zhu, Zhonghua (2013) Catalytic ammonia decomposition for CO-free hydrogen generation over Ru/Cr2O3 catalysts. Applied Catalysis A: General, 467 246-252. doi:10.1016/j.apcata.2013.07.003 49   0 Cited 0 times in Scopus0 0
Li, L, Zhu, ZH, Lu, GQ, Yan, ZF and Qiao, SZ (2007) Catalytic ammonia decomposition over CMK-3 supported Ru catalysts: Effects of surface treatments of supports. Carbon, 45 1: 11-20. doi:10.1016/j.carbon.2006.08.017 200   28 Cited 29 times in Scopus29 0
Ng, PF, Li, L, Wang, SB, Zhu, ZH, Lu, GQ and Yan, ZF (2007) Catalytic ammonia decomposition over industrial-waste-supported Ru catalysts. Environmental Science & Technology, 41 10: 3758-3762. doi:10.1021/es062326z 364   24 Cited 12 times in Scopus12 0
Li, L, Zhu, ZH, Yan, ZF, Lu, GQ and Rintoul, L (2007) Catalytic ammonia decomposition over Ru/carbon catalysts: The importance of the structure of carbon support. Applied Catalysis A-general, 320 166-172. doi:10.1016/j.apcata.2007.01.029 342   53 Cited 57 times in Scopus57 0
Wang, SB and Zhu, ZH (2004) Catalytic conversion of alkanes to olefins by carbon dioxide oxidative dehydrogenation - A review. Energy & Fuels, 18 4: 1126-1139. doi:10.1021/ef0340716 272   75 Cited 82 times in Scopus82 0
Zhu, Z. and Lu, G. (1999) Catalytic conversion to N2O to N2 over potassium catalyst supported on activated carbon. Journal of Catalysis, 187 2: 262-274. doi:10.1006/jcat.1999.2599 156   26 0
Li, Li, Wang, Shaobin, Zhu, Zhonghua, Yao, Xiangdong and Yan, Zifeng (2008) Catalytic decomposition of ammonia over fly ash supported Ru catalysts. Fuel Processing Technology, 89 11: 1106-1112. doi:10.1016/j.fuproc.2008.05.002 83   12 Cited 14 times in Scopus14 0
Wang, Li, Chen, Jiuling, Patel, Archana, Rudolph, Victor and Zhu, Zhonghua (2012) Catalytic performance of Ru nanoparticles supported on different mesoporous silicas for preferential oxidation of CO in H-2-rich atmosphere. Applied Catalysis A-General, 447 200-209. doi:10.1016/j.apcata.2012.09.044 56   3 Cited 5 times in Scopus5 0
Patel, Archana, Shukla, Pradeep, Rufford, Thomas, Wang, Shaobin, Chen, Jiuling, Rudolph, Victor and Zhu, Zhonghua (2011) Catalytic reduction of NO by CO over copper-oxide supported mesoporous silica. Applied Catalysis A: General, 409 55-65. doi:10.1016/j.apcata.2011.09.024 72   19 Cited 16 times in Scopus16 0
Du, A., Chen, Y., Zhu, Z., Lu, G. and Smith, S. C. (2009) C-BN single-walled nanotubes from hybrid connection of BN/C nanoribbons: Prediction by ab initio density functional calculations. Journal of the American Chemical Society, 131 5: 1682-1683. doi:10.1021/ja809053x 107   56 Cited 54 times in Scopus54 0
Wang, S. B. and Zhu, Z. H. (2006) Characterisation and environmental application of an Australian natural zeolite for basic dye removal from aqueous solution. Journal Of Hazardous Materials, 136 3: 946-952. doi:10.1016/j.jhazmat.2006.01.038 141   111 Cited 121 times in Scopus121 0
Wang, Shaobin, Ma, Qing and Zhu, Z. H. (2008) Characteristics of coal fly ash and adsorption application. Fuel, 87 15-16: 3469-3473. doi:10.1016/j.fuel.2008.05.022 110   41 Cited 50 times in Scopus50 0
Wang, Shaobin, Ma, Qing and Zhu, Z. H. (2009) Characteristics of unburned carbons and their application for humic acid removal from water. Fuel Processing Technology, 90 3: 375-380. doi:10.1016/j.fuproc.2008.10.010 64   14 Cited 19 times in Scopus19 0
Chen, Jiuling, Chen, Qinghai, Ma, Qing, Li, Yongdan and Zhu, Zhonghua (2012) Chemical treatment of CNTs in acidic KMnO4 solution and promoting effects on the corresponding Pd-Pt/CNTs catalyst. Journal of Molecular Catalysis A: Chemical, 356 114-120. doi:10.1016/j.molcata.2011.12.032 85   7 Cited 7 times in Scopus7 0
Li, L., Zhu, Z. H., Wang, S. B., Yao, X. D. and Yan, Z. F. (2009) Chromium oxide catalysts for CO(x)-free hydrogen generation via catalytic ammonia decomposition. Journal of Molecular Catalysis A: Chemical, 304 1-2: 71-76. doi:10.1016/j.molcata.2009.01.026 96   15 Cited 17 times in Scopus17 0
Wang, SB, Soudi, M, Li, L and Zhu, ZH (2006) Coal ash conversion into effective adsorbents for removal of heavy metals and dyes from wastewater. Journal of Hazardous Materials, 133 1-3: 243-251. doi:10.1016/j.jhazmat.2005.10.034 140   68 Cited 86 times in Scopus86 0
Li, Zhen, Du, Ai Jun, Sun, Qiao, Aljada, Muhsen, Cheng, Li Na, Riley, Mark J., Zhu, Zhong Hua, Cheng, Zhen Xiang, Wang, Xiao Lin, Hall, Jeremy, Krausz, Elmars, Qiao, Shi Zhang, Smith, Sean C. and Lu, Gao Qing (Max) (2011) Cobalt-doped cadmium selenide colloidal nanowires. Chemical Communications, 47 43: 11894-11896. doi:10.1039/c1cc13467a 106   10 Cited 11 times in Scopus11 0
Li, Zhen, Lu, Gaoqing (Max), Sun, Qiao, Smith, Sean C. and Zhu, Zhonghua (2013). Colloidal Semiconductor Nanowires. In Tianyou Zhai and Jiannian Yao (Ed.), One-dimensional nanostructures: principles and applications (pp. 65-104) Hoboken, NJ United States: John Wiley and Sons Inc.. doi:10.1002/9781118310342.ch4 48   Cited 0 times in Scopus0 0
Zhu, Z. H., Lu, G. Q. and Smith, S. C. (2004) Comparative study of hydrogen storage in Li- and K-doped carbon materials - theoretically revisited. Carbon, 42 12-13: 2509-2514. doi:10.1016/j.carbon.2004.05.019 104   45 Cited 46 times in Scopus46 0
Zhu, Z. H. and Lu, G. Q. (2004) Comparative study of Li, Na, and K adsorptions on graphite by using ab initio method. Langmuir, 20 24: 10751-10755. doi:10.1021/la040062t 112   31 Cited 34 times in Scopus34 0
Zhu, H. Y., Zhu, Z. H. and Lu, G. Q. (2000) Controlled doping of transition metal cations in alumina pillared clays. Journal of Physical Chemistry B, 104 24: 5674-5680. doi:10.1021/jp994385n 148   19 0
Zhou, Wei, Sunarso, Jaka, Motuzas, Julius, Liang, Fengli, Chen, Zhigang, Ge, Lei, Liu, Shaomin, Julbe, Anne and Zhu, Zhonghua (2011) Deactivation and regeneration of oxygen reduction reactivity on double perovskite Ba2Bi0.1Sc0.2Co1.7O6-x cathode for intermediate-Ttmperature solid oxide fuel cells. Chemistry of Materials, 23 6: 1618-1624. doi:10.1021/cm103534x 89   16 Cited 19 times in Scopus19 0
Wang, Li, Chen, Jiuling, Ge, Lei, Rudolph, Victor and Zhu, Zhonghua (2013) Difference in the cooperative interaction between carbon nanotubes and Ru particles loaded on their internal/external surface. Rsc Advances, 3 31: 12641-12647. doi:10.1039/c3ra41208c 21   1 Cited 1 times in Scopus1 0
Wang, F. Y., Zhu, Z. H. and Rudolph, V. (2009) Diffusion through ordered force fields in nanopores represented by Smoluchowski equation. AIChE Journal, 55 6: 1325-1337. doi:10.1002/aic.11747 70   2 Cited 2 times in Scopus2 0

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