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Liang Changhai's Papers and Works
He has published more than 90 academic papers, including more than 70 in SCI and more than 200 in/kloc-0 cited by SCI. EI included 42 articles; ISTP includes 5 articles; Writing/translating 6 chapters in 5 monographs; He was invited to give more than 20 lectures at research institutions and academic conferences at home and abroad.

Representative journal papers

69. Ni,,, Zhang Bingsen,, Liang Changhai *, A method for rapid preparation of highly dispersed ruthenium/carbon nanotube catalyst by microwave-assisted MOCVD, 20 1 1

68. Yi Yanjiao, Liang Changhai *, A New Method for Preparing MoS2/MCM-4 1 by In-situ Formation and Decomposition of Molecular Precursors, 20 1 1, submitted.

67. Zhang Bingsen, Shao Zhengfeng, Liang Changhai *, Magnetic, Electrochemical and Catalytic Properties of Nickel Silicide Prepared by Direct Silicification, 20 1 1, submitted.

66., Shao Zhengfeng,, Christopher T. Williams, Zhang Xiongfu, Liang Changhai *, Carbon Nanotubes Supported Pt-Ru Core-Shell, Alloys and Monometal Catalysts for the Hydrogenation of Phenylacetylene, 20 1 1, submitted.

65. Yi Yanjiao, Zhang Bingsen, Liang Changhai *, Preparation and characterization of unsupported Ni-Mo-W sulfide catalyst for hydrodesulfurization of dibenzothiophene, 20 1 1, submitted.

64. Zhang Bingsen, Yi Yanjiao, Liang Changhai, *, Study on the structure of unsupported Ni-Mo-W sulfide catalyst, 20 1 1, submitted.

63. Zhao, Guan Jingchao, Christopher T. Williams, Liang Changhai *, Formation Mechanism of Cobalt Silicide on Silica by Chemical Vapor Deposition of Co(SiCl3)(CO)4, 20 1 1, revised.

62. The unsupported Ni-Mo-S catalyst for hydrodesulfurization of dibenzothiophene was prepared by thermal decomposition of Yi Yanjiao, Liang Changhai and ammonium tetramethylthiomolybdate. Today 20 1 1, revised

6 1. Xiao Zihui,,, Christopher T. Williams, Liang Changhai *, Effect of preparation parameters on the structure and catalytic performance of Cu-Cr catalyst by non-alkoxide sol-gel method, Ind. English Chemistry. 20 10,20 10,50,203 1-2039

60. The silicide coating on the surface of, Zhao, Shao Zhengfeng, Williams, Liang Changhai and nickel is used for selective hydrogenation of phenylacetylene. c,20 10, 1 14 (39), 16525- 16533

59. Shao Zhengfeng,,, Liang Changhai *, A simple and controllable method for preparing eggshell palladium catalyst for selective hydrogenation of phenylacetylene, Chemical Abstracts, 20 10/0,2, 1555- 1558.

58. Zhang, Shao Zhengfeng, He Demin, *, Liang Changhai *, Study on Hydrogenation Activity and Sulfur Tolerance of Naphthalene on Pd, Pt and Pd-Pt Catalysts, Journal of Physical Chemistry, 20 10/0,26,2691-2698.

57. Hydrogenation of Naphthalene on nickel phosphide Supported by Zhao,,,,, He Demin, Hu Haoquan, Liang Changhai and Silica. Fuel, 20 10, 24, 3796-3803

56. Zhang Qi, Liu, Liang Changhai *, He Demin, *, Effects of H2S and Quinoline on Indole Hydrodenitrification over NiWS/γ-Al2O3 Catalyst, Fuel Chemistry, 20 10, in press.

55. Ding Ling, Liang Changhai, Microwave-assisted preparation of Mo2C/CNTs nanocomposites as efficient carriers of electrocatalyst for oxygen reduction reaction. Surfing. Sci。 Qatar. , 20 10, 175, 275-278

54. Guan Jingchao, Zhao, Liang Changhai *, Study on preparation of highly dispersed iron silicide particles hydrogenation catalyst by chemical vapor deposition of Fe(CO)4(SiCl3)2. Surfing. Sci。 & Qatar. , 20 10, 175, 259-262

53. Zhao, Shao Zhengfeng, Liang Changhai, studied a new method to synthesize nickel silicide catalyst with high selectivity. Surfing. Sci。 Qatar. , 20 10, 175, 77-84

52. Liang Changhai *, Ding Ling,,,, Wang, and, Nanostructured WCx/CNTs as an efficient carrier of low Pt-loaded electrocatalyst for oxygen reduction reaction, energy and environment. Sci。 , 20 10, 3, 1 12 1- 1 127

5 1. Microwave-assisted preparation of Mo2C/CNTs nanocomposites as efficient electrocatalyst carriers for oxygen reduction reaction. English Chemistry. Resolution, 20 10, 49, 4 169-4 174

50. Olumide Winchoby, Liang Changhai, *, Pt-Pd nanoparticles loaded on carbon nanotubes for formic acid oxidation, Acta Electrochemistry, 20 10/0,55 (13), 42 17-422.

49. Yan Jiao-yi, Qiu Jie-shan, Liang Chang-hai *, Preparation of unsupported binary and ternary sulfides with high surface area controlled by tetraalkylammonium sulfate, Journal of Physical Chemistry. Solid, 20 10/0,71,642-646

48. Zhao,,, Guan Jingchao, Liang Changhai, Co(SiCl3)(CO) 4 precursor deposited by chemical vapor deposition, cobalt silicide nanoparticles in mesoporous silica as an effective naphthalene hydrogenation catalyst, J. Phys. Chem .c, 20 10,/kloc-0.

47. Xiao Zihui, A. van Bokhoven, Liang Changhai *, A Non-alkoxide Sol-Gel Method of Cu-Cr Catalyst with High Activity and Selectivity for Hydrogenation of Glycerol, Acta Materials Science. Chemistry. , 20 10, 20, 755-760

46. Luan, *, He Demin, Liang Changhai, Hydrogenation and Denitrification of Quinoline and Its Intermediates on NiW/Al2O3 Sulfide in the Presence and Absence of H2S, Asia-Pacific Journal of Chemistry. English , 2009, 4, 704-7 10

45. Zhang Qiumin *, Guan Jun, He Demin, Hu Haoquan, Liang Changhai *, Hydrogenation of Naphthalene on nickel phosphide Supported by Silica, Asia-Pacific Journal of Chemistry. English , 2009, 4, 574-580

44.Changhai Liang*, Wei Xia, Maurits van den Berg, Wang, Hamideh Soltani-Ahmadi, Oliver Schlüter, Roland A. Fischer and Martin Muhler*, Pd nanoparticles/functionalized CNF composites were synthesized by two-step chemical vapor deposition of Pd (allyl) (Cp) precursors and their catalytic properties, chemistry. Mater ,2009, 2 1( 12), 2360-2366

43. Wang Tonghua, Tan Suxia, Liang Changhai *, Preparation and Characterization of Activated Wood Activated Carbon by Zinc Chloride Induced by Microwave, Carbon, 2009,47, 1880- 1883.

42. Wang Tonghua, Guo, Liang Changhai, Liu Shili,,, Qiu Jieshan, controlled synthesis of high-performance carbon /T molecular sieve composite membrane materials for gas separation, micro. & medium view. Mater 2009, 120, 460-466

4 1. Liang Changhai *, Zhao,,, Luo Puling, CoSi silica carrier particles as highly active and selective catalysts for naphthalene hydrogenation, chemistry. Commun。 , 2009, 2047-2049

40. Microwave-assisted preparation of nanostructured tungsten carbide on carbon nanotubes and its hydrazine decomposition performance. English Chemistry. Resolution 2009, para. 48(6), paras. 3244-3248.

39. Liang Changhai *, Ma Zhiqiang, Qiu Jieshan, Template preparation of Cu-Cr catalyst with high activity and high specific surface area, catalyst. Ritter. , 2009, 130, 169- 176

38. Ma Chongle, Jin Xin, Ding Ling, Zhang Qiumin, Qiu Jieshan, Liang Changhai *, Preparation of molybdenum disulfide with high specific surface area and its catalytic performance for selective hydrogenation of quinoline, chinese journal of catalysis, 2009, 30 (1), 78-82.

37. Liang Changhai *, Ma Zhiqiang, Lin Hongyan, Qiu Jieshan, Wei Boke, Francen and others, Structure and catalytic performance of nano CexFe 1-xO2 solid solution prepared by template method, Journal of Materials Science. Chemistry. , 2009, 19, 14 17- 1424

Chapters in textbooks and monographs

6. Liang Changhai, diligent, editor-in-chief of Ammonia Synthetic Chemistry and Modern Catalytic Chemistry. ), Science Press, 20 10, Chapter 3.

5. Liang Changhai, "Kinetics of Heterogeneous Catalytic Reaction", Modern Catalytic Research Methods (edited by Ha and Luo), Science Press, 2009, chapter 10, pp429-488.

4. Liang Changhai *, Preparation and Characterization of Nanostructured Carbides on Carbon Materials by Carbothermic Hydrogen Reduction, Focus on Nanomaterials Research, Chapter 1, Xinxing Science Press, 2006, PP1-kloc-0/4.

3. Diligence, Liang Changhai, "Application of infrared spectroscopy in heterogeneous catalysis", Research methods of solid catalysts (edited by Diligence), Science Press, 2004, chapter 7, pp320-385.

2. Liang Changhai, Li Wenzhen, Qin, A Brief History of Catalytic Development (translated from No.67, the first issue of Catalytic Express), Research Methods of Solid Catalysts (edited by Qin), Science Press, 2004, appendix, pp860-908.

1. Liang Changhai *, Li Zhonglai, Qiu Jieshan,, Wei,,, Graphite nanowires: an excellent carrier of ruthenium-barium catalyst for ammonia synthesis in nano-catalytic technology (editor. B. Zhou, S. Hermans and G. A. Somorjai), Kluwer Academic/Plenary Press, 2003, Volume II, Chapter 25, pp. 543-555.