个人简介
教育经历:
2003/09–2006/12, 中国科学院金属研究所,腐蚀与防腐国家重点实验室,材料学,博士;
1990/09–1993/03, 东北大学,表面加工研究所,应用化学,硕士;
1982/09–1985/06, 赣南师范学院,化学化工系。
工作经历:
2014/12–至今,华南理工大学,材料与工程学院,金属系
2007/01–2014/11,中国科学院金属研究所,先进炭材料研究部
1993/04–2003/08,沈阳化工股份有限公司,机动处
近期论文
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[1] Y.Y. Jiang, H.B. Dai, Y.J. Zhong, D.M. Chen, P. Wang*. Complete and rapid conversion of hydrazine monohydrate to hydrogen over supported Ni-Pt nanoparticles on mesoporous ceria for chemical hydrogen storage. Chem. Eur. J. 21 (2015) 15439-15445.
[2] Y.Y. Jiang, H.B. Dai*, Y.J. Zhong, D.M. Chen, M. Zhu, L.X. Sun, P. Wang*. Highly efficient Ni@Ni-Pt/La2O3 catalyst for hydrogen generation from hydrous hydrazine decomposition: Effect of Ni-Pt surface alloying. J. Power Sources 300 (2015) 294-300.
[3] J.J. Zhang, Q. Kang, Z.Q. Yang, H.B. Dai*, D.W. Zhuang, P. Wang*. A cost-effective NiMoB-La(OH)3 catalyst for generation from decomposition of alkaline hydrous hydrazine solution. J. Mater. Chem. A 1 (2013) 11623-11628.
[4] D.W. Zhuang, H.B. Dai*, P. Wang*. Hydrogen generation from solvolysis of sodium borohydride in ethylene glycol-water mixtures over a wide rang of temperature. RSC Adv. 3 (2013) 23810-23815.
[5] H.B. Dai, G.L. Ma, H.J. Xia, P. Wang*. Reaction of aluminum with alkaline sodium stannate solution as a controlled source of hydrogen. Energy Environ. Sci. 4 (2011) 2206-2212.
[6] H.B. Dai,G.L. Ma, X.D. Kang, P. Wang*. Hydrogen generation from couplling reactions of sodium borohydride and aluminum powder with aqueous solution of cobalt chloride. Catal. Today 170 (2011) 50-55.
[7] H.B. Dai, X.D. Kang, P. Wang*. Rutheninum nanoparticles immobilized in montmorillonite used as catalyst for methanolysis of ammonia borane. Int. J. Hydrogen Energy 35 (2010) 10317-10323.
[8] H.B. Dai, Y. Liang, P. Wang*, H.M. Cheng. Amorphous cobalt-borm/nickel foam as an effective catalyst for hydrogen generation from alkaline sodium borohydride solution. J. Power Sources 177 (2008) 17-23.
[9] H.B. Dai, Y. Liang, L.P. Ma, P. Wang*. New insights into catalytic hydrious kinetics of sodium borohydride from Michaelis-Menten model. J. Phys. Chem. C 112 (2008) 15886-15892.
[10] H.B. Dai*, H.X. Li, F.H. Wang. Electroless Ni-P coating preparation of conductive mica powder by a modified activation process. Appl. Surf. Sci. 253 (2006) 2474-2480.