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胡宝山,男,1981年出生,籍贯黑龙江,博士/博士后,副教授。重庆市第四类引进高层次人才。化学工程与技术、物理化学、化学工程领域硕士生导师。 “化工过程强化与反应”国家地方联合工程实验室及“洁净能源与特色资源高效利用化工过程”重庆市重点实验室研究骨干。国家级精品课程资源共享平台《大学化学》课程主讲教师。参编《大学化学》、《大学化学实验》国家精品资源共享课程系列教材。荣获重庆市教学成果奖二等奖(排名四)。

联系方式

hubaoshan@cqu.edu.cn

研究方向

(1)    碳纳米材料(石墨烯和碳纳米管)控制制备和生长机理:研究碳纳米材料在尺寸、形貌,以及螺旋性、晶畴结构、边缘态、缺陷态等宏、微观结构的精密控制生长途径和机制。

(2)    碳纳米材料功能化及其在能源转化和环境检测方面的应用:以能源转化和环境监测为功能导向,构建有机/无机、金属、高分子等材料功能化的复合碳纳米材料,研究材料在能源转化(如电化学、光催化等)和环境监测方面的新效能。

(3)    能源催化和低碳化工:以煤、天然气、biomass、CO2等为原料,开发新型均、异相的具工业化潜力的催化剂体系和工艺过程,高选择性、低成本合成醇、油、酯等重要化工原料或燃料。

代表性论文、专著和专利

[1]      Xue Yang, Baoshan Hu*, Yan Jin, Wenbin Zhao, Zhengtang Luo, Zhisong Lu, Liang Fang, Haibo Ruan. Insight into CO2etching behavior for efficiently nanosizing graphene. Adv. Mater. Interface, 4, 1601065, 2017.

[2]      Baoshan Hu*, Xiaoying He, Rui Wu, Yan Jin, Yawei Bian, Siguo Chen*, Zidong Wei*. Controlling highly dominated N configuration in N-doped graphene as oxygen reduction catalyst. J. Electrochem. Soc., 164, F256-F258, 2017.

[3]      Qian Yang, Baoshan Hu*, Yan Jin, Zhengtang Luo, Flemming Besenbacher, Liang Fang, Lichun Dong*, Mingdong Dong*. Regulating surficial catalysis mechanism of copper metal by manipulating reactive intermediate for growth of homogenous bernal-stacked bilayer graphene. Adv. Mater. Interface, 4, 1700415, 2017.

[4]      Dianmin Zhang, Baoshan Hu*, Dongjie Guan, Zhengtang Luo. Essential roles of defects in pure graphene/Cu2O photocatalyst. Catal.Commun., 76, 7-12, 2016.

[5]      Baoshan Hu*, Yan Jin, Dongjie Guan, Zhengtang Luo, Bo Shang*, Qianrui Fang, Haibo Ruan. H2-dependent carbon dissolution and diffusion-out in graphene chemical vapor deposition growth. J. Phys. Chem. C, 119, 24124-24131, 2015.

[6]      Yan Jin, Baoshan Hu*, Zidong Wei, Zhengtang Luo, Dapeng Wei, Yi Xi*, Ye Zhang, Yunling Liu. Roles of H2 in annealing and growth times of graphene CVD synthesis over copper foil. J. Mater. Chem. A, 2, 16208-16216, 2014.

[7]      Baoshan Hu*, Zidong Wei*, Hiroki Ago, Yan Jin, Meirong Xia, Zhengtang Luo, Qingjiang Pan, Yunling Liu. Effects of substrate and transfer on the CVD-grown graphene over sapphire-induced Cu films.SCIENCE CHINA-Chem., 57, 895-901, 2014.

[8]      Junjun Tian, Baoshan Hu*, Zidong Wei, Yan Jin, Meirong Xia, Qingjiang Pan, Yunling Liu. Surface structure deduced differences of copper foil and film for graphene CVD growth. Appl. Surf. Sci., 300, 73-79, 2014.

[9]      Shuge Dai, Yi Xi*, Chenguo Hu, Baoshan Hu*, Xule Yue, Lu Cheng, Guo Wang. C@KCu7S4 microstructure for solid-state supercapacitors. RSC Adv., 4, 40542-40545, 2014.

[10]  Baoshan Hu, H. Ago*, Y. Ito, M. Tsuji. Epitaxial growth of large-area single-layer graphene over Cu(111)/sapphire by atmospheric pressure CVD. Carbon, 50, 57-65, 2012. (ESI高被引论文)

[11]  Baoshan Hu*, H. Ago, C. M. Orofeo, Y. Ogawa, M. Tsuji. On the nucleation of graphene in chemical vapor deposition. New .J. Chem., 36, 73-76, 2012.

[12]  Y. Ogawa, Baoshan Hu, C.M. Orofeo, M. Tsuji, K. Ikeda, S. Mizuno, H. Hibino, H. Ago*. Domain structure and boundary in single-layer graphene grown on Cu (111) and Cu (100) films. J. Phys. Chem. Lett., 3, 219-226, 2012.

[13]  Baoshan Hu, H. Ago*, N. Yoshihara, M. Tsuji. Effects of water vapor on diameter distribution of SWNTs grown over Fe/MgO-based catalysts. J. Phys. Chem. C, 114, 3850-3856, 2010.

[14]  Baoshan Hu, K. Fujimoto*. Promoting behaviors of alkali compounds in low temperature methanol synthesis over copper-based catalyst. Appl. Catal. B: Environ., 95, 208-216, 2010.

[15]  Baoshan Hu, Y. Yamaguchi, K. Fujimoto*. Low temperature methanol synthesis in alcohol solvent over copper-based catalyst. Catal. Commun., 10, 1620-1624, 2009.

[16]  Baoshan HuK. Fujimoto*. Low temperature methanol synthesis in slurry phase with a hybrid copper-formate system.Catal. Lett., 129, 416-421, 2009.

[17]  Baoshan Hu, K. Fujimoto*. High-performance Cu/MgO-Na catalyst for methanol synthesis via ethyl formate. Appl. Catal. A: Gen., 346, 174-178, 2008.

[18]  Meirong Xia, Wei Ding, Kun Xiong, Li Li, Xueqiang Qi, Siguo Chen, Baoshan Hu, Zidong Wei*. Anchoring Effect of Exfoliated-Montmorillonite-Supported Pd Catalyst for the Oxygen Reduction Reaction. J. Phys. Chem. C, 117, 10581−10588, 2013.

[19]  Xia Meirong, Liu Ying, Li Li, Xiong Kun, Qi Xueqiang, Yang Linjiang, Hu Baoshan, Xue Yun, Wei Zidong*. A DFT study on PtMo resistance to SO2 poisoning. SCIENCE CHINA-CHEMI., 56(7), 1004-1008, 2013.

[20]  Chun Xiong, Zidong Wei*, Baoshan Hu, Siguo Chen, Li Li, Lin Guo, Wei Ding, Xiao Liu, Weijia Ji, Xiaopei Wang. Nitrogen-doped carbon nanotubes as catalysts for oxygen reduction reaction. J. Power Sources, 215, 216-220, 2012.

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