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[1] Li, Xiaona,Zheng, Yuehong,Liu, Yubo,Huang, Hao,Wang, Qing,Dong, Chuang,Li, Zhumin.Effect of dual local structures of amorphous Fe-Si films on the performance of anode of lithium-ion batteries[J],MATERIALS CHEMISTRY AND PHYSICS,2020,243
[2] Yang, Yingying,Chen, Jian,Ran, Yuzhu,Wang, Xudong,Huang, Hao,Yao, Man.Intrinsic factors affecting the catalytic activity of doped TiC as potential cathode in Li-O-2 batteries[J],APPLIED SURFACE SCIENCE,2019,494:983-988
[3] Camacho, Ramon A. Paredes,Huang, Hao,Wu, Ai-Min,Jin, Xiao-Zhe,Dong, Xu-Feng,Li, Xiao-Na.Effective carbon constraint of MnS nanoparticles as high-performance anode of lithium-ion batteries[J],JOURNAL OF POWER SOURCES,2019,437
[4] Zhu, Wanning,Dong, Xufeng,Huang, Hao,Qi, Min.Iron nanoparticles-based magnetorheological fluids: A balance between MR effect and sedimentation stability[J],JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS,2019,491
[5] Suo, N.,Ren, Y.,Huang, H.,Wu, A. M.,Zhang, G. F..Effect of particle size of carbon catalyst on oxygen reduction activity for fuel cell applications[A],2019,504(1)
[6] 肖雅丹,靳晓哲,黄昊,吴爱民,高嵩,刘佳.MoP 纳米粒子锂离子电池负极材料的制备及其电化学性能[J],材料研究学报,2019,33(1):65-71
[7] Yang, Yingying,Wang, Yuelin,Yao, Man,Wang, Xudong,Huang, Hao.First-principles study of rocksalt early transition-metal carbides as potential catalysts for Li-O-2 batteries[J],PHYSICAL CHEMISTRY CHEMICAL PHYSICS,2018,20(48):30231-30238
[8] 薛晓晚,杨影影,秦圆,王旭东,黄昊,姚曼,吴爱民.第一性原理计算绝缘体-金属转变临界掺杂浓度:Co重掺杂Si体系[J],原子与分子物理学报,2018,36(2):342-348
[9] Yang, Yingying,Qin, Yuan,Xue, Xiaowan,Wang, Xudong,Yao, Man,Huang, Hao.Intrinsic Properties Affecting the Catalytic Activity of 3d Transition-Metal Carbides in Li-O-2 Battery[J],JOURNAL OF PHYSICAL CHEMISTRY C,2018,122(31):17812-17819
[10] Yang, Yingying,Xue, Xiaowan,Qin, Yuan,Wang, Xudong,Yao, Man,Qin, Zhenhai,Huang, Hao.Oxygen Evolution Reaction on Pristine and Oxidized TiC (100) Surface in Li-O-2 Battery[J],JOURNAL OF PHYSICAL CHEMISTRY C,2018,122(24):12665-12672
[11] Zhu, Shengming,Dong, Xufeng,Gao, Song,Jin, Xiaozhe,Huang, Hao,Qi, Min.Uniformly Grafting SnO2 Nanoparticles on Ionic Liquid Reduced Graphene Oxide Sheets for High Lithium Storage[J],ADVANCED MATERIALS INTERFACES,2018,5(9)
[12] Suo, Ni,Huang, Hao,Wu, Aimin,Cao, Guozhong,Hou, Xiaoduo,Zhang, Guifeng.Porous boron doped diamonds as metal-free catalysts for the oxygen reduction reaction in alkaline solution[J],APPLIED SURFACE SCIENCE,2018,439:329-335
[13] Huang, H.,Gao, Y.,Fang, C. F.,Wu, A. M.,Dong, X. L.,Kim, B. S.,Byun, J. H.,Zhang, G. F.,Zhou, D. Y..Spray granulation of Fe and C nanoparticles and their impedance match for microwave absorption[J],JOURNAL OF MATERIALS SCIENCE TECHNOLOGY,2018,34(3):496-502
[14] 黄昊,吴爱民.Electrochemical Behavior of MoP Nanoparticles as the Anode for Lithium-ion Batteries[A],2018[15] 董旭峰,黄昊,齐民.Uniformly Grafting SnO 2 Nanoparticles on Ionic Liquid Reduced Graphene Oxide Sheets for High Lithium Storage[J],Advanced Materials Interfaces,2018
[16] 董星龙,周雷,赵阳,黄昊,甘小荣,薛方红,于洪涛,全燮.Characterization and formation mechanism of the nanodiamond synthesized by a high energy arc-plasma[J],Phys. Status Solidi A,2018,1800704:1-7
[17] 秦圆,杨影影,姚曼,薛晓晚,王旭东,黄昊,陈婷,王东,万立骏.Self-assembly of an oligo(p-phenylenevinylene)-based molecule on HOPG surface: Insights from multi-scale simulation and STM observation[J],RSC Advances,2018,56(3):31868-31873
[18] 杨影影,王月霖,姚曼,王旭东,黄昊.First-principles study of rocksalt early transition-metal carbides as potential catalysts for Li-O2 batteries[J],Physical Chemistry Chemical Physics,2018,20:30231-30238
[19] Qin, Yuan,Yang, Yingying,Yao, Man,Xue, Xiaowan,Wang, Xudong,Huang, Hao,Chen, Ting,Wang, Dong,Wan, Lijun.Self-assembly of an oligo(p-phenylenevinylene)-based molecule on an HOPG surface: insights from multi-scale simulation and STM observation[J],RSC ADVANCES,2018,8(56):31868-31873
[20] 房灿峰,吴爱民,黄昊,张路,郝海.“卓越工程师教育培养计划”中文献研讨互动教学模式达成与实践[J],科学中国人,2017,23:163-164