
姓名:张羊换
职称:教授
电子邮箱:zhangyh59@sina.com
个人简介:
1956年3月出生,博士,二级教授,博士生导师。长期从事新能源材料的研究与应用开发,主持和完成包括“国家863”项目、国家自然科学基金、工业和信息化部专项基金等项目十余项。在国际著名期刊上发表第一作者和通讯作者SCI收录论文700余篇,被国内外氢能领域专家引用超过12000次,4次入选高被引论文作者,2次被镁合金领域顶刊Journal of Magnesium and Alloys评为杰出贡献作者。获授权发明专利58项,出版贮氢材料英文专著5部。获内蒙古自治区自然科学二等奖2项。指导硕士、博士研究生128人。应邀成为国际电化学学会会员(IES),十余家国际著名期刊的特约审稿人。参加在美国、日本、德国、韩国等国家举行的国际贮氢材料会议20余次,并作特邀学术报告。2008年入选美国“Who’s Who in the World”,同年入选英国“2000 Outstanding Scientists”。2023年再次入选全球前2%顶尖科学家影响力排行榜。
主讲课程:
稀土功能材料、新能源材料与器件导论
研究方向:
稀土贮氢材料。用真空快淬技术制备出具有非晶、纳米晶结构的Mg2Ni-型贮氢合金,合金的低温吸放氢性能良好,成果受到国内外贮氢领域的高度关注。近年来,致力于车载燃料电池用Mg基贮氢材料的研究与开发,取得了重要进展。开发的新型贮氢材料应用到风能、太阳能等间歇性能源系统中,实现了能量输出的稳定性。
教育背景:
1978/09-1982/06,大连理工大学大学,金属材料及热处理,学士
1987/09-1990/06,东北大学,金属材料专业,硕士
2000/09-2004/12,钢铁研究总院,材料学专业,博士
工作简历:
1985年-1992年,包头钢铁学院冶金系材料学专业从事教学与科研工作
1992年-2011年,伟德betvlctor体育官网材料与冶金学院从事教学与科研工作
2011年-2022年3月,伟德betvlctor体育官网,内蒙古自治区白云鄂博矿多金属资源综合利用重点实验室
2025/01-至今,bevitor伟德官网网址从事教学与科研工作
部分承担项目:
(1) 国家863计划课题“特种工艺制备燃料电池用高容量纳米晶/非晶镁基复合储氢材料(2006AA05Z132)”,2006.12-2008.12
(2) 国家自然科学基金“快淬非晶态A2B型Mg基电极合金的晶化过程与电化学循环稳定性的关联研究”,2009.01-2011.12
(3) 国家863重大专项课题“稀土新型储氢材料关键制备技术与应用开发(2011AA03A408)”,2011.01-2013.12
(4) 国家自然科学基金“不同凝固条件下稀土镁基AB2型贮氢合金多相复合效应研究”,2012.01-2015.12
(5) 国家自然科学基金“多元稀土及金属硫化物掺杂快淬-球磨纳米晶/非晶镁基贮氢合金超细颗粒的吸放氢动力学及机理研究”,2014.01-2017.12
(6) 国家自然科学基金“稀土及晶体缺陷密度与TiFe系合金活化及吸放氢动力学的关联及机理研究”,2018.01-2021.12
(7) 国家自然科学基金“石墨烯催化稀土—镁—铝基复合储氢材料动力学及热力学研究”,2019.01-2022.12
(8) 内蒙古自治区自然科学基金重大项目“燃料电池用快淬纳米晶/非晶RE-Mg基合金的气态吸放氢动力学及机理研究(2011ZD10)”,2011.01-2013.12
个人荣誉:
(1)燃料电池用快淬纳米晶/非晶RE-Mg基合金的气态吸放氢动力学及机理研究,内蒙古自治区人民政府,内蒙古自治区自然科学三等奖,2017年,排名第一
(2)快淬高容量新型La-Mg-Ni系贮氢合金循环稳定性研究,内蒙古自治区人民政府,内蒙古自治区自然科学二等奖,2012年,排名第一
(3)特种工艺制备低成本、高性能稀土系无钴AB5型贮氢合金,内蒙古自治区人民政府,内蒙古自治区自然科学二等奖,2009年,排名第一
主要业绩:
代表性学术论文
(1) Yanghuan Zhang*, Xin Wei, Wei Zhang, et al, Catalytic effect comparison of TiO2 and La2O3 on hydrogen storage thermodynamics and kinetics of the as-milled La-Sm-Mg-Ni-based alloy. Journal of Magnesium and Alloys, 9 (2021) 2063-2077.
(2) Dongsheng Zhou, Chunling Zheng, Yanghuan Zhang*, et al, An overview of RE-Mg-based alloys for hydrogen storage: Structure, properties, progresses and perspectives. Journal of Magnesium and Alloys, 13 (2025) 41-70.
(3) Hongwei Shang, Wei Zhang, Xin Wei, Yaqin Li, Zeming Yuan, Jun Li, Yanghuan Zhang*, Improving hydrogen storage thermodynamics and kinetics of Ce-Mg-Ni-based alloy by mechanical milling with TiF3. Journal of Magnesium and Alloys, 12 (2024) 1593-1607.
(4) Yanghuan Zhang*, Pengpeng Wang, Zhonghui Hou, et al, Structure and hydrogen storage characteristics of as-spun Mg-Y-Ni-Cu alloys. Journal of Materials Science & Technology, 35 (2019) 1727-1734.
(5) Yanghuan Zhang*, Pengpeng Wang, Wei Zhang, et al, Structure and electrochemical hydrogen storage behaviors of Mg-Ce-Ni-Al-based alloys prepared by mechanical milling. Journal of Rare Earths, 38 (2020) 1093-1102.
(6) Yanghuan Zhang*, Xin Wei, Wei Zhang, et al, Effect of milling duration on hydrogen storage thermodynamics and kinetics of Mg-based alloy. International Journal of Hydrogen Energy, 45 (2020) 33832-33845.
(7) Yanghuan Zhang*, Wei Zhang, Xin Wei, et al, Catalytic effects of TiO2 on hydrogen storage thermodynamics and kinetics of the as-milled Mg-based alloy. Materials Characterization 176 (2021) 111118.
(8) Yanghuan Zhang*, Hongwei Shang, Jinliang Gao, et al, Effect of Sm content on activation capability and hydrogen storage performances of TiFe alloy. International Journal of Hydrogen Energy, 46 (2021) 24517-24530.
(9) Yanghuan Zhang*, Hanfeng Sun, Wei Zhang, et al, Improvement of substituting La with Ce on hydrogen storage thermodynamics and kinetics of Mg-based alloys. International Journal of Hydrogen Energy, 46 (2021) 28719-28733.
(10) Yanghuan Zhang*, Jinliang Gao, Zeming Yuan, et al, Effect of graphite (GR) content on electrochemical hydrogen storage performances of nanocrystalline and amorphous La9Ce1Mg80Ni5-Ni-GR composites synthesized by mechanical milling. International Journal of Hydrogen Energy, 45 (2020) 29023-29033.
(11) Yanghuan Zhang*, Wei Zhang, Jinliang Gao, et al, Improved hydrogen storage kinetics of Mg-based alloys by substituting La with Sm. International Journal of Hydrogen Energy, 45 (2020) 21588-21599.
(12) Yanghuan Zhang*, Wei Zhang, Zeming Yuan, et al, Hydrogen storage property of as-milled La7RE3Mg80Ni10 (RE = Sm, Ce) alloys. International Journal of Hydrogen Energy, 45 (2020) 28163-28174.
(13) Yanghuan Zhang*, Xin Wei, Zeming Yuan, et al, Hydrogen storage thermodynamics and dynamics of Mg-Y-Ni-Cu based alloys synthesized by melt spinning. Journal of Physics and Chemistry of Solids, 138 (2020) 109252.
(14) Yanghuan Zhang*, Yanquan Ji, Wei Zhang, et al, Electrochemical hydrogen storage behaviors of as-milled Mg-Ce-Ni-Al-based alloys applied to Ni-MH battery. Applied Surface Science, 494 (2019) 170-178.
(15) Yanghuan Zhang*, Wei Zhang, et al, Effects of milling duration on electrochemical hydrogen storage behavior of as-milled Mg-Ce-Ni-Al-based alloys for use in Ni-metal hydride batteries. Journal of Physics and Chemistry of Solids, 133 (2019) 178-186.
(16) Yanghuan Zhang*, Xufeng Li, Ying Cai, et al, Improved hydrogen storage performances of Mg-Y-Ni-Cu alloys by melt spinning. Renewable Energy, 138 (2019) 263-271.
(17) Yanghuan Zhang*, Yaqin Li, Wei Zhang, et al, Gaseous hydrogen storage properties of Mg-Y-Ni-Cu alloys prepared by melt spinning. Journal of Rare Earths, 37 (2019) 750-759.
(18) Yanghuan Zhang*, Wei Zhang, Zhonghui Hou, et al, Study on the gaseous and electrochemical hydrogen storage properties of as-milled Ce-Mg-Ni-based alloys. International Journal of Hydrogen Energy, 44 (2019) 29224-29234.
(19) Yanghuan Zhang*, Wei Zhang, Wengang Bu, et al, Improved hydrogen storage dynamics of amorphous and nanocrystalline Ce-Mg-Ni-based CeMg12-type alloys synthesized by ball milling. Renewable Energy, 132 (2019) 167-175.
(20) Yaqin Li, Yanghuan Zhang*, Hongwei Shang, et al, Hydrogen storage characteristics of Ti1.04Fe0.7Ni0.1Zr0.1Mn0.1Pr0.06 alloy treated by ball milling. Journal of Alloys and Compounds, 930 (2023) 167024.
(21) Hongwei Shang, Yanghuan Zhang*, Jinliang Gao, et al, Characteristics of electrochemical hydrogen storage using Ti–Fe based alloys prepared by ball milling, International Journal of Hydrogen Energy, 47 (2022) 1036-1047.
(22) Hongwei Shang, Yaqin Li, Yanghuan Zhang*, et al, Ti-Fe based alloys prepared by ball milling for electrochemical hydrogen storage. International Journal of Hydrogen Energy, 48 (2023) 28091-28102.
(23) Hongwei Shang, Yanghuan Zhang*, Yaqin Li, et al, Effects of adding over-stoichiometrical Ti and substituting Fe with Mn partly on structure and hydrogen storage performances of TiFe alloy. Renewable Energy, 135 (2019) 1481-1498.
(24) Yanghuan Zhang*, Hanfeng Sun, Wei Zhang, et al, A comparison study of hydrogen storage performances of as-cast La10-xRExMg80Ni10 (x = 0 or 3; RE = Sm or Ce) alloys. Journal of Alloys and Compounds, 884 (2021) 160905.
部分授权专利
(1) 张羊换,周东升,盛鹏,等,一种易活化的Ti-Fe-Y-Mn-Zr-Co-Zn基贮氢合金及其制备方法,2025-03-11,中国,CN202411706126.0
(2) 张羊换,张欣,盛鹏,等,一种易活化的Ti-Fe-Gd-Mn-Zr-Zn-V基储氢合金及其制备方法,2024-11-01,中国,CN202410941146.X
(3) 张羊换,张欣,盛鹏,等,一种Ti-Fe-RE-Mn-Zr-Bi基储氢合金及其制备方法,2024-04-05,中国,CN202311762330.X
(4) 张羊换,张欣,盛鹏,等,一种储氢合金及其制备方法,2024-03-22,中国,CN202311662845.2
(5) 张羊换,孙涵丰,张欣,等,一种高容量Mg-Y-Al-Sn基固态贮氢复合材料及其制备方法,2024-01-26,CN202311366616.6