基本信息

胡凤霞  女  博导  中国科学院物理研究所
电子邮件: fxhu@iphy.ac.cn
通信地址: 北京市海淀区中关村南三街8号 中科院物理所磁学M03组
邮政编码: 100190


研究员,专业:凝聚态物理、材料学
2002
8月获中科院物理研究所理学博士学位,后在香港大学从事博士后研究,2006 年作为引进国外杰出人才计划到中国科学院物理所磁学国家重点实验室工作。曾任磁学国家重点实验室主任。现任M03组课题组长。兼任中国稀土学会磁制冷专业委员会秘书长、副主任,中国晶体学会理事。

研究领域

主要研究方向:

1)磁性材料相变调控:磁热、压热和耦合热效应机理研究
2)氧化物自旋电子学:复杂氧化物界面轨道和自旋调控研究

 

过去的主要工作及获得的成果:
(1)
发现了新型 La(Fe,Si)13 基大磁热效应材料并获得了核心发明专利,阐明了巨大磁热效应源自晶格负热膨胀和巡游电子变磁转变行为,单篇论文最高引用 1050 余次,是国际上80 多年来有关磁热效应论文被引用次数最高的7 篇论文之一。自发现以来,国内外已有200 多个实验室跟随研究,该材料目前已成为国际上公认的最具应用前景的新型磁制冷材料。
(2)
利用应变记忆效应成功实现了FeRh巨磁热薄膜滞后损耗的非易失性调控、解决了磁制冷样机设计中遇到的双场循环的瓶颈问题。
(3)
利用非公度螺旋磁结构引入的晶格畸变和织构效应在MnFeNiGe材料体系实现了远大于晶格本征贡献的超大负热膨胀(NTE),为探索NTE材料提供了新策略。
(4)
首次在复杂氧化物中成功实现了B位阳离子和氧离子协同迁移驱动的连续拓扑相变,其诱发的B位离子3d电子轨道占据和自旋态重构导致磁电性质发生显著改变,为拓展离子介导的拓扑相变的综合应用提供了新途径。

J. Am. Chem. Soc., Adv. Mater., Nano energy, Mater. Horiz., Acta Mater., Chem. Mater., Phys.Rev.Lett./Phys.Rev.B, Appl.Phys.Lett./APL mater.等刊物发表论文160余篇,他人引用5600余次,第一作者单篇最高引用1050余次。获授权发明专利30余项(含美、日、欧4项国际专利授权)。

2012年度国家自然科学二等奖(2)2014年度陈嘉庚技术科学奖(2)2011年度北京市科学技术奖一等奖(2)

 

目前的研究课题及展望:

1)研究磁晶耦合体系自旋序、晶格序等关联量子序演变对磁热、压热、弹热以及耦合热效应的影响机制,相变调控和反常热膨胀,寻找多场调控增强热效应途径,探索发展新型高效全固态制冷器件。
2)通过选择性强化特定自由度间的关联, 研究强量子限域下复杂氧化物自旋基态、激发态和输运动力学行为以及界面电荷/自旋/轨道重构等量子演生现象,并研究其对外场的响应规律。

正在承担:国家自然科学基金委重点项目2项、面上项目1项;国家重点基础研究发展计划(973) 2项;科学院前沿课题及国际合作项目。

 

培养研究生情况:
毕业博士研究生10名。目前,在读硕博连读、博士研究生 7 名。拟每年招收 2 名硕博连读生或者博士生。

联系方式:
办公室电话:010-82649233
Email: fxhu@iphy.ac.cn

招生信息

毕业博士研究生10名。目前,在读硕博连读、博士研究生 7 名。拟每年招收 2 名硕博连读生或者博士生。

招生专业
070205-凝聚态物理
080502-材料学
招生方向
磁性材料相变调控:磁热、压热和耦合热效应机理研究
氧化物自旋电子学:复杂氧化物界面轨道和自旋调控研究

教育背景

2002-12--2006-08   香港大学   博士后
1999-09--2002-08   中国科学院物理研究所 磁学国家重点实验室   博士生

工作经历

   
工作简历
2014-06~现在, 中国科学院物理研究所 磁学国家重点实验室, 主任
2006-08~现在, 中国科学院物理研究所 磁学国家重点实验室, 副研究员、研究员

专利与奖励

   
奖励信息
(1) 陈嘉庚技术科学奖, , 国家级, 2014
(2) 国家自然科学奖, 二等奖, 国家级, 2012
(3) 北京市科学技术奖, 一等奖, 省级, 2010
专利成果
( 1 ) 半导体场效应结构、及其制备方法和用途, 发明, 2014, 第 1 作者, 专利号: CN102544093B
( 2 ) 稀土提纯中间产物制备的La(Fe,Si)13基磁性材料, 制备方法和用途, 发明, 2012, 第 2 作者, 专利号: CN2012102404439
( 3 ) 一种具有大熵变的MnCoGe基铁磁马氏体相变材料及制备方法和用途, 发明, 2012, 第 2 作者, 专利号: CN 2012103697992
( 4 ) 具有可调节电荷轨道有序特性的锰氧化物薄膜, 发明, 2014, 第 2 作者, 专利号: CN102101793A
( 5 ) 一种稀土-镍材料及其制备方法和用途, 发明, 2014, 第 4 作者, 专利号: CN102864356B
( 6 ) Bonded La(Fe,Si)13-based magnetocaloric materials, preparation method and uses thereof, 发明, 2012, 第 1 作者, 专利号: PCT/CN2012/075662
( 7 ) La(Fe,Si)13-based first-order magnetocaloric materials with small hysteresis loss and its preparation method and uses thereof, 发明, 2012, 第 1 作者, 专利号: PCT/CN2012/083420
( 8 ) 一种负膨胀材料及其制备方法和用途, 发明, 2014, 第 1 作者, 专利号: 2014105917144
( 9 ) 一种具有巨压热效应的MnCoGe基磁性材料及其制备方法和用途, 发明, 2014, 第 2 作者, 专利号: 2014101108070
( 10 ) 保持MnNiGe基材料的强磁共结构相变的方法及应用, 发明, 2014, 第 2 作者, 专利号: 201410527728X
( 11 ) 一种镧铈基永磁材料及其制备方法和应用, 发明, 2014, 第 3 作者, 专利号: 2014103414155
( 12 ) 由工业纯混合稀土制备的稀土铁硼材料及其制备方法和应用, 发明, 2014, 第 4 作者, 专利号: 2014103318660
( 13 ) 具有电荷轨道有序转变及各向异性场致电阻效应的异质结构材料及其制备方法和用途, 发明, 2013, 第 2 作者, 专利号: 2013105344190
( 14 ) 一种可获得具有正的场致电阻效应的异质结构、制备方法和用途, 发明, 2013, 第 2 作者, 专利号: 2013105295014
( 15 ) 一种可实现磁/结构相变耦合具有大磁热效应的MnCoGe1-x磁制冷材料及制备方法, 发明, 2013, 第 2 作者, 专利号: 201310549283.0
( 16 ) 小滞后损耗的一级相变La(Fe,Si)13基磁热效应材料及其制备方法和用途, 发明, 2014, 第 2 作者, 专利号: CN103059815B
( 17 ) 以高Ce工业纯混合稀土为原料制备的La(Fe,Si)13基磁制冷材料及其制备方法和用途, 发明, 2012, 第 2 作者, 专利号: CN 2012102395590
( 18 ) 粘结La(Fe,Si)13基磁热效应材料及其制备方法和用途, 发明, 2011, 第 1 作者, 专利号: 201110374158.1
( 19 ) 偏置电场调制的氧化物半导体异质结构、其制备方法和装置, 发明, 2011, 第 1 作者, 专利号: 201110009450.3
( 20 ) 氢化NiMn基合金磁制冷材料、其制备方法和用途, 发明, 2012, 第 1 作者, 专利号: ZL200910086648.4
( 21 ) 调节Ni-Co-Mn-In合金的马氏相变和磁电阻效应的方法, 发明, 2013, 第 1 作者, 专利号: 200910242650.6
( 22 ) 半导体异质结构、其制备方法及半导体装置, 发明, 2012, 第 1 作者, 专利号: 200910079249.5
( 23 ) 一种磁制冷材料及其制备方法和用途, 发明, 2014, 第 4 作者, 专利号: CN102465225B
( 24 ) La(Fe,Si)13-based magnetic refrigerants prepared based on industrial mischmetal, preparation method and uses thereof, 发明, 2012, 第 2 作者, 专利号: PCT/CN2012/078609

出版信息

   
发表论文
[1] Liu, Yao, Ye, Fan, Zhou, Houbo, Song, Xin, Jia, Wentao, Xiao, Andong, Wang, Jing, Dai, Sheng, Ma, Tianyu, Hu, Fengxia, Shen, Baogen. Sensitive electric field control of first-order phase transition in epitaxial multiferroic heterostructures. ACTA MATERIALIA 237 (2022) 118145[J]. 2022, 237: http://dx.doi.org/10.1016/j.actamat.2022.118145.
[2] 胡凤霞. Colossal barocaloric effect exploiting amorphous high entropy in solidified polyethylene glycol. NPG Asia Mater. 12 (2022) 96 (1-13).[J]. 2022, 12: 96-, [3] Kaiming Qiao, Fengxia Hu, Hu Zhang, Ziyuan Yu, Xianliang Liu, Yuhang Liang, Yi Long, Jing Wang, Jirong Sun, Tongyun Zhao, Baogen Shen. Unipolar electric-field-controlled nonvolatile multistate magnetic memory in FeRh/(001)PMN-PT heterostructures over a broad temperature span. Science China Physics, Mechanics & Astronomy, 65 (2022) 217511[J]. 2022, 65(1): 78-83, http://lib.cqvip.com/Qikan/Article/Detail?id=7106424795.
[4] Gao, Yihong, Liu, Hongxiong, Hu, Fengxia, Song, Hongyan, Zhang, Hao, Hao, Jiazheng, Liu, Xingzheng, Yu, Zibing, Shen, Feiran, Wang, Yangxin, Zhou, Houbo, Wang, Bingjie, Tian, Zhengying, Lin, Yuan, Zhang, Cheng, Yin, Zhuo, Wang, Jing, Chen, Yunzhong, Li, Yunliang, Song, Youting, Shi, Youguo, Zhao, Tongyun, Sun, Jirong, Huang, Qingzhen, Shen, Baogen. Reversible colossal barocaloric effect dominated by disordering of organic chains in (CH3-(CH2)(n-1)-NH3)(2)MnCl4 single crystals. NPG ASIA MATERIALS 14 (2022) 34 (1-12).[J]. 2022, 14(1): http://dx.doi.org/10.1038/s41427-022-00378-4.
[5] Qiao, Kaiming, Liang, Yuhang, Zhang, Hu, Hu, Fengxia, Yu, Ziyuan, Long, Yi, Wang, Jing, Sun, Jirong, Zhao, Tongyun, Shen, Baogen. Manipulation of magnetocaloric effect in FeRh films by epitaxial growth. JOURNAL OF ALLOYS AND COMPOUNDS , 907 (2022) 164574[J]. 2022, 907: http://dx.doi.org/10.1016/j.jallcom.2022.164574.
[6] Chen, Xiaobing, Zhang, Jine, Liu, Banggui, Hu, Fengxia, Shen, Baogen, Sun, Jirong. Two-dimensional conducting states in infinite-layer oxide/perovskite oxide hetero-structures. JOURNAL OF PHYSICS-CONDENSED MATTER[J]. 2022, 34(3): [7] 胡凤霞. , Enhanced performance of ΔTad upon frequent alternating magnetic field in FeRh alloys by introducing second phases. ACS Appl. Mater. Interfaces, 14 (2022) 18293-18301[J]. 2022, 14: 18293-18301, [8] 胡凤霞. Compressive-strain-facilitated fast oxygen migration with reversible topotactic transformation in La0.5Sr0.5CoOx via all-solid-state electrolyte gating. ACS Nano, 16, 14632 (2022).[J]. 2022, 16: 14632-, [9] Qiao, Kaiming, Zuo, Shulan, Zhang, Hu, Hu, Fengxia, Yu, Ziyuan, Weng, Fan, Liang, Yuhang, Zhou, Houbo, Long, Yi, Wang, Jing, Sun, Jirong, Zhao, Tongyun, Shen, Baogen. Electric field control of the reversible magnetocaloric effect in strain-mediated Ni37.5Co12.5 Mn35Ti15/PMN-PT composite. SCRIPTA MATERIALIA[J]. 2021, 204: http://dx.doi.org/10.1016/j.scriptamat.2021.114141.
[10] Zhang, Zhao, Zhou, Houbo, Mole, Richard, Yu, Chenyang, Zhang, Zhe, Zhao, Xinguo, Ren, Weijun, Yu, Dehong, Li, Bing, Hu, Fengxia, Shen, Baogen, Zhang, Zhidong. Intense ferromagnetic fluctuations preceding magnetoelastic first-order transitions in giant magnetocaloric LaFe13-xSix. PHYSICAL REVIEW MATERIALS[J]. 2021, 5(7): http://dx.doi.org/10.1103/PhysRevMaterials.5.L071401.
[11] Zhang, Cheng, Ding, Shuaishuai, Qiao, Kaiming, Li, Jia, Li, Zhe, Yin, Zhuo, Sun, Jirong, Wang, Jing, Zhao, Tongyun, Hu, Fengxia, Shen, Baogen. Large Low-Field Magnetoresistance (LFMR) Effect in Free-Standing La0.7Sr0.3MnO3 Films. ACS APPLIED MATERIALS & INTERFACES[J]. 2021, 13(24): 28442-28450, http://dx.doi.org/10.1021/acsami.1c03753.
[12] 胡凤霞. 巨磁热材料相变过程晶格熵变和自旋熵变符号问题研究. 中国科学: 物理学力学天文学, . 2021 年第51 卷第6 期: 067520. 2021, [13] Han, Furong, Chen, Xiaobing, Wang, Jianlin, Huang, Xudan, Zhang, Jine, Song, Jinghua, Liu, Banggui, Chen, Yuansha, Bai, Xuedong, Hu, Fengxia, Shen, Baogen, Sun, Jirong. Perpendicular magnetic anisotropy induced by La2/3Sr1/3MnO3-YBaCo2O5+delta interlayer coupling. JOURNAL OF PHYSICS D-APPLIED PHYSICS[J]. 2021, 54(18): https://www.webofscience.com/wos/woscc/full-record/WOS:000619568200001.
[14] Feng-xia Hu. Unipolar electric-field-controlled nonvolatile multistate magnetic memory in FeRh/(001)PMN-PT heterostructures over a broad temperature span. SCIENCE CHINA Physics, Mechanics & Astronomy, https://doi.org/10.1007/s11433-021-1779-0. 2021, [15] Feng-xia Hu. A Distinct Spin Structure and Giant Baromagnetic Effect in MnNiGe Compounds with Fe-Doping. J. Am. Chem. Soc. 2021, 143, 6798−6804. 2021, [16] Yan, Xi, Zhang, Hui, Shen, Baogen, Hu, Fengxia, Sun, Jirong. Transport abnormity and its modulations via gating effect and light illumination at the SrNbO3/SrTiO(3)interface. MATERIALS RESEARCH EXPRESS[J]. 2020, 7(9): http://dx.doi.org/10.1088/2053-1591/abba9f.
[17] Liu, Jun, Xu, Zhiyi, Xu, Jiawang, Zuo, Shulan, Zhang, Yan, Liu, Dan, Zheng, Xinqi, Wang, Lichen, Zhao, Tongyun, Hu, Fengxia, Sun, Jirong, Shen, Baogen. Multiple transitions and wide refrigeration temperature range in R3NiSi2 (R = Tb, Dy) compounds. JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS[J]. 2020, 502: http://dx.doi.org/10.1016/j.jmmm.2020.166551.
[18] Qiao, Kaiming, Wang, Jianlin, Hu, Fengxia, Li, Jia, Zhang, Cheng, Liu, Yao, Yu, Zibing, Gao, Yihong, Su, Jian, Shen, Feiran, Zhou, Houbo, Bai, Xuedong, Wang, Jing, Franco, Victorino, Sun, Jirong, Shen, Baogen. Regulation of phase transition and magnetocaloric effect by ferroelectric domains in FeRh/PMN-PT heterojunctions. ACTA MATERIALIA[J]. 2020, 191: 51-59, http://dx.doi.org/10.1016/j.actamat.2020.03.028.
[19] Gu, Youdi, Song, Cheng, Zhang, Qinghua, Li, Fan, Tan, Hengxin, Xu, Kun, Li, Jia, Saleem, Muhammad Shahrukh, Fayaz, Muhammad Umer, Peng, Jingjing, Hu, Fengxia, Gu, Lin, Liu, Wei, Zhang, Zhidong, Pan, Feng. Interfacial Control of Ferromagnetism in Ultrathin SrRuO3 Films Sandwiched between Ferroelectric BaTiO3 Layers. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(5): 6707-6715, https://www.webofscience.com/wos/woscc/full-record/WOS:000512216900158.
[20] Shen, Feiran, Zhou, Houbo, Hu, Fengxia, Wang, JianTao, Deng, Sihao, Wang, Baotian, Wu, Hui, Huang, Qingzhen, Wang, Jing, Chen, Jie, He, Lunhua, Hao, Jiazheng, Yu, Zibing, Liang, Feixiang, Liang, Tianjiao, Sun, Jirong, Shen, Baogen. Cone-spiral magnetic ordering dominated lattice distortion and giant negative thermal expansion in Fe-doped MnNiGe compounds. MATERIALS HORIZONS[J]. 2020, 7(3): 804-810, https://www.webofscience.com/wos/woscc/full-record/WOS:000519943400024.
[21] Huang, HaiLin, Zhu, Liang, Zhang, Hui, Zhang, JinE, Han, FuRong, Song, JingHua, Chen, Xiaobing, Chen, YuanSha, Cai, JianWang, Bai, XueDong, Hu, FengXia, Shen, BaoGen, Sun, JiRong. Tuning magnetic anisotropy by interfacial engineering in La2/3Sr1/3Co1-xMnxO2.5+delta/La2/3Sr1/3MnO3/La(2/3)Sr(1/3)Co(1-x)Mn(x)O(2.5+delta)trilayers*. CHINESE PHYSICS B[J]. 2020, 29(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000573056000001.
[22] 郝嘉政, 王晶, 胡凤霞, 何伦华, 何峻, 沈保根. 物理压力增强La(Fe,Si)13基化合物磁热和压热效应的研究. 2020, 2-, https://kns.cnki.net/kcms/detail/detail.aspx?dbcode=CPFD&dbname=CPFDTEMP&filename=ZGXT202010001142&v=MTU1ODl4ZEVlTU9VS3JpZlplWnVGQ2pzVXIzSktWc1hQeXJUZXJHNEhOSE5yNDlGWmVvTERoTkt1aGRobmo5OFRuanFx.
[23] 唐贵德, 李壮志, 马丽, 吴光恒, 胡凤霞. 典型磁性材料价电子结构研究面临的机遇与挑战. 物理学报[J]. 2020, 69(2): 35-45, http://lib.cqvip.com/Qikan/Article/Detail?id=7100827713.
[24] Hao, Jiazheng, Hu, Fengxia, Wang, JianTao, Shen, FeiRan, Yu, Zibing, Zhou, Houbo, Wu, Hui, Huang, Qingzhen, Qiao, Kaiming, Wang, Jing, He, Jun, He, Lunhua, Sun, JiRong, Shen, Baogen. Large Enhancement of Magnetocaloric and Barocaloric Effects by Hydrostatic Pressure in La(Fe0.92Co0.08)(11.9)Si-1.1 with a NaZn13-Type Structure. CHEMISTRY OF MATERIALS[J]. 2020, 32(5): 1807-1818, https://www.webofscience.com/wos/woscc/full-record/WOS:000519337600007.
[25] Feng-xia Hu. Large enhancement of magnetocaloric and barocaloric effect by hydrostatic pressure in La(Fe0.92Co0.08)11.9Si1.1 with NaZn13-type structure. Chemistry of Materials, 2020, 32: 1807.. 2020, [26] Liu, Yanli, Zhou, Jianjun, Wang, Xin, Liu, Fei, Ma, Qiang, Zhao, Tongyun, Hu, Fengxia, Sun, Jirong, Shen, Baogen. Hydrogen Decrepitation Behaviors of Novel RE-Fe-B Strip-Casting Alloys Based on Misch Metal. IEEE TRANSACTIONS ON MAGNETICS[J]. 2020, 56(12): https://www.webofscience.com/wos/woscc/full-record/WOS:000591812100007.
[27] Zhang, Hui, Feng, Zheng, Zhang, Jine, Bai, He, Yang, Huaiwen, Cai, Jianwang, Zhao, Weisheng, Tan, Wei, Hu, Fengxia, Shen, Baogen, Sun, Jirong. Laser pulse induced efficient terahertz emission from Co/Al heterostructures. PHYSICAL REVIEW B[J]. 2020, 102(2): https://www.webofscience.com/wos/woscc/full-record/WOS:000550578400007.
[28] 刘瑶, 马天宇, 胡凤霞. MnCoSi合金在磁场-静液压双场作用下的多卡效应研究. 2020, 160-, [[["https://kns.cnki.net/kcms/detail/detail.aspx?dbcode=CPFD&dbname=CPFDTEMP&filename=ZGXT202010001132&v=MTQ4MDREaE5LdWhkaG5qOThUbmpxcXhkRWVNT1VLcmlmWmVadUZDanNVTC9KSWxzWFB5clRlckc0SE5ITnI0OUZaZW9N"]]].
[29] Han, Furong, Chen, Xiaobing, Zhang, Jine, Zhang, Jing, Song, Jinghua, Zhang, Hui, Zhang, Hongrui, Yan, Xi, Zhang, Qinghua, Gu, Lin, Chen, Yuansha, Hu, Fengxia, Shen, Baogen, Sun, Jirong. Spin reorientation at (110)-La2/3Sr1/3MnO3/LaCoO3 interfaces by orbital/charge reconstruction. APL MATERIALS[J]. 2020, 8(2): https://www.webofscience.com/wos/woscc/full-record/WOS:000531272200001.
[30] Hao, JiaZheng, Shen, FeiRan, Hu, FengXia, Zhou, HouBo, Yu, ZiBing, Gao, YiHong, Liang, WenHui, Qiao, KaiMing, Wang, BingJie, Li, Jia, Zhang, Cheng, Wang, Jing, He, LunHua, Liang, TianJiao, He, Jun, Sun, JiRong, Shen, BaoGen. Realization of ultra-low thermal expansion over a broad temperature interval in Gd-x(Dy0.5Ho0.5)(1-x)Co-2 compounds. SCRIPTA MATERIALIA[J]. 2020, 185: 181-186, http://dx.doi.org/10.1016/j.scriptamat.2020.04.043.
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[147] 张宏伟, 孙继荣, 胡凤霞, 王芳, 沈保根. La-Fe基NaZn13型化合物的磁场诱导磁熵变研究. 中国稀土学报[J]. 2005, 23: 385-, http://ir.iphy.ac.cn/handle/311004/40553.
[148] Gao, J, Hu, FX. Current-induced metastable resistive state in epitaxial thin films of La1-xCaxMnO3 (x=0.2,0.3). APPLIED PHYSICS LETTERS[J]. 2005, 86(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000228991600041.
[149] Hu, FX, Gao, J. Unusual current-induced electroresistance in epitaxial thin films of La0.8Ca0.2MnO3. PHYSICAL REVIEW B[J]. 2004, 69(21): https://www.webofscience.com/wos/woscc/full-record/WOS:000222530200021.
[150] Feng-xia Hu. Good rectifying characteristic in p– n junctions composed of La0.67Ca0.33MnO3/Nb– 0.007 wt-doped SrTiO3. Appl. Phys. Lett.. 2003, [151] 沈俊, 李养贤, 胡凤霞, 王光军, 张绍英. Ce2Fe16Al化合物在居里温度附近的磁性和磁熵变. 物理学报[J]. 2003, 52(5): 1250-1254, http://lib.cqvip.com/Qikan/Article/Detail?id=7835638.
[152] Hu, FX, Shen, BG, Sun, JR, Wang, GJ, Cheng, ZH. Very large magnetic entropy change near room temperature in LaFe11.2Co0.7Si1.1. APPLIED PHYSICS LETTERS[J]. 2002, 80(5): 826-828, http://ir.iphy.ac.cn/handle/311004/46521.
[153] 胡凤霞, 沈保银. Heusler合金Ni—Mn—Ga和NaZn13型化合物La(Fe,Co,M)13,M=Si,Al的巨大磁熵变. 中国科学院研究生院学报[J]. 2002, 19(2): 192-197, http://lib.cqvip.com/Qikan/Article/Detail?id=6480679.
[154] 胡凤霞, 沈保根, 孙继荣, 王光军, 成昭华. LaFe11.2Co0.7Si1.1合金在室温区的巨大磁熵变. 物理[J]. 2002, 31(3): 139-140, http://lib.cqvip.com/Qikan/Article/Detail?id=6081163.
[155] 王中, 胡凤霞, 高书侠, 陈京兰, 高智勇, 宫声凯, 赵连城, 徐惠彬. Ni52Mn24Ga24金属间化合物的单晶生长和磁性功能. 金属学报[J]. 2001, 37(4): 353-357, http://lib.cqvip.com/Qikan/Article/Detail?id=5117394.
[156] Hu, FX, Shen, BG, Sun, JR, Wu, GH. Large magnetic entropy change in a Heusler alloy Ni52.6Mn23.1Ga24.3 single crystal. PHYSICAL REVIEW B[J]. 2001, 64(13): http://ir.iphy.ac.cn/handle/311004/40600.
[157] 胡凤霞, 陈京兰, 吴光恒, 柳祝红, 王文洪, 敖玲, 高书侠. 哈斯勒合金Ni—Mn—Ga的马氏体相变和磁增强双向形状记忆效应. 物理学报[J]. 2001, 50(2): 233-, http://lib.cqvip.com/Qikan/Article/Detail?id=4920493.
[158] Hu, FX, Shen, BG, Sun, JR, Cheng, ZH, Rao, GH, Zhang, XX. Influence of negative lattice expansion and metamagnetic transition on magnetic entropy change in the compound LaFe11.4Si1.6. APPLIED PHYSICS LETTERS[J]. 2001, 78(23): 3675-3677, http://ir.iphy.ac.cn/handle/311004/39862.
[159] Hu, FX, Shen, BG, Sun, JR, Cheng, ZH. Large magnetic entropy change in La(Fe,Co)(11.83)Al-1.17. PHYSICAL REVIEW B[J]. 2001, 64(1): http://ir.iphy.ac.cn/handle/311004/40602.
[160] 胡凤霞, 沈保根, 高政祥, 戴闻. 磁制冷材料研究中的物理问题. 中国科学基金[J]. 2000, 14(4): 216-220, http://lib.cqvip.com/Qikan/Article/Detail?id=4407372.
[161] Hu, FX, Shen, BG, Sun, JR. Magnetic entropy change in Ni51.5Mn22.7Ga25.8 alloy. APPLIED PHYSICS LETTERS[J]. 2000, 76(23): 3460-3462, http://ir.iphy.ac.cn/handle/311004/41197.
[162] Feng-xia Hu. Comment on "direct measurements of the ‘giant’ adiabatic temperature change in Gd5Si2Ge2. Phys. Rev. Lett.. 2000, [163] 沈保根, 胡凤霞, 陈金昌, 郭慧群. 非晶态Co90—xCrxZr10合金的磁性和晶化. 金属学报[J]. 1992, 28(2): B69-, http://lib.cqvip.com/Qikan/Article/Detail?id=811750.

科研活动

主要工作及获得的成果:

(1)发现了新型 La(Fe,Si)13 基大磁热效应材料并获得了核心发明专利,阐明了巨大磁热效应源自晶格负热膨胀和巡游电子变磁转变行为,单篇论文最高引用 1050 余次,是国际上80 多年来有关磁热效应论文被引用次数最高的7篇论文之一。自发现以来,国内外已有200 多个实验室跟随研究,该材料目前已成为国际上公认的最具应用前景的新型磁制冷材料。
(2)
利用应变记忆效应成功实现了FeRh巨磁热薄膜滞后损耗的非易失性调控、解决了磁制冷样机设计中遇到的双场循环的瓶颈问题。
(3)
利用非公度螺旋磁结构引入的晶格畸变和织构效应在MnFeNiGe材料体系实现了远大于晶格本征贡献的超大负热膨胀(NTE),为探索NTE材料提供了新策略。
(4)
首次在复杂氧化物中成功实现了B位阳离子和氧离子协同迁移驱动的连续拓扑相变,其诱发的B位离子3d电子轨道占据和自旋态重构导致磁电性质发生显著改变,为拓展离子介导的拓扑相变的综合应用提供了新途径。

J. Am. Chem. Soc., Adv. Mater., Nano energy, Mater. Horiz., Acta Mater., Chem. Mater., Phys.Rev.Lett./Phys.Rev.B, Appl.Phys.Lett./APL mater.等刊物发表论文160余篇,他人引用5600余次,第一作者单篇最高引用1050余次。获授权发明专利30余项(含美、日、欧4项国际专利授权)。

2012年度国家自然科学二等奖(2)2014年度陈嘉庚技术科学奖(2)2011年度北京市科学技术奖一等奖(2)

科研项目
( 1 ) 新型巨磁热体系磁熵变, 主持, 国家级, 2013-01--2016-12
( 2 ) 高轻稀土含量、高性能稀土永磁材料机理研究, 参与, 国家级, 2014-01--2018-08
( 3 ) 国家重大科研仪器设备研制专项, 参与, 国家级, 2014-01--2017-12
( 4 ) 金属间化合物体系外场驱动的多卡效应和相关科学问题研究, 主持, 国家级, 2016-01--2020-12
( 5 ) 稀土磁制冷材料的多场调控和耦合热效应研究, 主持, 国家级, 2017-07--2022-06
( 6 ) 新型磁热材料的多卡效应与微波吸收研究, 主持, 部委级, 2016-08--2021-07
( 7 ) 巨磁热材料的相变调控和负热膨胀行为研究, 主持, 国家级, 2018-01--2021-12

指导学生

已指导学生

包立夫  博士研究生  070205-凝聚态物理  

武荣荣  博士研究生  070205-凝聚态物理  

赵莹莹  博士研究生  070205-凝聚态物理  

现指导学生

刘瑶  博士研究生  070205-凝聚态物理  

匡皓  博士研究生  070205-凝聚态物理  

沈斐然  硕士研究生  085204-材料工程  

梁飞翔  博士研究生  070205-凝聚态物理  

宋京华   硕士研究生  070205-凝聚态物理  

梁文会  博士研究生  070205-凝聚态物理  

李佳  博士研究生  070205-凝聚态物理  

乔凯明  博士研究生  080502-材料学  

周厚博  硕士研究生  070205-凝聚态物理