基本信息
李润伟  男  博导  中国科学院宁波材料技术与工程研究所
电子邮件: runweili@nimte.ac.cn
通信地址: 浙江省宁波市镇海区中官西路1219号
邮政编码: 315201

研究领域

主要从事柔性/弹性磁电功能材料与器件研究,包括:柔性磁电功能材料制备与物性研究、柔性/弹性磁电敏感材料与传感器技术,以及柔性阻变存储材料与器件等

招生信息

   
招生专业
080501-材料物理与化学
招生方向
磁性材料与应用技术,功能材料与纳米器件

教育背景

1997-09--2002-07   中国科学院物理研究所   理学博士
1993-09--1997-07   中央民族大学   理学学士
学历

-- 博士研究生

学位
-- 博士

工作经历

2013.09至今:中国科学院宁波材料技术与工程研究所 副所长
2012.04-2013.09:中国科学院宁波材料技术与工程研究所 所长助理
2010.08至今:中国科学院磁性材料与器件重点实验室 主任
2008.03至今:中科院宁波材料所研究员、博士生导师;
2005.02-2008.03:日本国家材料科学研究所 国际青年科学家中心(International Center for Young Scientists, National Institute for Materials Science, NIMS)高级研究员
2003.10-2005.01:德国凯泽斯劳滕大学(Kaiserslautern University of Technology);洪堡学者(Alexander von Humboldt research fellow),合作教授:Prof. Burkard Hillebrands
2002.08-2003.09:日本大阪大学(Osaka University);JSPS(Japanese Society for the Promotion of Science-日本学术振兴会)研究员,合作教授:Prof.Tomoji Kawai(川合 知二)

工作简历
2013-09~现在, 中国科学院宁波材料技术与工程研究所, 副所长
2012-04~2013-09,中国科学院宁波材料技术与工程研究所, 所长助理
2010-08~现在, 中国科学院宁波材料技术与工程研究所, 中科院磁性材料与器件重点实验室主任
2008-03~现在, 中国科学院宁波材料技术与工程研究所, 研究员
2005-02~2008-03,日本国家材料科学研究所, 国际青年科学家中心高级研究员
2003-10~2005-01,德国凯泽斯劳滕大学, 洪堡学者
2002-08~2003-09,日本大阪大学, JSPS研究员
社会兼职
2015-11-01-今,中国电子学会应用磁学分会, 副主任委员
2015-10-01-今,浙江省材料研究学会, 副理事长
2015-07-01-今,中科院青联, 常委
2014-12-31-今,美国电气和电子工程师协会(IEEE), 高级会员
2014-10-01-今,亚洲磁学联盟(AUMS), 委员
2013-11-01-今,全国纳米技术标准化委员会, 委员

专利与奖励

一、授权专利列表:

1.李润伟,诸葛飞,何聪丽,汪爱英,代伟;一种电阻型随机存储器的存储单元及其制备方法;中国发明专利;专利号:200910100141.x

2.诸葛飞,李润伟;一种高纯碳化硼粉体的制备方法;中国发明专利;专利号:200910153736.1

3.李润伟,诸葛飞,何聪丽,刘兆平,周旭峰;一种电阻型随机存储器的存储单元及其制备方法;中国发明专利;专利号:200910100140.5

4.李润伟,尹奎波,刘宜伟,李蜜,陈斌;基于铁酸铋薄膜体系的电阻式随机存储器及其制备方法;中国发明专利;专利号:200910099716.0

5.刘宜伟,李润伟,陈斌;一种抗原检测方法;中国发明专利;专利号:201010176884.8

6.刘宜伟,李润伟,陈斌;一种生物传感器;中国实用新型专利;专利号: 201020195995.9

7.李润伟,胡本林,诸葛飞,潘亮;一种电阻型随机存储器的存储单元及其制备方法;中国发明专利;专利号:201110060470.3

8.李润伟,胡本林,诸葛飞,潘亮;一种用于电阻型存储材料的聚西佛碱;中国发明专利;专利号:201110060469.0

9.李润伟,左正笏,陈斌,刘宜伟,朱小健,杨华礼;一种自支撑多铁性薄膜的制备方法;中国发明专利;专利号:201110086403.9

10.刘宜伟,李润伟,詹清峰,邵聪磊;一种磁标记生物传感器、其制备方法以及检测方法;中国发明专利;专利号:201110241688.9

11.李润伟,苏文静,诸葛飞,朱小健;一种电流振荡器及其制备方法;中国发明专利;申请号:201110113939.5

12.李润伟,潘亮,韩磊,胡本林,彭姗姗;一种电阻型随机存储器的存储单元及其制备方法;中国发明专利;申请号:201210177625.6

13.李润伟,胡本林,潘亮,尚杰;一种电阻型随机存储器的存储单元及其制备方法;中国发明专利;申请号:201210067557.8

14.李润伟,左正笏,詹清峰,陈斌,杨华礼,刘宜伟;一种反铁电薄膜的制备方法;中国发明专利;申请号:201210332301.5

15.李润伟,左正笏,尚杰,詹清峰,陈斌;一种自支撑压电/铁电薄膜的制备方法;中国发明专利;申请号:201210002889.8

16.谢亚丽,刘宜伟,李润伟,詹清峰;一种柔性多铁性器件;中国实用新型专利;专利号:201320268807.7

17.巫远招,刘宜伟,李润伟,吉红伟,邵聪磊,詹清峰;一种磁标记生物检测系统及其检测方法;中国发明专利;申请号:201310173172.4

18.李润伟,左正笏,刘宜伟,陈斌,王保敏;一种磁场施加装置;中国发明专利;专利号:201420666571.4

19.李润伟,仲建安,刘宜伟,吉红伟;一种柔性磁扭型磁电传感器;中国中国实用新型专利专利;申请号:201520252728.3

20.刘宜伟,李辉辉,李润伟,巫远招,孙丹丹;一种压磁式应力传感器;中国中国实用新型专利专利;申请号:201520132555.1

21.李辉辉,刘宜伟,李润伟,巫远招,孙丹丹;一种电感式应力传感器;中国中国实用新型专利专利;申请号:201520132728.X

22.巫远招,刘宜伟,李润伟,李辉辉,尚杰,孙丹丹;一种用于探测微弱应力的传感器;中国中国实用新型专利专利;申请号:201520132692.5


二、受理专利列表:
17. 李润伟,朱小健,尚杰;一种量子点接触的制备方法;中国发明专利;申请号:201210050252.6
18. 李润伟,杨智唤,詹清峰,朱小健,刘宜伟;一种磁性隧道结的制备方法;中国发明专利;申请号:201310148652.5
19. 赵远云,李润伟,王新敏,常春涛,满其奎;一种金属纳米颗粒的制备方法;中国发明专利;专利申请号:201310242716.8
20. 赵远云,李润伟,常春涛,王新敏,门贺;一种准晶颗粒强化的镁基非晶合金内生复合材料及其制备方法;中国发明专利;专利申请号:201310350437.3
21. 邵聪磊,刘宜伟,巫远招,李润伟,詹清峰;一种微弱信号的放大方法及装置;中国发明专利;专利申请号:201310278674.3
22. 邵聪磊,刘宜伟,巫远招,李润伟,詹清峰;一种磁标记生物传感器系统;中国发明专利;专利申请号:201310279200.0
23. 刘钢,李润伟,潘亮,张文斌,巫远招;一种从电子废弃物中回收多种金属的方法;中国发明专利;专利申请号:201310549957.7
24. 刘钢,李润伟,张文斌,巫远招,潘亮;导电高分子-石墨烯纳米复合材料、其制备方法及用途;中国发明专利;专利申请号:201310548994.6
25. 刘钢,李润伟,巫远招,潘亮,张文斌;一种导电高分子-支撑体复合材料、其制备方法及用途;中国发明专利;专利申请号:201310549956.2
26. 刘钢,李润伟,潘亮,张文斌,巫远招;利用导电高分子多孔分离膜从电子废弃物中回收金属的方法;中国发明专利;专利申请号:201310549586.2
27. 刘宜伟,李润伟,詹清峰,代国红;一种温度控制的磁电子器件、其制备方法及应用;中国发明专利;申请号:201210346506.9
28. 詹清峰,张晓山,刘宜伟,代国红,李润伟;一种柔性磁性薄膜饱和磁致伸缩系数的测量方法;中国发明专利;申请号:201210363918.3
29. 李润伟,朱小健,胡本林,尚杰;一种高稳定性的电阻式随机存储器及其制备方法;中国发明专利;申请号:201210259551.0
30. 刘宜伟,李润伟,詹清峰,彭姗姗,谢亚丽,左正笏;一种单轴磁各向异性薄膜的制备方法;中国发明专利;申请号:201210134865.8
31. 李润伟,胡本林,潘亮,尚杰;一种电阻型随机存储器的存储单元及其制备方法;中国发明专利;申请号:201210067557.8
32. 刘宜伟,李润伟,詹清峰,邵聪磊,巫远招;一种磁标记生物传感器其制备方法以及检测方法;中国发明专利;申请号:201110241688.9
33. 谢亚丽,刘宜伟,李润伟,詹清峰;一种柔性多铁性器件;中国发明专利;申请号:201310182434.3
34. 李润伟,杨智唤,詹清峰,朱小健,刘宜伟;一种磁性隧道结的制备方法;中国发明专利;申请号:201310148652.5
35. 刘钢,李润伟,潘亮,张文斌,巫远招;利用导电高分子纳米纺丝从电子废弃物中回收金属的方法;中国发明专利;申请号:201310745613.3
36. 刘钢,李润伟,张文斌,潘亮,巫远招;利用导电高分子纳米纤维从电子废弃物中回收金属的方法;中国发明专利;申请号:201310739047.5
37. 刘钢,李润伟,巫远招,潘亮,张文斌;利用导电高分子中空纤维从电子废弃物中回收金属的方法;中国发明专利;申请号:201310738982.X
38. 詹清峰,荣欣,李润伟,刘宜伟,张晓山;交换偏置场可调控的结构单元、其制备方法及调控方法;中国发明专利;申请号:201410077376.2
39. 刘钢,李润伟,张文斌,潘亮,冀正辉,张超超;一种有机高分子忆阻结构单元;中国发明专利;申请号:201410145604.5
40. 刘宜伟,李润伟,陈斌,王保敏;一种纳米磁-电-热多参量耦合原位探测系统及其探测方法;中国发明专利;申请号:201410494759.X
41. 李润伟,陈欣欣,刘宜伟,陈斌,王保敏;基于扫描探针显微镜的纳米磁热原位探测装置及探测方法;中国发明专利;申请号:201410494331.5
42. 李润伟,朱小健,刘宜伟,陈斌,王保敏;基于扫描探针显微镜的微/纳米热电原位探测装置及探测方法;中国发明专利;申请号:201410495722.9
43. 陈斌,李润伟,刘宜伟,王保敏;一种扫描探针显微镜中的探针、其制备方法及探测方法;中国发明专利;申请号:201410494757.0
44. 李润伟,陈斌,刘宜伟,王保敏;一种扫描探针显微镜中的探针、其制备方法及探测方法;中国发明专利;申请号:201410493965.9
45. 李润伟,檀洪伟,刘钢,朱小健;一种光电多功能结构单元、其制备方法与应用;中国发明专利;申请号:201410018532.8
46. 满其奎,强健,常春涛,王新敏,李润伟;一种非晶合金纤维的制备方法及实现该制备方法的设备;中国发明专利;申请号:201410018478.7
47. 满其奎,强健,常春涛,王新敏,李润伟;一种纵向驱动磁阻抗元件;中国发明专利;申请号:201410024746.6
48. 霍军涛,常春涛,门贺,李润伟,王新敏;一种高熵非晶合金、其制备方法及应用;中国发明专利;申请号:201410310509.6
49. 霍军涛,甘卓然,常春涛,李润伟,王新敏,门贺;一种印染污水的处理方法;中国发明专利;申请号:201410311123.7
50. 董亚强,常春涛,满其奎,黎嘉威,李润伟;一种微细金属粉末的制备方法及实现该方法的设备;中国发明专利;申请号:201410421086.5
51. 董亚强,常春涛,满其奎,黎嘉威,李润伟;非晶态粉末的制备方法及装置;中国发明专利;申请号:201410335843.7
52. 谢亚丽,李润伟,詹清峰,刘宜伟,王保敏;一种应力辅助磁存储器件、其制备方法以及磁场写入方法;中国发明专利;申请号:201410653005.4
53. 李润伟,张文斌,刘钢,潘亮,张超超;一种具有信息存储功能的显示器件及其制备方法;中国发明专利;申请号:201410528715.4 

54.孙丹丹,王保敏,李润伟,沈渊;一种NiMnX合金靶材的制备方法;中国发明专利;申请号:201510154558.X;

55.王保敏,沈渊,孙丹丹,李润伟;拓展一级磁相变材料作为磁致冷材料应用时的制冷温区的方法;中国发明专利;申请号:201510377221.5

56.李辉辉,刘宜伟,李润伟,巫远招,孙丹丹;一种电感式应力传感器;中国发明专利;申请号:201510103094.X

57.李润伟,檀洪伟,刘钢;一种光电信息转换元件及其应用;中国发明专利;申请号:201510114334.6

58.刘宜伟,李辉辉,李润伟,巫远招,孙丹丹;一种压磁式应力传感器;中国发明专利;申请号:201510102039.9

59.李润伟,冀正辉,潘亮,尚杰,伊晓辉,刘钢;一种柔性阻变存储器;中国发明专利;申请号:201510106614.2

60.巫远招,刘宜伟,李润伟,李辉辉,尚杰,孙丹丹;一种用于探测微弱应力的传感器及其制备方法;中国发明专利;申请号:201510102333.X

61.李润伟,檀洪伟,刘钢;一种光电处理器;中国发明专利;申请号:201610039778.2

伊晓辉,刘钢,李润伟;一种基于三联吡啶或其衍生物的荧光粉、其制备方法与应用;中国发明专利;申请号:201610044057.0

62.伊晓辉,刘钢,李润伟;在固态环境下调控荧光材料发光性能的方法及全固态电写入光读出存储单元,中国发明专利;申请号:201610171467.1

63.巫远招,刘宜伟,李润伟,李辉辉,尚杰,孙丹丹;一种用于探测微弱应力的传感器及其制备方法;中国发明专利;申请号:201510102333.X

64.巫远招,刘宜伟,胡超,李润伟;一种电子仿生皮肤系统;中国发明专利;申请号:201610970007.5

65.巫远招,刘宜伟,胡超,李润伟;一种电子仿生皮肤系统;中国实用新型;申请号:201621195579.2,

66.高双,李润伟,刘钢;基于阻变存储单元的逻辑运算器及利用其实现二元布尔逻辑运算的方法;中国发明专利;申请号:201610858694.1

67.尚杰,牛旭红,刘宜伟,刘钢,郁哲,李润伟;一种可裁剪柔性导线、其制备装置以及制备方法;中国发明专利;申请号:201610824339.2

68.尚杰,牛旭红,刘宜伟,刘钢,郁哲,李润伟;一种柔性电极的制备装置以及利用该装置制备柔性电极的方法;中国发明专利;申请号:201610824305.3

69.刘宜伟,李润伟,胡超,尚杰;一种柔性多参量人体体征探测器及其使用方法;中国发明专利;申请号:201610826312.7

70.刘宜伟,张配同,李润伟,刘钢;一种弹性电路或电极的制备方法与制备装置;中国实用新型;申请号:201611047762.2

71.刘宜伟,张配同,李润伟,刘钢;一种弹性电路或电极的制备方法以及制备装置;中国发明专利;申请号:201611049771.5


三、荣誉与奖励 

2018年入选浙江省特级专家

2018年荣获宁波市科学技术一等奖、中国电子学会科学技术二等奖,入选2018年中国机器人行业十大科技进展

2015年 获得国家杰出青年基金资助

2014年 入选国家中青年科技创新领军人才
2014年 获得宁波市科技进步二等奖
2013年 获得浙江省青年科技奖
2012年 获得浙江省自然科学学术一等奖
2012年 获得亚洲磁学联盟青年学者奖(AUMS Young Researcher Award)
2010年 入选浙江省海外高层次人才
2010年 获得中科院上海分院杰出青年科技创新人才奖
2008年 获得浙江省杰出青年基金(团队)
2002年 获得中国科学院院长奖学金优秀奖

出版信息

  1. 李润伟,刘钢等;《柔性电子材料与器件》,北京,科学出版社(2019

  2. Run-Wei Li, Gang Liu etc, Flexible and Stretchable Electronics: Materials, Designs, and Devices, Singapore, Jenny Stanford Publishing Pte. Ltd.2019

  3. Shang Gao, Xiaohui Yi, Jie Shang, Bin Chen, Gang Liu, Run-Wei Li. Flexible Resistive Switching Memories: From Materials to Devices.  Advances in Materials Science Research (Chapter 4), 157-186. (2018)

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发表论文
[1] Ning, Mingqiang, Jiang, Peiheng, Ding, Wei, Zhu, Xuebin, Tan, Guoguo, Man, Qikui, Li, Jingbo, Li, RunWei. Phase Manipulating toward Molybdenum Disulfide for Optimizing Electromagnetic Wave Absorbing in Gigahertz. ADVANCED FUNCTIONAL MATERIALS[J]. 2021, 31(19): https://www.webofscience.com/wos/woscc/full-record/WOS:000623966700001.
[2] Jia, Xingjie, Zhang, Wei, Dong, Yaqiang, He, Aina, Li, Jiawei, Li, RunWei. Effects of Si content on structure and soft magnetic properties of Fe(81.3)Si(x)B(17-x)Cu(1.7)nanocrystalline alloys with pre-existing alpha-Fe nanocrystals. JOURNAL OF MATERIALS SCIENCE[J]. 2021, 56(3): 2539-2548, http://dx.doi.org/10.1007/s10853-020-05404-w.
[3] Li, Fali, Gao, Shuang, Lu, Ying, Asghar, Waqas, Cao, Jinwei, Hu, Chao, Yang, Huali, Wu, Yuanzhao, Li, Shengbin, Shang, Jie, Liao, Meiyong, Liu, Yiwei, Li, RunWei. Bio-Inspired Multi-Mode Pain-Perceptual System (MMPPS) with Noxious Stimuli Warning, Damage Localization, and Enhanced Damage Protection. ADVANCED SCIENCE[J]. 2021, 8(10): https://doaj.org/article/06b78408e08f42e0866b32d78465450e.
[4] Lu, Ying, Gao, Shuang, Li, Fali, Zhou, Youlin, Xie, Zhuolin, Yang, Huali, Xue, Wuhong, Hu, Benlin, Zhu, Xiaojian, Shang, Jie, Liu, Yiwei, Li, RunWei. Stretchable and Twistable Resistive Switching Memory with Information Storage and Computing Functionalities. ADVANCED MATERIALS TECHNOLOGIES[J]. 2021, 6(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000590672500001.
[5] Gong, Guodong, Gao, Shuang, Xie, Zhuolin, Ye, Xiaoyu, Lu, Ying, Yang, Huali, Zhu, Xiaojian, Li, RunWei. A visible light-triggered artificial photonic nociceptor with adaptive tunability of threshold. NANOSCALE[J]. 2021, 13(2): 1029-1037, https://www.webofscience.com/wos/woscc/full-record/WOS:000610368100045.
[6] Lei, Zhenkuang, Tan, Guoguo, Man, Qikui, Ning, Mingqiang, Wang, Shengding, Chen, Shuwen, Yang, Zhen, Li, RunWei. A flexible metamaterial based on liquid metal patterns embedded in magnetic medium for lightweight microwave absorber. MATERIALS RESEARCH BULLETIN[J]. 2021, 137: http://dx.doi.org/10.1016/j.materresbull.2020.111199.
[7] Zhulu Xie, BenLin Hu, RunWei Li, Qichun Zhang. Hydrogen Bonding in Self-Healing Elastomers. ACS OMEGA[J]. 2021, 6(14): 9319-9333, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8047772/.
[8] Huali Yang, Qing Liu, Zhaoliang Liao, Liang Si, Peiheng Jiang, Xiaolei Liu, Yanfeng Guo, Junjie Yin, Meng Wang, Zhigao Sheng, Yuxin Zhao, Zhiming Wang, Zhicheng Zhong, Run-Wei Li. Colossal angular magnetoresistance in the antiferromagnetic semiconductor EuTe2. Phys. Rev. B[J]. 2021, [9] Li, Gengfei, Xie, Yali, Wang, Baomin, Yang, Huali, Li, RunWei. Electric Field Control of Magnetic Properties by Means of Li+ Migration in FeRh Thin Film. MAGNETOCHEMISTRY[J]. 2021, 7(4): https://www.webofscience.com/wos/woscc/full-record/WOS:000643204400001.
[10] Nie, Tongxin, Wang, Baomin, Liu, Bo, Xie, Yali, Yang, Huali, Zhu, Mingyuan, Li, RunWei. Mechanical Analysis and Experimental Studies of the Transverse Strain in Wrinkled Metallic Thin Films. METALS[J]. 2021, 11(3): https://doaj.org/article/fb8b3778ffad4592949d83b552d11cee.
[11] Xie, Zhuolin, Gao, Shuang, Ye, Xiaoyu, Yang, Huali, Gong, Guodong, Lu, Ying, Ye, Junya, Liu, Gang, Li, RunWei. Magnetism modulation and conductance quantization in a gadolinium oxide memristor. PHYSICAL CHEMISTRY CHEMICAL PHYSICS[J]. 2020, 22(45): 26322-26329, https://www.webofscience.com/wos/woscc/full-record/WOS:000592983900023.
[12] Tang, Daxiu, Yu, Zhe, He, Yong, Asghar, Waqas, Zheng, YaNan, Li, Fali, Shi, Changcheng, Zarei, Roozbeh, Liu, Yiwei, Shang, Jie, Liu, Xiang, Li, RunWei. Strain-Insensitive Elastic Surface Electromyographic (sEMG) Electrode for Efficient Recognition of Exercise Intensities. MICROMACHINES[J]. 2020, 11(3): https://doaj.org/article/558cd002109548eea49f306412e0bc65.
[13] Zeng, Zeting, Feng, Jiatai, Zheng, Xuan, Wang, Cuihong, Liu, Jingwu, Lu, Zengxing, Jiang, FengXian, Xu, XiaoHong, Wang, Zhiming, Li, RunWei. Emergent ferromagnetism with tunable perpendicular magnetic anisotropy in short-periodic SrIrO3/SrRuO3 superlattices. APPLIED PHYSICS LETTERS[J]. 2020, 116(14): [14] Xie, Yali, Wang, Baomin, Yang, Huali, Li, RunWei. Preparation and magnetic properties of wrinkled FeRh flexible films. AIP ADVANCES[J]. 2020, 10(2): [15] Cao, PengJuan, Liu, Yiwei, Asghar, Waqas, Hu, Chao, Li, Fali, Wu, Yuanzhao, Li, Yunyao, Yu, Zhe, Li, Shengbin, Shang, Jie, Liu, Xincai, Li, RunWei. A Stretchable Capacitive Strain Sensor Having Adjustable Elastic Modulus Capability for Wide-Range Force Detection. ADVANCED ENGINEERING MATERIALS[J]. 2020, 22(3): [16] Zheng, YaNan, Yu, Zhe, Mao, Guoyong, Li, Yunyao, Pravarthana, Dhanapal, Asghar, Waqas, Liu, Yiwei, Qu, Shaoxing, Shang, Jie, Li, RunWei. A Wearable Capacitive Sensor Based on Ring/Disk-Shaped Electrode and Porous Dielectric for Noncontact Healthcare Monitoring. GLOBAL CHALLENGES[J]. 2020, 4(5): https://doaj.org/article/b720efd36fb544ae9a22719e66a82979.
[17] 卢颖, 陈威林, 高双, 李润伟. 柔性阻变存储材料与器件研究进展. 材料导报[J]. 2020, 34(1): 1146-1154, http://lib.cqvip.com/Qikan/Article/Detail?id=7100980851.
[18] Liao, Zhaoliang, Jiang, Peiheng, Zhong, Zhicheng, Li, RunWei. Materials with strong spin-textured bands. NPJ QUANTUM MATERIALSnull. 2020, 5(1): http://dx.doi.org/10.1038/s41535-020-0233-5.
[19] Xie, Yali, Zhan, Qingfeng, Hu, Yong, Hu, Xiao, Chi, Xiaodan, Zhang, Chenyu, Yang, Huali, Xie, Wenhui, Zhu, Xiaoyan, Gao, Jianhua, Cheng, Wenjuan, Jiang, Dongmei, Li, RunWei. Magnetocrystalline anisotropy imprinting of an antiferromagnet on an amorphous ferromagnet in FeRh/CoFeB heterostructures. NPG ASIA MATERIALS[J]. 2020, 12(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000581619300001.
[20] Chen, Weilin, Gao, Shuang, Xie, Zhuolin, Lu, Ying, Gong, Guodong, Liu, Gang, Shang, Jie, Yao, Chuang, Li, RunWei. Anti-oxidative passivation and electrochemical activation of black phosphorus via covalent functionalization and its nonvolatile memory application. JOURNAL OF MATERIALS CHEMISTRY C[J]. 2020, 8(22): 7309-7313, https://www.webofscience.com/wos/woscc/full-record/WOS:000542764300002.
[21] Lin, Jun Liang, He, Ri, Lu, Zengxing, Lu, Yi, Wang, Zhiming, Zhong, Zhicheng, Zhao, Xiang, Li, RunWei, Zhang, Zhi Dong, Wang, Zhan Jie. Oxygen vacancy enhanced ferroelectricity in BTO:SRO nanocomposite films. ACTA MATERIALIA[J]. 2020, 199: 9-18, http://dx.doi.org/10.1016/j.actamat.2020.08.016.
[22] Mustafa, Zeeshan, Pravarthana, Dhanapal, Wang, Baomin, Yang, Huali, Li, RunWei. Manipulation of Exchange Bias Effect via All-Solid-State Li-Ion Redox Capacitor with Antiferromagnetic Electrode. PHYSICAL REVIEW APPLIED[J]. 2020, 14(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000551417100003.
[23] Xue, Wuhong, Li, Yi, Liu, Gang, Wang, Zhuorui, Xiao, Wen, Jiang, Kemin, Zhong, Zhicheng, Gao, Shuang, Ding, Jun, Miao, Xiangshui, Xu, XiaoHong, Li, RunWei. Controllable and Stable Quantized Conductance States in a Pt/HfOx/ITO Memristor. ADVANCED ELECTRONIC MATERIALS[J]. 2020, 6(2): https://www.webofscience.com/wos/woscc/full-record/WOS:000497238900001.
[24] He, Ri, Lin, Jun Liang, Liu, Qing, Liao, Zhaoliang, Shui, Lingling, Wang, Zhan Jie, Zhong, Zhicheng, Li, RunWei. Emergent Ferroelectricity in Otherwise Nonferroelectric Oxides by Oxygen Vacancy Design at Heterointerfaces. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(40): 45602-45610, http://dx.doi.org/10.1021/acsami.0c13314.
[25] Zheng, Xuan, Kong, Shuai, Zhu, Jin, Feng, Jiatai, Lu, Zengxing, Du, Haifeng, Ge, Binghui, Wu, Tao, Wang, Zhiming, Radovic, Milan, Li, RunWei. Layer-by-layer epitaxial growth of monoclinic SrIrO3 thin films on (111)-oriented SrTiO3 through interface engineering. THIN SOLID FILMS[J]. 2020, 709: http://dx.doi.org/10.1016/j.tsf.2020.138119.
[26] Ning, Mingqiang, Man, Qikui, Tan, Guoguo, Lei, Zhenkuang, Li, JingBo, Li, RunWei. Ultrathin MoS2 Nanosheets Encapsulated in Hollow Carbon Spheres: A Case of a Dielectric Absorber with Optimized Impedance for Efficient Microwave Absorption. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(18): 20785-20796, https://www.webofscience.com/wos/woscc/full-record/WOS:000535170300068.
[27] 唐大秀, 刘金云, 王玉欣, 尚杰, 刘钢, 刘宜伟, 张辉, 陈清明, 刘翔, 李润伟. 柔性阻变存储器材料研究进展. 材料工程[J]. 2020, 48(7): 81-92, http://lib.cqvip.com/Qikan/Article/Detail?id=7102206812.
[28] Asghar, Waqas, Li, Fali, Zhou, Youlin, Wu, Yuanzhao, Yu, Zhe, Li, Shengbin, Tang, Daxiu, Han, Xintong, Shang, Jie, Liu, Yiwei, Li, RunWei. Piezocapacitive Flexible E-Skin Pressure Sensors Having Magnetically Grown Microstructures. ADVANCED MATERIALS TECHNOLOGIES[J]. 2020, 5(2): https://www.webofscience.com/wos/woscc/full-record/WOS:000507167500001.
[29] Ying, Wu Bin, Yu, Zhe, Kim, Do Hwan, Lee, Kyung Jin, Hu, Han, Liu, Yiwei, Kong, Zhengyang, Wang, Kai, Shang, Jie, Zhang, Ruoyu, Zhu, Jin, Li, RunWei. Waterproof, Highly Tough, and Fast Self-Healing Polyurethane for Durable Electronic Skin. ACS APPLIED MATERIALS & INTERFACES[J]. 2020, 12(9): 11072-11083, http://dx.doi.org/10.1021/acsami.0c00443.
[30] 李法利, 李晟斌, 曹晋玮, 刘宜伟, 尚杰, 李润伟. 弹性敏感材料与传感器件. 材料导报[J]. 2020, 34(1): 1059-1068, http://lib.cqvip.com/Qikan/Article/Detail?id=7100980843.
[31] Yu, Yang, Xu, Feng, Guo, Shanshan, Wang, Ning, Zou, Lvkuan, Wang, Baomin, Li, RunWei, Xue, Fei. Inferring the magnetic anisotropy of a nanosample through dynamic cantilever magnetometry measurements. APPLIED PHYSICS LETTERS[J]. 2020, 116(19): https://www.webofscience.com/wos/woscc/full-record/WOS:000543739800002.
[32] Lu, Zengxing, Liu, Jingwu, Feng, Jiatai, Zheng, Xuan, Yang, Lihong, Ge, Chen, Jin, Kuijuan, Wang, Zhiming, Li, RunWei. Synthesis of single-crystal La0.67Sr0.33MnO3 freestanding films with different crystal-orientation. APL MATERIALS[J]. 2020, 8(5): https://doaj.org/article/c366a83e9aad4f769c4b24c28471b92c.
[33] Zhou, Youlin, Wu, Yuanzhao, Asghar, Waqas, Ding, Jun, Su, Xinran, Li, Shengbin, Li, Fali, Yu, Zhe, Shang, Jie, Liu, Yiwei, Li, RunWei. Asymmetric Structure Based Flexible Strain Sensor for Simultaneous Detection of Various Human Joint Motions. ACS APPLIED ELECTRONIC MATERIALS[J]. 2019, 1(9): 1866-1872, https://www.webofscience.com/wos/woscc/full-record/WOS:000496315500019.
[34] Chen, Qilai, Liu, Gang, Gao, Shuang, Yi, Xiaohui, Xue, Wuhong, Tang, Minghua, Zheng, Xuejun, Li, RunWei. Nanoscale magnetization reversal by electric field-induced ion migration. MRS COMMUNICATIONS[J]. 2019, 9(1): 14-26, https://www.webofscience.com/wos/woscc/full-record/WOS:000462656200003.
[35] Lanza, Mario, Wong, HS Philip, Pop, Eric, Ielmini, Daniele, Strukov, Dimitri, Regan, Brian C, Larcher, Luca, Villena, Marco A, Yang, J Joshua, Goux, Ludovic, Belmonte, Attilio, Yang, Yuchao, Puglisi, Francesco M, Kang, Jinfeng, MagyariKope, Blanka, Yalon, Eilam, Kenyon, Anthony, Buckwell, Mark, Mehonic, Adnan, Shluger, Alexander, Li, Haitong, Hou, TuoHung, Hudec, Boris, Akinwande, Deji, Ge, Ruijing, Ambrogio, Stefano, Roldan, Juan B, Miranda, Enrique, Sune, Jordi, Pey, Kin Leong, Wu, Xing, Raghavan, Nagarajan, Wu, Ernest, Lu, Wei D, Navarro, Gabriele, Zhang, Weidong, Wu, Huaqiang, Li, Runwei, Holleitner, Alexander, Wurstbauer, Ursula, Lemme, Max C, Liu, Ming, Long, Shibing, Liu, Qi, Lv, Hangbing, Padovani, Andrea, Pavan, Paolo, Valov, Ilia, Jing, Xu, Han, Tingting, Zhu, Kaichen, Chen, Shaochuan, Hui, Fei, Shi, Yuanyuan. Recommended Methods to Study Resistive Switching Devices. ADVANCED ELECTRONIC MATERIALS[J]. 2019, 5(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000455220900021.
[36] Xiao, Huiyun, Dong, Yaqiang, He, Aina, Sun, Hao, Wang, Anding, Li, Hu, Liu, Lei, Liu, Xincai, Li, Runwei. Magnetic softness and magnetization dynamics of FeSiBNbCu(P,Mo) nanocrystalline alloys with good high-frequency characterization. JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS[J]. 2019, 478: 192-197, http://dx.doi.org/10.1016/j.jmmm.2019.01.116.
[37] 陈威林, 高双, 伊晓辉, 尚杰, 刘钢, 李润伟. 有机和杂化阻变材料与器件. 功能高分子学报[J]. 2019, 32(4): 434-447, http://lib.cqvip.com/Qikan/Article/Detail?id=7002428001.
[38] Ling, An, Tan, Guoguo, Man, Qikui, Lou, Yaxin, Chen, Shuwen, Gu, Xisheng, Li, RunWei, Pan, Jing, Liu, Xincai. Broadband microwave absorbing materials based on MWCNTs' electromagnetic wave filtering effect. COMPOSITES PART B-ENGINEERING[J]. 2019, 171: 214-221, https://www.webofscience.com/wos/woscc/full-record/WOS:000470942600021.
[39] Bin Zhang, Fei Fan, Wuhong Xue, Gang Liu, Yubin Fu, Xiaodong Zhuang, XiaoHong Xu, Junwei Gu, RunWei Li, Yu Chen. Redox gated polymer memristive processing memory unit. Nature Communications[J]. 2019, 10(1): 1-11, https://doaj.org/article/873ea43a4a9f40f988b7a8d675ae6256.
[40] Yao, Ayan, Yang, Hao, Wang, JunQiang, Xu, Wei, Huo, Juntao, Li, RunWei, Qiu, Huajun, Chen, Mingwei. Flexible supercapacitor electrodes fabricated by dealloying nanocrystallized Al-Ni-Co-Y-Cu metallic glasses. JOURNAL OF ALLOYS AND COMPOUNDS[J]. 2019, 772: 164-172, http://dx.doi.org/10.1016/j.jallcom.2018.09.090.
[41] Zhong, Hai, Wen, Yan, Zhao, Yuelei, Zhang, Qiang, Huang, Qikun, Chen, Yanxue, Cai, Jianwang, Zhang, Xixiang, Li, RunWei, Bai, Lihui, Kang, Shishou, Yan, Shishen, Tian, Yufeng. Ten States of Nonvolatile Memory through Engineering Ferromagnetic Remanent Magnetization. ADVANCED FUNCTIONAL MATERIALS[J]. 2019, 29(2): https://www.webofscience.com/wos/woscc/full-record/WOS:000455097900001.
[42] Cheng, Wenjuan, Zhou, Zheng, Pan, Minjie, Yang, Huali, Xie, Yali, Wang, Baomin, Zhan, Qingfeng, Li, RunWei. Stretchable spin valve with strain-engineered wrinkles grown on elastomeric polydimethylsiloxane. JOURNAL OF PHYSICS D-APPLIED PHYSICS[J]. 2019, 52(9): [43] Sheng, Ping, Xie, Yali, Bai, Yuhao, Wang, Baomin, Zhang, Lei, Wen, Xingcheng, Yang, Huali, Chen, Xiaoyuan, Li, Xiaoguang, Li, RunWei. Magnetoelastic anisotropy of antiferromagnetic materials. APPLIED PHYSICS LETTERS[J]. 2019, 115(24): https://www.webofscience.com/wos/woscc/full-record/WOS:000505734100017.
[44] Xu, Feng, Guo, Shanshan, Yu, Yang, Wang, Ning, Zou, Lvkuan, Wang, Baomin, Li, RunWei, Xue, Fei. Method for Assembling Nanosamples and a Cantilever for Dynamic Cantilever Magnetometry. PHYSICAL REVIEW APPLIED[J]. 2019, 11(5): https://www.webofscience.com/wos/woscc/full-record/WOS:000466614800004.
[45] He, Nana, Song, Lijian, Xu, Wei, Huo, Juntao, Wang, JunQiang, Li, RunWei. The evolution of relaxation modes during isothermal annealing and its influence on properties of Fe-based metallic glass. JOURNAL OF NON-CRYSTALLINE SOLIDS[J]. 2019, 509: 95-98, http://dx.doi.org/10.1016/j.jnoncrysol.2018.12.035.
[46] Xue, Wuhong, Gao, Shuang, Shang, Jie, Yi, Xiaohui, Liu, Gang, Li, RunWei. Recent Advances of Quantum Conductance in Memristors. ADVANCED ELECTRONIC MATERIALSnull. 2019, 5(9): https://www.webofscience.com/wos/woscc/full-record/WOS:000486206400009.
[47] Gao, Shuang, Liu, Gang, Yang, Huali, Hu, Chao, Chen, Qilai, Gong, Guodong, Xue, Wuhong, Yi, Xiaohui, Shang, Jie, Li, RunWei. An Oxide Schottky Junction Artificial Optoelectronic Synapse. ACS NANO[J]. 2019, 13(2): 2634-2642, https://www.webofscience.com/wos/woscc/full-record/WOS:000460199400163.
[48] Dhanapal, Pravarthana, Zhang, Tuo, Wang, Baomin, Yang, Huali, Xuan, Haicheng, Bi, Chong, Wang, Weigang, Li, RunWei. Reversibly controlled magnetic domains of Co film via electric field driven oxygen migration at nanoscale. APPLIED PHYSICS LETTERS[J]. 2019, 114(23): https://www.webofscience.com/wos/woscc/full-record/WOS:000471696100003.
[49] Pravarthana, Dhanapal, Wang, Baomin, Mustafa, Zeeshan, Agarwal, Sandeep, Pei, Ke, Yang, Huali, Li, RunWei. Reversible Control of Magnetic Anisotropy and Magnetization in Amorphous Co40Fe40B20 Thin Films via All-Solid-State Li-ion Redox Capacitor. PHYSICAL REVIEW APPLIED[J]. 2019, 12(5): [50] Yi, Xiaohui, Yu, Zhe, Niu, Xuhong, Shang, Jie, Mao, Guoyong, Yin, Tenghao, Yang, Huali, Xue, Wuhong, Dhanapal, Pravarthana, Qu, Shaoxing, Liu, Gang, Li, RunWei. Intrinsically Stretchable Resistive Switching Memory Enabled by Combining a Liquid Metal-Based Soft Electrode and a Metal-Organic Framework Insulator. ADVANCED ELECTRONIC MATERIALS[J]. 2019, 5(2): [51] Chen, Qilai, Liu, Gang, Xue, Wuhong, Shang, Jie, Gao, Shuang, Yi, Xiaohui, Lu, Ying, Chen, Xinhui, Tang, Minghua, Zheng, Xuejun, Li, RunWei. Controlled Construction of Atomic Point Contact with 16 Quantized Conductance States in Oxide Resistive Switching Memory. ACS APPLIED ELECTRONIC MATERIALS[J]. 2019, 1(5): 789-798, [52] Chen, QiLai, Liu, Gang, Tang, MingHua, Chen, XinHui, Zhang, YueJun, Zheng, XueJun, Li, RunWei. A univariate ternary logic and three-valued multiplier implemented in a nano-columnar crystalline zinc oxide memristor. RSC ADVANCES[J]. 2019, 9(42): 24595-24602, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000480277000059.
[53] Wang, Yuxin, Yu, Zhe, Mao, Guoyong, Liu, Yiwei, Liu, Gang, Shang, Jie, Qu, Shaoxing, Chen, Qingming, Li, RunWei. Printable Liquid-Metal@PDMS Stretchable Heater with High Stretchability and Dynamic Stability for Wearable Thermotherapy. ADVANCED MATERIALS TECHNOLOGIES[J]. 2019, 4(2): [54] Gao, Shuang, Yi, Xiaohui, Shang, Jie, Liu, Gang, Li, RunWei. Organic and hybrid resistive switching materials and devices. CHEMICAL SOCIETY REVIEWSnull. 2019, 48(6): 1531-1565, [55] Ling, An, Pan, Jing, Tan, Guoguo, Gu, Xisheng, Lou, Yaxin, Chen, Shuwen, Man, Qikui, Li, RunWei, Liu, Xincai. Thin and broadband Ce2Fe17N3-delta/MWCNTs composite absorber with efficient microwave absorption. JOURNAL OF ALLOYS AND COMPOUNDS[J]. 2019, 787: 1097-1103, https://www.webofscience.com/wos/woscc/full-record/WOS:000462592500125.
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[57] Gao, Shuang, Liu, Gang, Chen, Qilai, Xue, Wuhong, Yang, Huali, Shang, Jie, Chen, Bin, Zeng, Fei, Song, Cheng, Pan, Feng, Li, RunWei. Improving Unipolar Resistive Switching Uniformity with Cone Shaped Conducting Filaments and Its Logic-In-Memory Application. ACS APPLIED MATERIALS & INTERFACES[J]. 2018, 10(7): 6453-6462, http://dx.doi.org/10.1021/acsami.7b19586.
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[246] Run-Wei Li. Manganite perovskite: small lattice distortion dissimilarity triggers anomalous anisotropic magnetoresistance. PNAS. 2009, [247] Li, RunWei, Liu, Hongjun, Owen, J H G, Wakayama, Y, Miki, K, Yeom, H W. Al nanocluster arrays on Si(111)-7x7 surfaces: Formation process and interactions among clusters. PHYSICAL REVIEW B[J]. 2007, 76(7): https://www.webofscience.com/wos/woscc/full-record/WOS:000249155300149.
发表著作
( 1 ) 石墨烯的物理及应用, Graphene, Theory Research and Applications, INTECH, 2011-04, 第 2 作者

科研活动

主要科研项目列表:

1.国家自然科学基金杰出青年科学基金项目,磁性材料与器件,李润伟,400万,2016-2018

2.李润伟15院重点部署,磁性二维电子气的构建与多场调控,李润伟,150万,2015-2019

3.宁波市创新团队项目,柔性磁电薄膜材料与可穿戴器件研发,李润伟,600万,2015-2019

4.中国科学院科研装备研制项目 纳米磁-电-热多参量耦合原位表征系统 YZ201327
在研 388万 2014.01-2015.06 主持
5.国家自然科学基金面上项目 电场对磁性氧化物薄膜的离子输运和磁性调控研究 11474295
在研 100万 2015.01-2018.12 主持
6.国家自然科学基金面上项目 超大各向异性磁电阻效应的机理与调控研究 11274321
在研 95万 2013.01-2016.12 主持
7.国家重点基础研究发展计划(973)子课题 电阻型存储材料的设计、制备及相关性能研究 2009CB930803
已结题 564万 2009.01-2013.08 主持
8.中国科学院****项目 多功能钙钛矿型氧化物材料研究及原型纳米器件的制备/已结题 200万 2009.01-2011.12 主持
9.国家自然科学基金面上项目 钙钛矿型锰氧化物中的各向异性磁电阻效应研究 10874192
已结题 38万 2009.01-2011.12 主持
10.国家重大科学研究计划 纳尺度物性与多场耦合性质的探针测量技术研究 2012CB933004
在研 230万 2012-2016 参加
11.宁波市科技创新团队项目 纳米功能材料及其应用创新团队/已结题 1000万 2010.01-2014.12 参加


参与会议
(1)Ion transport and resistive switching effects in sandwiched structures   第八届中国中能材料及其应用学术会议   李润伟   2013-08-23
(2)Modulation of magnetic properties in flexible magnetic films   第八届环太平洋先进材料与工艺国际会议   Run-Wei Li   2013-08-22
(3)温度对铁电/铁磁异质结磁各向异性的调控研究   第十四届全国电介质物理会议   李润伟   2012-11-13
(4)Resistive Switching and Conductance Quantization in Oxide Sandwiched Structures   Run-Wei Li   2012-10-22
(5)Conductance Quantization in Oxide Sandwiched Structures   Run-Wei Li   2012-10-16
(6)Anomalous Anisotropic Magnetoresistance Effects in Perovskite Manganites   Run-Wei Li,   2012-10-05
(7)Conductance Quantization in Oxide Sandwiched Structures   中国物理学会年会2012   李润伟   2012-09-21
(8)应力驱动的电场对磁各向异性的调控   第七届全国磁性薄膜与纳米磁学会议   李润伟,刘宜伟   2012-06-19
(9),Ion transport and resistive switching in oxide sandwiched structures   Run-Wei Li   2012-06-13
(10)Resistive Switching Effects in Oxide Sandwiched Structures   Run-Wei Li   2011-10-07
(11)Extraordinary anisotropic magnetoresistance in strongly correlated systems   李润伟   2010-10-16
(12)Electrical transport properties and their applications of BiFeO3 films   CPS2010   李润伟   2010-09-18
(13)Electrial transport properties in BiFeO3 films   李润伟   2010-08-21
(14)钙钛矿型锰氧化物中的超大各向异性磁电阻效应   2009 中国电子学会应用磁学分会   李润伟   2009-12-26
(15)Electrical transport properties in BiFeO3 films   第二届功能氧化物材料与应用研讨会    李润伟   2009-12-19
(16)Fabrication of nanostructures with perovskite oxides by AFM lithography   李润伟   2008-11-22
(17)Farication of nanostructures with perovskite oxides by AFM lithography   李润伟   2008-09-20
(18)CAMR in perovskite manganite single crystals   第326次香山科学会议   李润伟   2008-07-26
(19)AFM lithography and fabrication of nanostructures with perovskite oxides   第一届全国纳米材料与结构、检测与表征研讨会   李润伟   2008-07-12
(20)AFM lithography and fabrication of nanostructures with perovskite oxides   李润伟   2008-06-14
(21)Al magic nanocluster arrays on Si-7*7 surfaces   李润伟   2008-03-22

合作情况

课题组与国内外多家著名研究机构,包括美国密歇根大学、美国路易斯安那州立大学、美国亚利桑那大学、新加坡国立大学、南洋理工大学、日本东北大学、日本国家材料科学研究所、日本大阪大学以及国内的研究院所建立了密切联系。同时,为推广高新技术的成果转让和产业化,研究室与多家企业建立了紧密的合作关系。


项目协作单位

美国密歇根大学

美国路易斯安那州立大学

美国亚利桑那大学

新加坡国立大学

南洋理工大学

日本东北大学

日本国家材料科学研究所、

日本大阪大学以及国内的研究院所


指导学生

已指导学生

何聪丽  02  19216  

苏文静  02  19216  

胡本林  01  19135  

彭姗姗  02  19575  

左正笏  01  19216  

陈双琴  02  19575  

杨智唤  02  19216  

代国红  01  19216  

黎嘉威  01  19216  

强健  02  63222  

刘宜伟  01  19216  

朱小健  01  19216  

陈欣欣  01  19216  

杨华礼  01  19216  

仲建安  02  63342  

张双兰  02  19216  

潘亮  01  19216  

檀洪伟  01  19216  

现指导学生

谢亚丽  01  19216  

郭姗姗  01  19216  

李彭  02  19216  

方清明  01  19216  

巫远招  01  19216  

李法利   01  19216  

课题组主页

http://page.nimte.ac.cn/lirunwei/index.html