副教授&副研究员

  • 逯瑶特聘副研究员
    个人主页:https://sme.dgut.edu.cn/info/1124/1290.htm
    专业方向:可穿戴热电技术,基于微型热电制冷的芯片热管理、GaN基外延及芯片技术
        
个人简介

逯瑶,女,籍贯山东菏泽。东莞理工学院国际微电子学院高层次学科骨干人才、特聘副研究员、硕士生导师,兼职任南方科技大学物理系访问学者、松山湖材料实验室客座专家以及Materials Futures期刊(ESCI收录)青年编委,获评“东莞市特色人才二类”。2019年获得同济大学材料科学与工程专业博士学位2019-2022年,南方科技大学物理系博士后主要从事柔性/微型热电技术领域研究工作以第一/通讯作者在Nat. Nanotech.,Energy Environ. Sci.,Mater. Today Phys.,ACS Appl. Mater. Interfaces等国际顶级期刊发表SCI收录论文十余篇,授权国家发明专利7项,主持博士后创新人才支持计划、博士后科学基金面上项目深圳市科技创新人才培养项目、广东省基础与应用基础研究基金区域联合基金、松山湖材料实验室开放课题等多项科研项目。

讲授课程:《半导体材料》,《微电子专业英语》

Yao Lu is an associate research fellow at International School of Microelectrics, Dongguan University of Technology since July 2022. She received her Ph.D. degree in materials science and engineering from Tongji University in December 2019. She worked as a postdoctoral fellow from 2019 to 2022 at Physics Department, Southern University of Science and Technology and worked as a visiting scholar from June 2022 up to now at Southern University of Science and Technology. Her research interests focus on thermoelectrics, flexible thermoelectric materials and devices, nitrides MOCVD growth and high-power LED structure. She has published more than 12 journal papers and 20 patents. She received awards of the fellowship of the National Postdoctoral Program for Innovative Talents of China and excellent postdoctoral fellow of Southern University of Science and Technology. Lu can be reached at G2 building room 201, International Innovation and entrepreneurship community, Songshan Lake, Dongguan 523811, China.


教育背景

2006-2010 济南大学,光信息科学与技术专业,学士

2010-2012 济南大学,光学专业,硕士

2016-2019 同济大学,材料科学与工程专业,博士

工作经历

2012-2016 浪潮集团,研发工程师

2019-2022 南方科技大学物理系,博士后

2022 至今 东莞理工学院国际微电子学院,特聘副研究员

发表的代表性论文

以第一作者和通讯作者身份在Nat. Nanotech., Energy Environ. Sci., Mater. Today Phys, ACS Appl. Mater. Interfaces等国际重要期刊发表论文十余篇; 其中2篇入选ESI热点论文以及高被引论文

[1] Y. Lu#, Y. Zhou#, W. Wang#, M. Y. Hu#, X.G. Huang, D.S. Mao, S. Huang, L. Xie, P.J. Lin, B.B. Jiang, B. Zhu, J.H. Feng, J.X. Shi, Q. Lou, Y. Huang, J.M. Yang, J.H. Li, G.D. Li, J.Q. He*. Staggered-layer-boosted Flexible Bi2Te3 Films with High Thermoelectric Performance. Nature Nanotechnology, 2023, 18, 1281-1288.

[2] Y. Lu, Y. Qiu, K.F. Cai*, Y.F. Ding, M.D. Wang, C. Jiang, Y. Qin, C.J. Huang, L.D. Chen*, J.Q. He*. Ultrahigh Performance and Flexible Silver Selenide-based Composite Film for Thermoelectric Devices, 2020, 13, 1240-1249. (Hot paper, ESI highly cited paper as of 2020.7)

[3] Y. Lu, Y. Qiu, K.F. Cai*, X. Li, M. Y. Gao, C. Jiang, J.Q. He*. Ultrahigh Performance PEDOT/Ag2Se/CuAgSe Composite Film for Wearable Thermoelectric Power Generators. Materials Today Physics, 2020, 14, 100223.

[4] Y. Lu, Y. Qiu, Q.L. Jiang, K.F. Cai*, Y. Du, H.J. Song, M.Y. Gao, C.J. Huang, J.Q. He*, D.H. Hu*. Preparation and Characterization of Te/PEDOT:PSS/Cu7Te4 Ternary Composite Films for Flexible Thermoelectric Power Generator. ACS Applied Materials & Interfaces, 2018, 10: 42310-42319.;

[5] Y. Lu, Y.F. Ding, Y. Qiu, K.F. Cai*, Q. Yao, H.J. Song, L. Tong, J.Q. He*, L.D. Chen*. Good Performance and Flexible PEDOT:PSS/Cu2Se Nanowire Thermoelectric Composite Films. ACS Applied Materials & Interfaces, 2019, 11: 12819-12829.

[6] Y. Lu, X. Li, K.F. Cai*, M.Y. Gao, W.Y. Zhao, J.Q. He, P. Wei*. Enhanced-Performance PEDOT:PSS/Cu2Se-Based Composite Films for Wearable Thermoelectric Power Generators. ACS Applied Materials & Interfaces, 2021, 13: 631-638.

[7] Y. Lu, P.J. Wang*, C.W. Zhang, X. Y. Feng, L. Jiang, G. L. Zhang. First-principle study on the electronic and optical study of Mn-doped SnO2. Physic B, 2011, 17: 3137-3141.

[8] Y. Lu, P.J. Wang*, C.W. Zhang, X. Y. Feng, L. Jiang, G. L. Zhang. Study of material properties of Fe, S Co-doped SnO2 by first principles. Acta Physica Sinica, 2012, 2: 2014-2017.

[9] Y. Lu, P.J. Wang*, C.W. Zhang, X. Y. Feng, L. Jiang, G. L. Zhang. First-principles calculation on electronic structure and optical properties of iron-doped SnO2. Acta Physica Sinica, 2011, 11: 414 -417.

[10] Y. Lu, P.J. Wang*, C.W. Zhang, X. Y. Feng, L. Jiang, G. L. Zhang, P. Song. Material opto-electronic properties of In, N co-doped SnO2 studied by first principles. Acta Physica Sinica, 2011, 6: 223-229.

[11] Y.F. Wang, P.J. Lin, Q. Lou, Z.Z. Chi, S. Huang*, Y. Lu*, J.Q. He*. Design Guidelines for Chalcogenide-Based Flexible Thermoelectric Materials. Materials Advances, 2021, 2: 2584-2593.

[12] X. Li, Y. Lu, K.F. Cai*, M.Y. Gao, Y.T. Li, Z.X. Wang, M.M. Wu, P. Wei*, W.Y. Zhao, Y. Du*, S. Shen. Exceptional power factor of flexible Ag/Ag2Se thermoelectric composite films. Chemical Engineering Journal, 2022, 434: 134739.

[13] L. Jiang, Y. Lu, C.W. Zhang, P.J. Wang*, etc. Influence of Oxygen Vacancy on Electronic and Magnetic properties in Cr Doped SnO2 Superlattice. Journal of the Physical Society of Japan, 2011, 80: 124709.


专利情况

共申请国家发明专利18项,已获得授权国家发明专利7项。

[1] 逯瑶,曲爽,王成新,马旺,徐现刚具有势垒高度渐变超晶格层的LED结构及其制备方法,发明专利,授权公告号:CN104465914B。

[2] 逯瑶,曲爽,王成新,张义,田龙敬。一种提高发光效率的GaN基LED外延结构及生长方法,发明专利,授权公告号:CN104716236B

[3] 逯瑶,曲爽,王成新,王志强,徐现刚,张恒。一种具有n型超晶格结构的LED外延结构及其生长方法,发明专利,授权公告号:CN104538517B

[4] 逯瑶,王志强,王成新,曲爽,李毓锋一种回收蓝宝石衬底的方法,发明专利,授权公告号:CN104868020B。

[5] 曲爽,王成新,逯瑶,徐现刚一种Al组分渐变式N型LED结构及其制备方法,发明专利,授权公告号:CN105140356B

[6] 王磊,曲爽,逯瑶,王成新,徐现刚。一种n型GaN结构的GaN基LED外延结构及生长方法,发明专利,授权公告号:CN105633235B

[7] 蔡克峰(导师),逯瑶高热电性能PEDOT:PSS/Cu掺杂硒化银柔性复合薄膜的制备方法,发明专利,授权公告号:CN111471196B。

[8]  逯瑶,曲爽,王成新,徐现刚一种具有N型AlInGaN接触层的LED及其制备方法,发明专利,公开号:CN105161592A

[9]  逯瑶,曲爽,王成新,徐现刚。一种以稼液滴作为缓冲层外延GaN的结构及其制备方法,发明专利,公开号:CN105070804A

[10] 逯瑶,曲爽,王成新,徐现刚。一种规整排列纳米粗化蓝宝石衬底及制备方法,发明专利,公开号:CN104465900A

[11] 逯瑶,王成新,曲爽一种具有P型AlInGaN接触层的LED及其制备方法,发明专利,公开号:CN105023980A

[12] 逯瑶,王成新,曲爽一种Al组分渐变式P型LED结构及制备方法,发明专利,公开号:CN104952994A

[13] 逯瑶,王成新,曲爽,马旺,王志强。一种P型超晶格的LED外延结构及其制备方法,发明专利,公开号:CN104600163A

[14] 何佳清(导师),逯瑶,黄亦。柔性复合热电薄膜及其制备方法和应用,发明专利,公开号:CN112670398A

[15] 何佳清(导师),周毅,逯瑶,胡明远,毛大厦。面向太阳能热电发电器件,发明专利,专利号:ZL202310540636.4

[16] 逯瑶, 张安平。一种可伸缩柔性热电器件的制备方法,发明专利,专利号:ZL202211434382.X

[17] 逯瑶,王欣,谭灿艺。一种制备热电电池集成器件的方法,发明专利,专利号:ZL202410113712.8

[18] 逯瑶,王欣,刘文静。一种热电集流体结构的电池及其制备方法,发明专利,专利号:ZL202410121270.1


科研项目经历

[1] 2020年度博士后创新人才支持计划   63万元  2020/06-2022/06,主持,结题;

[2] 博士后科学基金第68批面上资助项目  8万元 2020/11-2022/11,主持,结题;

[3] 深圳市优秀科技创新人才培养项目20万元 2021/04-2023/04,主持;

[4] 深圳市基础研究重点项目200万元2020/07-2023/07参与

[5] 广东省基础与应用基础研究基金区域联合基金青年基金项目 10万元 2023/11-2026/11,主持;

[6] 松山湖材料实验室开放课题面上项目 10万元 2024/01-2025/01,主持。


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