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杨磊
发布人: 发布时间:2020-07-23 浏览次数:

   

杨磊,男,博士生导师,四川省特聘专家。2009年本科毕业于金沙威尼斯欢乐娱人城;2012年硕士毕业于澳大利亚昆士兰大学;20168月获澳大利亚昆士兰大学博士学位;201610月至20177月澳大利亚昆士兰大学博士后;20179月至20209月金沙威尼斯欢乐娱人城材料学院特聘副研究员,202010月至今金沙威尼斯欢乐娱人城副教授。获中央高校基本科研业务费专项资金和四川省天府峨眉计划项目资助,承担一项国家自然科学基金青年项目,参与多项省、市级项目。

主要研究高性能热电材料的纳米化合成及表征,至今在Advanced Materials, Advanced Energy MaterialsNano Today, Nano EnergyAdvanced Functional MaterialsNano LettersACS NanoNature CommunicationsJournal of the American Chemical SocietyJournal of Materials Chemistry AChemical Engineering Journal, Acta MaterialiaACS Applied Materials & Interfaces等高水平期刊上发表论文超90篇,引用超过5000次。

地址:金沙威尼斯欢乐娱人城逸夫科技楼105

电子邮箱: lyang1986@scu.edu.cn

研究方向:热电材料, 热电微器件,纳米功能材料

近年代表性论文列表:

  1. Hua-Lei Yuan, Kaiwen Wang, Hanwen Hu, Lei Yang*, Jie Chen, Kun Zheng*. Atomic-Scale Observation of Grain Boundary Dominated Unsynchronized Phase Transition in Polycrystalline Cu2Se. Advanced Materials, 2022, 2205715.

  2. Deyu Bao, Qiang Sun, Linsen Huang, Jie Chen, Jun Tang, Dali Zhou*, Min Hong, Lei Yang*, Zhi-Gang Chen. Thermoelectric performance of p-type (Bi,Sb)2Te3 incorporating amorphous Sb2S3 nanospheres. Chemical Engineering Journal, 2022, 430, 132738.

  3. Bang-Zhou Tian, Jie Chen, Xu-Ping Jiang, Jun Tang, Da-Li Zhou, Qiang Sun*, Lei Yang*, Zhi-Gang Chen. Enhanced thermoelectric performance of SnTe-Based materials via interface engineering. ACS Applied Materials & Interfaces, 2021, 13, 42, 50057–50064.

  4. Jie Chen, Qiang Sun, Deyu Bao, Bang-Zhou Tian, Zegao Wang, Jun Tang, Dali Zhou*, Lei Yang*, Zhi-Gang Chen. Simultaneously enhanced strength and plasticity of Ag2Se-based thermoelectric materials endowed by nano-twinned CuAgSe secondary phase. Acta Materialia, 2021, 220, 117335.

  5. Xu-Ping Jiang, Bang-Zhou Tian, Qiang Sun, Xu-Liang Li, Jie Chen, Jun Tang, Ping Zhang*, Lei Yang*, Zhi-Gang Chen. Enhanced thermoelectric performance in MXene/SnTe nanocomposites synthesized via a facile one-step solvothermal method. Journal of Solid State Chemistry, 2021, 304, 122605.

  6. Jie Chen, Hualei Yuan, Yu-Ke Zhu, Kun Zheng, Zhen-Hua Ge, Jun Tang, Dali Zhou*, Lei Yang*, and Zhi-Gang Chen. Ternary Ag2Se1–xTex: a near-room-temperature thermoelectric material with a potentially high figure of merit. Inorganic Chemistry, 2021, 60, 14165–14173.

  7. Bang-Zhou Tian, Xu-Ping Jiang, Jie Chen, Han Gao, Ze-Gao Wang, Jun Tang, Da-Li Zhou, Lei Yang*, Zhi-Gang Chen*. Low lattice thermal conductivity and enhanced thermoelectric performance of SnTe via chemical electroless plating of Ag. Rare Metals, 2022, 41, 86–95.

  8. Jie Chen, Deyu Bao, Qiang Sun, Wei-Di Liu, Can Liu, Jun Tang, Lei Yang*, Dali Zhou*, Matthew S. Dargusch, Zhi-Gang Chen. Simultaneously optimized thermoelectric performance of n-type Cu2Se alloyed Bi2Te3. Journal of Solid State Chemistry, 2021, 296, 121987.

  9. Jie Chen, Qiang Sun, Deyu Bao, Taoyi Liu, Wei-Di Liu, Can Liu, Jun Tang, Dali Zhou, Lei Yang,* Zhi-Gang Chen. Hierarchical structures advance thermoelectric properties of porous n-type β-Ag2Se. ACS Applied Materials & Interfaces, 2020, 12, 46, 51523-51529.

  10. Taoyi Liu, Jie Chen, Meng Li, Guang Han, Can Liu, Dali Zhou*, Jin Zou, Zhi-Gang Chen, Lei Yang*. Achieving enhanced thermoelectric performance of Ca1-x-yLaxSryMnO3 via synergistic carrier concentration optimization and chemical bond engineering. Chemical Engineering Journal, 2021, 408, 127364.

  11. Jie Chen, Taoyi Liu, Deyu Bao, Bin Zhang, Guang Han, Can Liu, Jun Tang, Dali Zhou,* Lei Yang,* Zhi-Gang Chen. Nanostructured monoclinic Cu2Se as a near-room- temperature thermoelectric material. Nanoscale, 2020, 12, 20536.

  12. Wei-Di Liu; Lei Yang*; Zhi-Gang Chen*. Cu2Se thermoelectrics: property, methodology, and device. Nano Today, 2020, 35, 100938.

  13. Licheng Zhao; Ping Zhang*; Yanan Zhang; Zhi Zhang; Lei Yang*; Zhi-Gang Chen. Facile Synthesis of Hierarchical Ni3Se2 Nanodendrite Arrays for Supercapacitors, Journal of Materials Science and Technology, 2020, 54, 69-76. (Front cover)

  14. Deyu Bao; Jie Chen; Yuan Yu; Weidi Liu; Linsen Huang; Guang Han; Jun Tang; Dali Zhou*; Lei Yang*; Zhi-Gang Chen*. Texture-dependent thermoelectric properties of nano-structured Bi2Te3. Chemical Engineering Journal, 2020, 388, 124295. (Highly cited)

  15. Taoyi Liu; Deyu Bao; Yuan Wang; Han Gao; Dali Zhou*; Guang Han; Jun Tang; Zhong-Yue Huang; Lei Yang*; Zhi-Gang Chen. Exploring thermoelectric performance of Ca3Co4O9+δ ceramics via chemical electroless plating with Cu. Journal of Alloys and Compounds, 2020, 821, 152522.

  16. Wang-Wei Liao; Lei Yang*; Jie Chen; Da-Li Zhou*; Xian-lin Qu; Kun Zheng; Guang Han; Jia-Bei Zhou; Min Hong; Zhi-Gang Chen*. Realizing Bi-doped α-Cu2Se as a Promising Near-Room-Temperature Thermoelectric Material. Chemical Engineering Journal, 2019, 371, 593-599.

  17. Yuan Wang; Lei Yang; Xiaolei Shi; Xun Shi; Lidong Chen; Matthew S. Dargusch; Jin Zou; Zhi-Gang Chen*. Flexible Thermoelectric Materials and Generators: Challenges and Innovations. Advanced Materials, 2019, 31, 1807916.

  18. Wei-Di Liu; Lei Yang; Zhi-Gang Chen*, Jin Zou*. Promising and EcoFriendly Cu2X-Based Thermoelectric Materials: Progress and Applications. Advanced Materials 2020, 32, 1905703.

  19. Zhong-Yue Huang; He Zhang; Lei Yang*; Bin Zhu; Kun Zheng; Min Hong; Yuan Yu; FQ Zu*; Jin Zou; Zhi-Gang Chen*. Achieving high thermoelectric performance of Ni/Cu modified Bi0.5Sb1.5Te3 composites by a facile electroless plating. Materials Today Energy, 2018,9, 383-390.

  20. Yang, L.; Chen, Z.-G.; Dargusch, M.; Zou, J. High Performance Thermoelectric Materials: Progress and Their Applications. Advanced Energy Materials, 20171701797. (Highly Cited)

  21. Yang, L.; Chen, Z.-G.; Hong, M.; Wang, L.; Kong, D.; Huang, L.; Han, G.; Zou, Y.; Dargusch, M.; Zou, J., n-type Bi-doped PbTe nanocubes with enhanced thermoelectric performance. Nano Energy, 2017, 31, 105-112.

  22. Yang, L.; Chen, Z. G.; Han, G.; Hong, M.; Huang, L.; Zou, J., Te-doped Cu2Se nanoplates with high average thermoelectric figure of merit. Journal of Materials Chemistry A, 2016, 4, 9213-9219.

  23. Yang, L.; Chen, Z.-G.; Han, G.; Hong, M.; Zou, J., Impacts of Cu deficiency on the thermoelectric properties of Cu2−XSe nanoplates. Acta Materialia, 2016,113, 140-146.

    出版图书:

  24. Lei Yang; Zhi-Gang Chen; Jin Zou. Chapter 1-High-Performance Thermoelectric Materials for Solar Energy Application. In Emerging Materials for Energy Conversion and Storage, Kuan Yew Cheong, Giuliana Impellizzeri, Mariana Amorim Fraga, Eds. Elsevier: 2018; pp 3-38. (ISBN 9780128137949)

会议:

Lei Yang, Synergistically enhanced thermoelectric performance enabled by interface engineering, invited speaker, 2021 International Conference on Manipulation, Manufacturing and Measurement on the Nanoscale” (IEEE 3M-NANO 2021), 2-6 August, Xi'an (online), China.


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