杨峰

副研究员

硕士生导师

学历:博士研究生毕业

学位:工学博士学位

办公地点:西南交通大学土木馆1604

主要任职:硕导

毕业院校:浙江大学

所在单位:集成电路科学与工程学院(西南交大-中车时代微电子学院)

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研究领域

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  1. 超高压/高频宽禁带半导体器件:面向碳化硅(SiC)、氮化镓(GaN)及氧化镓(Ga₂O₃)等超宽禁带材料,研究器件物理极限、界面缺陷调控与可靠性优化,开发适用于极端条件(高温、高辐射、高频)的功率芯片。

    • 探索金刚石半导体、二维材料异质集成等新体系,突破传统硅基器件的效率瓶颈。

    • 下一代功率器件:设计新型MOSFET、IGBT和二极管,为可再生能源系统、电动汽车和智能电网提供卓越性能。

    • 器件物理与建模:利用先进的仿真工具,深入研究载流子动态、热管理和高功率器件的可靠性。

    • 二维材料集成:探索石墨烯等二维材料在提升功率电子性能中的应用。

    • 可持续电子技术:开发高效节能器件,支持碳中和技术,降低全球能耗。

    • 论文 专利情况:

    • 论文:

    • 1. Junhua Zhou, Feng Yang*, Energy-Efficient Multi-Precision CNN Acceleration Using Single-Bit RRAM Architecture with Dynamic Quantization, IEEE 2nd International Conference on Deep Learning and Computer Vision, 2025 , 1-6.

    • 2. Feng Yang *, Huanxin Ren, Juan Gao, Dongheng Jiang, Wen-Guang Li, Qi-Jun Liu *, Yongfang Jia, Minghui Su, Min Pan, Wensheng Song, Investigating Carrier Transport Dynamics in Ag/CuS/Ti Schottky Barrier Diodes through Theoretical and Experimental Determination of Their Effective Hole Mass, Journal of Physical Chemistry C, 2025 , 129, 1110311110.

    • 3. Feng Yang *, Yangmin Diao, Yongfang Jia, Dongheng Jiang, Jianwei Sun, Keyu Liu, Min Pan, Wensheng Song, Defect-Mediated Coexistence of Bipolar Switching and Negative Differential Resistance in Carbon NanotubePVA Memristors: Mechanistic Insights and Performance Tuning, ACS Applied Electronic Materials, 2025 , 7, 77057717.

    • 4. Yongfang Jia, Juan Gao, Feng Yang *, Yangmin Diao, Qijun Liu *, Yong Zhang, Hongliang Sun, Min Pan, Mei Huang, Min Xu, Xuru Duan, Yong Zhao *, Oxygen-Vacancy-Mediated Large Binding Energy Exciton Dissociation in Nb3O7(OH) Nanorods with High Electron Mobility for CO2 Photoreduction, ACS Applied Materials & Interfaces, 2024 , 16, 24453–24463.

    • 5. Yangmin Diao, Feng Yang *, Yongfang Jia, Minghui Su, Junda Hu, Jianwei Sun, Dongheng Jiang, Dan Wang *, Yuan Pu, Yong Zhao, Bai Sun *, Transmission Mechanism and Logical Operation of Graphene-Doped Poly(vinyl alcohol) Composite-Based Memristor, ACS Applied Materials & Interfaces, 2024 , 16, 24772488.

    • 6. Feng Yang, Yanmei Yu, Qian Wang, Mayameen S. Kadhim, Dan Wang, Dong Xie, Ling Yuan, Yong Zhao, Xianglei He, Bai Sun *, Application of a flexible memristor in self-color electronics and its depth mechanism analysis, Ceramics International, 2023 , 49, 22460–22470.

    • 7. Xizi Qin, Hao Liu, Junda Hu, Jiajun Huang, Feng Yang *, Bai Sun, Yong Zhao, Min Xu, Xuru Duan, Mei Huang, Yong Zhang *, Light-Tunable Resistive Switching Properties of a BiFeO3/Ti3C2 Heterostructure Memristor, Journal of Electronic Materials, 2023 , 52, 10374.

    • 8. Yongfang Jia, Shulong Wen, Feng Yang *, Yangmin Diao, Yong Zhao *, Yong Zhang, Mei Huang, Min Xu, Xuru Duan, Yuan Pu, Dan Wang *, In-Depth Investigation of the Mechanism of Dehydration-Induced Phase Transformation from Nb3O7(OH) to H-Nb2O5: A Theoretical and Experimental Approach, Inorganic Chemistry, 2023 , 62, 20172–20183.

    • 9. Xizi Qin, Junda Hu, Hao Liu, Xin Xu, Feng Yang, Bai Sun, Yong Zhao, Mei Huang, Yong Zhang *, Performance Regulation of a ZnO/WOx-Based Memristor and Its Application in an Emotion Circuit, Journal of Physical Chemistry Letters, 2023 , 14, 3039–3046.

    • 10. Feng Yang, Wuyifan Zhou, Fuhai Li *, Ling Yuan, Yangmin Diao, Yinglu Liu, Yuan Pu, Yong Zhan, Yong Zhao, Ou Jiang, Dan Wang *. Sprayable coating based on uorinated silica nanocomposites with superhydrophobic and antibacterial properties for advanced concrete. Progress in Natural Science: Materials International. 2022 , 32, 472-481.

    • 11. Wuyifan Zhou, Feng Yang *, Ling Yuan, Yangmin Diao, Ou Jiang *, Yuan Pu, Yong Zhang, Yong Zhao and Dan Wang *. Construction of Superhydrophobic Coating on Iron Surface with Enhanced Anti-Corrosion, Anti-Adhesive and Anti-Bacterial Properties. Materials 2022 , 15(23), 8634.

    • 12. Bai Sun *, Guangdong Zhou, Tian Yu, Yuanzheng Chen, Feng Yang, and Yong Zhao *, Multi-factors-controlled ReRAM devices and their applications, Journal of Materials Chemistry C, 2022 , 10, 8895-8921.

    • 13. Shouhui Zhu, Bai Sun *, Guangdong Zhou, Chuan Ke, Tao Guo, Hongbin Zhao, Feng Yang, Yong Zhang, Yimin A. Wu, and Yong Zhao, A flexible resistive switching device for logical operation applications in wearable systems, Materials Today Chemistry, 2022 , 26, 101169.

    • 14. Jiangqiu Wang, Shuangsuo Mao, Shouhui Zhu, Wentao Hou, Feng Yang, Bai Sun *, Biomemristors-based synaptic devices for artificial intelligence applications, Organic Electronics, 2022 , 106, 106540.

    • 15. Huazhen Zuo, Feng Yang *, Ling Yuan *, Yong Zhang and Yong Zhao, Thermo-responsive polymers with aggregation induced emission, Journal of Macromolecular Science, Part A, 2021 , vol. 58, no. 5, pp. 317-328.

    • 16. Kejia Zhang, Kuan Ren, Xizi Qin, Shouhui Zhu, Feng Yang *, Yong Zhao *, and Yong Zhang *, Tunable Negative Differential Resistance and Resistive Switching Properties of Amorphous WOx Devices, IEEE Transactions on Electron Devices, 2021 , vol. 68, no.8, pp. 3807-3812.

    • 17. Kuan Ren, Kejia Zhang, Xizi Qin, Feng Yang *, Bai Sun, Yong Zhao * and Yong Zhang *, VETAM-M: A General Model for Voltage-Controlled Memcapacitive-Coupled Memristors, IEEE Transactions on Circuits and Systems II: Express Briefs, 2021 , DOI: 10.1109/TCSII.2021.3103553.

    • 18. Feng Yang *, Yunming Hou, Yudong Xia, Wentao Hou, Bai Sun *, Enhanced photochemical properties of S-doped ZnO half-arc mesoporous superstructured nanowires, Journal of Photochemistry and Photobiology A: Chemistry, 2021 , Vol. 409, Art. no. 113135.

    • 19. Gaomin Wang, Yongfang Jia, Bin Tang, Feng Yang *, Mi Zhong *, Qi-Jun Liu *, Theoretical study on structural, excitonic and electronic properties of Nb2O5 with five crystal structures, Materials Science in Semiconductor Processing, 2021 , vol. 130 , Art. no. 105831.

    • 20. Chunzheng Lv, Lirong He, Jiahong Tang, Feng Yang *, Chuhong Zhang *, An In-Situ Reaction Route to Molecular Level Dispersed Bisimide and ZnO Nanorod Hybrids with Efficient Photo-Induced Charge Transfer, Nanoscale Research Letters, 2021 , 16, 48.

    • 21. Ling Yuan, Lirong He, Yixi Wang, Xianhua Lang, Feng Yang *, Yong Zhao *, and Hui Zhao *, Two- and Three-Component Post-Polymerization Modifications Based on Meldrum’s Acid, Macromolecules 2020 , 53, 8, 3175–3181.

    • 22. Biao Hu, Chuan-hui Liang *, Feng Yang *, Jun Chen, Wei Jin, Hailong Xing, Lu Cai, Sen Yang, Ke-zhao Liu, Aart W. Kleyn, Chang-an Chen, TiO2 powder modied by plasma afterglow: A correlation between active species, microstructure, and optical properties, Materials Letters 2020 , 268, 127577.

    • 23. Mayameen S. Kadhim, Feng Yang *, Bai Sun *, Wentao Hou, Haixia Peng, Yunming Hou, Yongfang Jia, Ling Yuan, Yanmei Yu, Yong Zhao *, Existence of Resistive Switching Memory and Negative Differential Resistance State in Self-Colored MoS2/ZnO Heterojunction Device, ACS Appl. Electron. Mater. 2019 , 1, 3, 318-324.

    • 24. Feng Yang *, Mayameen S. Kadhim, Bai Sun *, Wentao Hou, Haixia Peng, Yunming Hou, Yongfang Jia, Ling Yuan, Yanmei Yu, Yong Zhao *, Ion reaction tunable ON/OFF ratio of vertically oriented Zn-Al layered-double-hydroxide nanosheets based memristor, Materials today communicaton, 2019 , 20, 100573.

    • 25. Xianglei He, Zhi Wang, Dan Wang, Feng Yang, Ruijie Tang, Jie-Xin Wang, Yuan Pu, Jianfeng Chen, Sub-kilogram-scale synthesis of highly dispersible zirconia nanoparticles for hybrid optical resins, Applied Surface Science, 2019 , 491, 505.

    • 26. Yimei Yang, Baoshan Hu, Wenbin Zhao, Qian Yang, Feng Yang, Juncong Ren, Xiaogang Li, Yan Jin, Liang Fang, Qingjiang Pan, Bridging N-doped graphene and carbon rich C3N4 layers for photo-promoted multi-functional electrocatalysts, Electrochimica Acta, 2019 , 317, 25.

    • 27. Shouhui Zhu, Guangdong Zhou, Weiyong Yuan, Shuangsuo Mao, Feng Yang, Guoqiang Fu,Bai Sun, Non-zero-crossing current-voltage hysteresis behavior induced by capacitive effects in bio-memristor, Journal of Colloid and Interface Science, 2019 , https://doi.org/10.1016/j.jcis.2019.10.087.

    • 28. Ling Yuan, Shuangwei Lu, Feng Yang *, Yushu Wang, Yongfang Jia, Mayameen S. Kadhim, Yanmei Yu, Yong Zhang, and Yong Zhao *, A facile room-temperature synthesis of three-dimensional coral-like Ag2S nanostructure with enhanced photocatalytic activity, J. Mater. Sci. 2019 , 54, 3174.

    • 29. Feng Huo, Wenfei Liang, Yuran Tang, Wei Zhang *, Xiaohong Liu, Desheng Pei, Huabin Wang, Weijiao Jia, Panpan Jia, Feng Yang *, Full-color carbon dots with multiple red-emission tuning: on/off sensors, in vitro and in vivo multicolor bioimaging, Journal of Materials Science, 2019 , 54, 6815–6825.

    • 30. Mayameen S. Kadhim, Feng Yang *, Bai Sun *, Yushu Wang, Tao Guo, Yongfang Jia, Ling Yuan, Yanmei Yu, and Yong Zhao *, A resistive switching memory device with a negative differential resistance at room Temperature, Appl. Phys. Lett. 2018 , 113, 053502.

    • 31. Yanmei Yu, Feng Yang *, Shuangsuo Mao, Shouhui Zhu, Yongfang Jia, Ling Yuan, Mayameen Salmen, Bai Sun *, Effect of anodic oxidation time on resistive switching memory behavior based on amorphous TiO2 thin lms device, Chem. Phys, Lett. 2018 , 706, 477.

    • 32. Yunting Du, Xiang Kan *, Feng Yang, Liyong Gan *, Udo Schwingenschlög, MXene/Graphene Heterostructures as High-Performance Electrodes for Li Ion Batteries, ACS Appl. Mater. Interfaces 2018 , 10, 32867.

    • 33. Wenli Ma, Feng Yang *, Yushu Wang, Junrong Chen,Ling Yuan,Dong Xie,Yong Zhao *,Yong Zhang,Jinfang PengSurface photovoltage inversion and photocatalytic properties of PbI2 microcrystals under sub-bandgap illumination, J Mater Sci 2017 , 52: 9696-9708.

    • 34. Feng Huo, Yushu Wang, Chao You, Wenqing Deng, Feng Yang *, Yuan Pu *, Phase- and size-controllable synthesis with efficient photocatalytic activity of ZnS nanoparticles, Journal of Materials Science, 2017 , 52, 5626–5633.

    • 35. Feng Yang *, Jinfang Xi, Li-Yong Gan, Shuangwei Lu, Wenli Ma, Fanggong Cai, Yong Zhang, Cuihua Cheng, Yong Zhao *. Improved charge transfer and photoelectrochemical performance of CuI/Sb2S3/TiO2 heterostructure nanotube arrays, J. Colloid Inter., Sci., 2016 , 464, 1-9.

    • 36. Fanggong Cai, Feng Yang *, Yong Zhang,Chuan ke,Yong Zhao *. PbS sensitized TiO2 nanotube arrays with different sizes and filling degrees for enhancing photoelectrochemical properties, Phys. Chem. Chem. Phys., 2014 , 16, 23967.

    • 37. Yongfang Jia, Feng Yang *, Fanggong Cai, Cuihua Cheng, Yong Zhao *, Photoelectrochemical and Charge Transfer Properties of SnS/TiO2 Heterostructure Nanotube Arrays. Electron Mater. Lett., 2013 , 9(3): 287-291.

    • 38. Fang-gong Cai, Feng Yang *, Jin-fang Xi, Yong-fang Jia,, Cui-hua Cheng, Yong Zhao *. Ultrasound effect: Preparation of PbS/TiO2 heterostructure nanotube arrays through successive ionic layer adsorption and the reaction method. Mater. Lett., 2013 , 107: 39-41.

    • 39. Fang-gong Cai, Feng Yang *, Yong-fang Jia,, Chuan Ke, Cui-hua Cheng, Yong Zhao *. Bi2S3-modified TiO2 nanotube arrays: easy fabrication of heterostructure and effective enhancement of photoelectrochemical property. J. Mater. Sci., 2013 , 48: 6001-6007.

    • 40. Fanggong Cai, Feng Yang *, Yong Zhao *. Effect of Crystallization Methods on the Surface Electronic Structure and Photoelectrochemical Properties of TiO2 Nanotube Arrays, Adv. Mater. Res., 2013 , 616-618:1906-1909.

    • 41. 柯川,蔡芳共,杨峰 *,程翠华,赵勇 *CuS/TiO2纳米管异质结阵列的制备及光电性能研究,高等学校化学学报, 2013 , 34(2): 423-428

    • 42. 王蓉,史占花,蔡芳共,杨峰 *,贾永芳,黎颖,程翠华,赵勇 *, ZnO/Cu2O异质结中深能级表面光伏特性研究, 高等学校化学学报, 2012 , 33(4): 768-771

    • 43. 廖鑫, 杨峰 *, 蒲明华, 赵勇 *, PbS量子点/ZnO纳米片复合膜的制备及其光电化学性能研究, 无机材料学报, 2012 , 27(1): 59-63

    • 44. 史占花,王蓉,杨峰 *,贾永芳,黎颖,程翠华,赵勇 *,钛箔上生长-Fe2O3纳米氧化膜及其光电性质研究,无机化学学报, 2012 , 28(7): 1338-1342

    • 45. 杨峰,蔡芳共,柯川,赵勇 *,程翠华, 退火对TiO2纳米管/线复合阵列表面光电性质的影响, 高等学校化学学报, 2011 , 32 (11): 2581-2585

    • 46. Fanggong Cai, Feng Yang *, Yong Zhao, Cuihua Cheng, Preparation of TiO2 Nanotube and Nanotube/Nanowire Composite Arrays by Temperature Control, Chinese J. Inorg. Chem., 2011 , 27(3): 504-508

    • 47. Xin Liao, Feng Yang *, Minghua Pu, Yong Zhao, Preparation of Cu2-xS nanotubes and their surface photovoltaic properties, Journal of Southwest Jiaotong University, 2011 , 46: 127-131.

    • 48. Feng Yang *, Kuiying Li, Jingzhi Sun *, Mang Wang, Gang Wu *, Yong Zhao, Direct Measurement and Identification of Nonradiative Processes in ZnO Nanocrystallines by Combining Photoacoustic Spectroscopy with Surface Photovoltage Spectroscopy, Adv. Mater. Res., 2011 , 361-363: 831-839.

    • 49. Wang Zhang Yuan, Li Tang, Hui Zhao, Jia Ke Jin, Jing Zhi Sun, Anjun Qin, Hai Peng Xu, Jiahao Liu, Feng Yang, Qiang Zheng, Erqiang Chen and Ben Zhong Tang, Direct Polymerization of Highly Polar Acetylene Derivatives and Facile Fabrication of Nanoparticle-Decorated Carbon Nanotubes, Macromolecules, 2009 , 42 (1): 52–61.

    • 50. Haipeng Xu, Jia Ke Jin, Yu Mao, Jing Zhi Sun, Feng Yang, Wang Zhang Yuan, Yong Qiang Dong, Mang Wang and Ben Zhong Tang, Synthesis of Sulfur-Containing Polyacetylenes and Fabrication of Their Hybrids with ZnO Nanoparticles, Macromolecules, 2008 , 41 (11): 3874–3883.

    • 51. Feng Yang, Jia Ke Jin, Qing Chen, Jing Zhi Sun *, Mang Wang *, Controllable synthesis of ZnO nanostructures using dodecythiol as ligands: A phase-transfer strategy, Mater. Lett., 2008 , 62(20): 3579-3581.

    • 52. Feng Yang, Bo Yu Xie, Jing Zhi Sun *, Jia Ke Jin, Mang Wang *, Preparation and wettability of Zn–Al layered double hydroxide film directly grown on highly porous anodic alumina oxide template, Mater. Lett., 2008 , 62(20): 1302-1304.

    • 53. HaiPeng Xu, BoYu Xie, WangZhang Yuan, JingZhi Sun, Feng Yang, YongQiang Dong, Anjun Qin, Shuang Zhang, Mang Wang, BenZhong Tang, Hybridization of thiol-functionalized poly (phenylacetylene) with cadmium sulfide nanorods: improved miscibility and enhanced photoconductivity, Chem. Commun., 2007 , (13): 1322-1324.

    • 54. K. Y. Li, F. Yang, Y. J. Tian, R. P. Liu *, W. K. Wang and H. T. Wang, Nonradiative transition mechanism on the surface of nanocrystalline La0.8Sr0.2FeO3 probed by photoacoustic and surface photovoltaic techniques, Phys. Rev. B, 2007 , 75: 045403.

    • 55. Li-Gong Yang, Lin Chen, Ru Bai, Feng Yang, Mang Wang, Hong-Zheng Chen, Modelling of organic nanograting heterojunctions for photoelectric conversion, Sol. Energy Mater. Sol. Cells, 2007 , 91(12): 1110-1119.

    • 56. WangZhang Yuan, JingZhi Sun, Yongqiang Dong, Matthias Häussler, Feng Yang, HaiPeng Xu, Anjun Qin, Jacky W. Y. Lam, Qiang Zheng, and Ben Zhong Tang, Wrapping Carbon Nanotubes in Pyrene-Containing Poly(phenylacetylene) Chains: Solubility, Stability, Light Emission, and Surface Photovoltaic Properties, Macromolecules, 2006 , 39 (23): 8011–8020.

    • 57. Xingfa Ma, Guang Li, Mang Wang, Ru Bai, Feng Yang, Hongzheng Chen, Unusual electrical response of a poly(aniline) composite film on exposure to a basic atmosphere and its application to sensors, Green Chem., 2006 , (1), 63-69.

    • 授权专利:

    • 1、一种空心微米硫球的制备方法,杨峰,刘艳华,赵勇,专利号:200910060317.3  

    • 2、一种用作镍/锌电池负极材料的纳米花形硫酸氢氧锌的制备方法,杨峰,赵勇,专利号:201010181457.9 

    • 3、一种低光强下高转换效率染料敏化太阳能电池TiO2薄膜的制备方法,杨峰,赵勇,专利号:201010181108.7

    • 4、一种晶化TiO2纳米管阵列的制备方法,杨峰,柯川,蔡芳共,赵勇,专利号:201010176281.8

    • 5、一种树枝状硫纳米结构的制备方法,杨峰,赵勇,专利号:201010181055.9

    • 6、一种多种形貌硫掺杂纳米ZnO的制备方法,杨峰,刘艳华,赵勇,专利号:200910060317.3

    • 7、一种同步制备晶化TiO2纳米管线复合阵列无基底透明薄膜的方法,杨峰,蔡芳共,赵勇,专利号:201010592189.X

    • 8、高光电效率的二氧化钛光纳米管阵列光阳极的制备方法,杨峰,蔡芳共,赵勇,专利号:201010190390.5

    • 9、一种制备ZnO微米棒的方法,杨峰,赵勇,专利号:ZL 201010181458.3

    • 10、一种宽光谱、强吸收的表面光伏型光探测器的制备方法,杨峰,蔡芳共,赵勇,专利号:201110342504.8

    • 11、一种同步合成两种ZnO纳米结构的方法,杨峰,赵勇,专利号:201110341451.8

    • 12、有层次结构的纳米铁立方体和纳米铁花状结构的制备方法,杨峰,史占花,赵勇,专利号:201110343740.1

    • 13、一种宽光谱、强吸收的表面光伏型光探测器的制备方法,杨峰,蔡芳共,赵勇,专利号:201110342504.8

    • 14、网格状CuxS/Cu2O,x=1.75~2复合类金字塔薄膜的制备方法,杨峰,王蓉,赵勇,专利号:201110342131.4

    • 15、一种具有微纳结构的α-Fe2O3光电极的制备方法,杨峰,史占花,赵勇,专利号:201110341454.1

    • 16、一种半弧形Bi2Se3超薄纳米片的制备方法,杨峰,黎颖,赵勇,专利号:201210264930.9

    • 17一种纯金属铌片着全色的方法,杨峰,王倩,赵勇,专利号:201310122245.7

    • 18、杨峰,鲁双伟,赵勇. 一种微米实心硫化铜球的制备方法,专利号:201410746042.X

    • 19、杨峰,鲁双伟,赵勇. 一种蠕虫状纳米硫化银薄膜的制备方法,专利号:201510348950.8

    • 20、杨峰,邹龙生,赵勇. 一种宽光强适用范围二氧化钛纳米管阵列复合光阳极的制备方法,专利号:201510346909.7

    • 21杨峰,任焕鑫,孙柏,赵勇,张勇, 一种忆阻耦合电容效应高性能忆阻器的制备方,发明专利号:202110544500.1


 

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