代表性论文: | [1] Jiajun Zhao, Qiu Li*, Yao Wan, Yang Li, Lijie Wang, Haoran Xu, Quantitative stress relationship between doped α-Al2O3 and metal-based laser cladding layers. AIP Advances, 2025, 15(12), 125132.(SCI期刊) [2] Miaojing Wang, Huadan Xing, Rubing Li, Qiu Li*, Wei Qiu*, Micro-Raman spectroscopy investigation of deformation transfer at the interface between Bi2Se3 nanoflakes and a flexible substrate. Optics and Lasers in Engineering, 2025, 185, 108705. (SCI期刊, JCR影响因子:3.5) [3] 张硕, 乔文, 谭晓华, 王丽捷, 李秋*. 掺入α-Al2O3的激光熔覆层残余应力的光致发光光谱测量. 实验力学, 2024, 39(5): 590~598. [4] Zemiao Hou, Qiu Li*, Yuemin Wu, Qiang Yu* and Hongfei Liang, Progress in Zero-gravity Unloading Test and System Research of Solar Wing, Recent Patents on Engineering, 2024, 18(8): 123-134(EI期刊) [5] Kaleem Ullah†, Qiu Li†, Tiantian Li, and Tingyi Gu, Melting-free integrated photonic memory with layered polymorphs, Nanophotonics, 2024. 13(12): 2089-2099. (共同一作,SCI期刊, JCR影响因子:6.5) [6] Anishkumar Soman†, Robert Burke†, Qiu Li†, Michael Valentin, Tiantian Li, Dun Mao, Madan Dubey, Tingyi Gu, Hydrogen plasma exposure of monolayer MoS2 field-effect transistors and prevention of desulfurization by monolayer graphene, ACS Applied Materials & Interfaces, 2020, 12: 37305-37312. (共同一作,SCI期刊, JCR影响因子:8.019, WOS:000563074900049) [7] Qiu Li, Yong Wang, Tiantian Li, Wei Li, Feifan Wang, Anderson Janotti, Stephanie Law, Tingyi Gu, Localized strain measurement in molecular beam epitaxially grown chalcogenide thin films by micro-Raman spectroscopy, ACS Omega, 2020, 5(14): 8090-8096. (SCI期刊, JCR影响因子:2.584, WOS:000526342300038) [8] Qiu Li, Yanrong Gou, Tie-Gang Wang, Tingyi Gu, Qiang Yu, Lijie Wang, Study on local residual stress in a nanocrystalline Cr2O3 coating by micro-Raman spectroscopy. Coatings, 2019, 9(8): 500. (SCI期刊, JCR影响因子:2.33) [9] Lulu Ma, Huadan Xing, Qi Ding, Yuetao Han, Qiu Li*, and Wei Qiu*. Analysis of residual stress around a Berkovich nano-indentation by micro-Raman spectroscopy. AIP Advances, 2019, 9(1): 015010. (SCI期刊) [10] Qiu Li, Peng Gao, Wei Qiu, Multi-Scale Study of Tensile Mechanical Properties of Carbon Nanotube Film under Lateral Loading, Materials Science Forum, 2018, 932: 49-53. (EI:20184305977252) [11] Wu Liu, Qiu Li*, Gang Jin, and Wei Qiu, Measurement of the Euler Angles of Wurtzitic ZnO by Raman Spectroscopy, Journal of Spectroscopy, 2017, 2017(8):1-9. (SCI期刊, SCI: FE3NN) [12] Qiu Li, Yong Ge, Xiaohua Tan, Qiang Yu, and Wei Qiu, Experiment Research on Deformation Mechanism of CNT Film Material, Journal of Nanomaterials, 2016, 2016: 3942671. (SCI期刊, JCR影响因子:1.758, SCI: DM4LV,EI: 20162402491206) [13] Qiu Li, Wei Qiu, An in situ Raman spectroscopy study of load transfer for carbon nanotube film, Key Engineering Materials, 2016, 693: 529-534 (EI期刊, EI: 20162202432890) [14] 李秋, 仇巍, 邓卫林, 亢一澜. 原位微拉曼测试技术在碳纳米管纤维和薄膜材料力学性能研究中的应用. 实验力学, 2014, 29(3): 257-264. [15] Wei Qiu, Qiu Li, Zhenkun Lei, Qinghua Qin, Weilin Deng, and Yilan Kang. The use of a carbon nanotube sensor for measuring strain by micro-Raman spectroscopy. Carbon, 2013, 53: 161-168. (SCI期刊, JCR影响因子:6.198, SCI: 075YD) [16] Qiu Li, Jianshan Wang, Yilan Kang, Yali Li, Qinghua Qin, Zhulin Wang, Xiaohua Zhong, Multi-scale study of the strength and toughness of carbon nanotube fiber materials, Materials Science and Engineering A, 2012, 549: 118–122. (SCI期刊, JCR影响因子: 2.647, SCI: 960FQ) [17] Qiu Li, Yilan Kang, Wei Qiu, Yali Li, Ganyun Huang, Jiangang Guo, Weilin Deng and Xiaohua Zhong, Deformation mechanisms of carbon nanotube fibres under tensile loading by in-situ Raman spectroscopy analysis, Nanotechnology, 2011, 22: 225704. (SCI期刊, JCR影响因子: 3.573, SCI: 750BE, EI: 20111613919311) [18] Qiu Li, Wei Qiu, Haoyun Tan, Jiangang Guo, Yilan Kang, Micro-Raman spectroscopy stress measurement method for porous silicon film, Optics and Lasers in Engineering, 2010, 48(11): 1119–1125. (SCI期刊, JCR影响因子:2.319, SCI: 645ZX) [19] 李秋,申辉,仇巍,一种金刚石对顶砧压机步进加压装置,发明专利,申请号:202210159089.0,授权日2025.8.15 [20] 王若淳(本科生),李秋,王丽捷,林丙好,崔张俏,日历及日历组件,实用新型专利,专利号ZL201720759000.9,授权日2018.3.2 [21] 李秋,仇巍,张翔宇,张涛,偏振装置及显微仪,发明专利,专利号:201610893884.7,授权日2018.3.2 [22] 李秋,刘武,仇巍,运用拉曼光谱仪测量纤锌矿晶体欧拉角的方法,发明专利,专利号:2015103922710,授权日2017.7.21 |