一、基本情况
高玲肖,女,博士,讲师。元光学者“启航A”, 毕业于重庆大学仪器科学与技术专业。
二、硕导所属学科
1、仪器科学与技术学科
研究方向一:自驱动传感技术
研究方向二:能量采集技术
研究方向三:无线通信技术
2、机械工程学科
研究方向一:人机交互
研究方向二:波浪能转换器件设计
研究方向三:振动能量采集器件设计
三、主持、参与的科研及教研项目情况(含获奖情况)
1. 面向单兵系统的摩擦纳米发电机光-电耦合机理及力-电平衡方法研究(52205591),主持,国家自然科学基金,在研
2. 基于异质半导体纳米粒子掺杂的摩擦起电性能光辐照调控机理研究(E2021202100),主持,河北省自然科学基金,在研
3. 面向智能物联网的超低功耗多源能量收集芯片自供电技术研究(JZ1xbet 日本語023016),主持,河北省高等学校科学技术研究项目(基础研究重点培育专项),在研
4. 摩擦-电磁复合振动取能器件开发(HC2250),主持,国家电网开放课题,在研
5. 面向能量收集的高性能压电材料研究(HC2288),主持,南方电网开放课题,在研
6. 测控技术与仪器专业多学科交叉的创新教育模式与实践 ,主持,2021年本科教育教学改革研究与实践项目,在研
7. 机械工程领域专业学位硕士研究生多元创新实践培养模式的探索,主持,机械工程学院研究生教育教学改革研究项目,在研
四、近年来发表代表性论文情况(仅限第一作者或通讯作者),主编或参编的教材、专著情况,获得专利情况等
[1] E Cheng, Z.S. Zhang, G.Z. Zhang, L.1xbet 日本語 Gao*, 1xbet 日本語/span>. Chen*, 1xbet 日本語/span>.Y. Bi, F. Bu, W. Kong, H. Yin, W. Hu, N. Hu*, A Triboe1xbet 日本語ctric Nanogenerator Coup1xbet 日本語d with Interna1xbet 日本語and E1xbet 日本語ernal Friction for Gesture Recognition Based on EHD Printing Techno1xbet 日本語gy, Nano Energy, 2023, 110, 108357. (*共同通讯作者)
[2] Z.Y. Wang*, M.M. Bu, K.H. 1xbet 日本語u, J.Y. Sun, N. Hu*, 1xbet 日本語/span>.B. Zhao*, L.1xbet 日本語 Gao*, F.Z. Kong, H. Zhu, J. Song, D. 1xbet 日本語u, A Fle1xbet 日本語ble, Stretchab1xbet 日本語 and Triboe1xbet 日本語ctric Smart Sensor Based on Graphene O1xbet 日本語de and Po1xbet 日本語acry1xbet 日本語mide Hydroge1xbet 日本語for High Precision Gait Recognition in Parkinsonian and Hemip1xbet 日本語gic Patients, Nano Energy, 2022, 104, 107978. (*共同通讯作者)
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[4] 1xbet 日本語/span>. Chen, Y.J. Zhao, F.Y. Wang, D.Q. Tong, L.1xbet 日本語 Gao*, D. 1xbet 日本語 Li, L. K. Wu, 1xbet 日本語 J. Mu*, Y. Yang*, Boosting Output Performance of Triboelectric Nanogenerator via Mutual Coupling Effects Enabled Photon-Carriers and Plasmon, Advanced Science, 2021, 9, 2103957. (*共同通讯作者)
[5] L.1xbet 日本語 Gao#, S. 1xbet 日本語#, W.B. 1xbet 日本語e, 1xbet 日本語 Chen, L.K. Wu, T.T. Wang, A.B. Wang, C.Q. Yue, D.Q. Tong, W.Q. Lei, H. Yu, 1xbet 日本語B. He, 1xbet 日本語J. Mu*, Z. L. Wang*, Y. Yang*, A Self-powered and Self-functional Tracking System Based on Triboelectric-electromagnetic Hybridized B1xbet 日本語e Energy Harvesting Modu1xbet 日本語 Nano Energy, 2020,72,104684.
[6] L.1xbet 日本語 Gao#, 1xbet 日本語 Chen#, S. Lu, H. Zhou, W.B. 1xbet 日本語e, J.F. Chen, M.K. Qi, H. Yu, 1xbet 日本語J. Mu*, Z.L. Wang* and Y. Yang*, Enhancing the Output Performance Of Triboe1xbet 日本語ctric Nanogenerator Via Grating-E1xbet 日本語ctrode Enabled Surface Plasmon E1xbet 日本語itation, Advanced Energy Materia1xbet 日本語, 2019, 9, 1902725.(封面文章)
[7] L.1xbet 日本語 Gao#, D.1xbet 日本語 Hu#, M.K. Qi, J. Gong, H. Zhou, 1xbet 日本語 Chen, J.F. Chen, J. Cai, L.K. Wu, N. Hu, Y. Yang*, 1xbet 日本語J. Mu*, A Double-heli1xbet 日本語structured Triboelectric Nanogenerator Enhanced with Positive Charge Traps for Se1xbet 日本語-powered Temperature Sensing and Smart-home Contro1xbet 日本語Systems, Nanosca1xbet 日本語, 2018,10, 19781.
[8] W.B. 1xbet 日本語e#, L.1xbet 日本語 Gao#, 1xbet 日本語K. Wu#, 1xbet 日本語 Chen, F.Y. Wang, D.Q. Tong, J. Zhang, J.Y. Lan, 1xbet 日本語B. He*, 1xbet 日本語J. Mu*, Y. Yang*, A Non-Resonant Hybridized E1xbet 日本語ctromagnetic -Triboe1xbet 日本語ctric Nanogenerator for Irregu1xbet 日本語r and U1xbet 日本語ra-1xbet 日本語w Frequency B1xbet 日本語e Energy Harvesting, Research, 2021,5963293.(#共同第一作者)
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[13] L.1xbet 日本語 Gao, 1xbet 日本語 Chen, F.Y. Wang, D.Q. Tong, 1xbet 日本語M. He, 1xbet 日本語J. Mu*, Enhancing the Output Charge Density of Triboe1xbet 日本語ctric Nanogenerator via Bui1xbet 日本語ing Charge B1xbet 日本語cking 1xbet 日本語/span>ayer, The the 34th Internationa1xbet 日本語Conference on Micro E1xbet 日本語ctro Mechanica1xbet 日本語Systems (IEEE MEMS 2021), 2021-01-25至2021-01-29.( Ora1xbet 日本語Presentation )
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[15] 1xbet 日本語 Zhai, L.1xbet 日本語 Gao*, Z.Y. Wang*, K.J. Dai, S. Wu, 1xbet 日本語J. Mu*, An Energy Harvester Coupled with Triboelectric Mechanism and Electrostatic Mechanism for Biomechanical Energy Harvesting, Nanomateria1xbet 日本語, 2022,12,933. (*共同通讯作者)
五、联系人:高玲肖,
联系方式:TE1xbet 日本語18223090296 Emai1xbet 日本語15922620987@163.com
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