高腾,女,山东济宁人,博士。2022年6月毕业于山东大学凝聚态物理专业,获得山东大学理学博士学位,主要研究方向为有机半导体光电器件。同年7月进入山东大学电气工程博士后流动站工作,研究方向主要为高压电力电子器件。
科研方面,先后主持中国博士后科学基金面上项目《硅凝胶中超快脉冲电场下电荷弛豫诱导的绝缘劣化及调控策略》(No. 2023M742055),山东省自然科学基金青年项目《有机硅凝胶中超快脉冲电场下电荷弛豫动力学及调控机理研究》 (No. ZR2023QE303),横向课题国网陕西省电力有限公司电力科学研究院项目《多物理场耦合变电站传感器可靠性试验及失效模型分析》。研究成果发表在Applied Physics Letters、Polymer Degradation and Stability、Journal of Physical Chemistry C、High Voltage等国内外期刊上。
主要学术成果:
[1] Teng Gao*, Dongxin He*, Zhizhen Liu, Zhe Xu, Shijie Xie, SynergisticImpact ofMolecularVibration andChargeBehavior onEnhanced InsulationFailure inSiliconeGel underUltra-fastPulsedElectricField[J]. Polymer Degradation and Stability, 225, 110767(2024).(IF=5.9)
[2]Teng Gao, Dongxin He*, Zhe Xu, Junyu Wei, Shijie Xie, Gilbert Teyssède, Zhizhen Liu, Bin Cui, Degradation induced by charge relaxation in silicone gels under the ultra-fast pulsed electric field[J]. High Voltage, Accept. (IF=4.4)
[3] Teng Gao, Dongxin He*, Quantum mechanism of insulation degradation induced by charge relaxation in silicone gel under the ultrafast pulsed electric field, The Proceedings of 2023 4th International Symposium on Insulation and Discharge Computation for Power Equipment (IDCOMPU2023). Lecture Notes in Electrical Engineering, vol 1101. Springer, Singapore. (EI收录)
[4]Han Li†,Teng Gao†, Dongxin He*, Shijie Xie*,Flashing ratchet effect for driving carriers to accelerate directional migration in organic photovoltaic devices[J]. Applied Physics Letters, 123. 10, 103902 (2023). (IF=4.0)
[5]Teng Gao,Qipeng Tian, Mengzhao Du, Longlong Zhang, Xuan Liu, Wei Qin, and Shijie Xie*, Synergistic effect of carrier velocity and density on chirality-induced spin selectivity in helical organic devices[J]. Applied Physics Letters, 120. 4, 032405 (2022). (IF=4.0)
[6]Teng Gao, Qiuxia Lu, Wei Qin, Fanyao Qu and Shijie Xie*, Thermally assisted charge transfer and charge separation in organic donor–acceptor solar cells[J]. Applied Physics Letters, 117.16, 163301 (2020). (IF=4.0)
[7]Teng Gao, Qiuxia Lu, Chong Li, Kun Gao and Shijie Xie*, Thermally induced exciton diffusion and dissociation in organic semiconductors[J]. The Journal of Physical Chemistry C, 123. 47, 28527-28532 (2019). (IF=3.7)