逄金波
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姓名 | 逄金波 | 性别 | 男 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
民族 | 汉 | 出生年月 | 1985-12-06 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
学历|学位 | 研究生|博士 | 专业技术职务 | 副教授、校特聘教师A3岗 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
联系电话 | 19853120836 | 邮箱 | ifc_pangjb@ujn.edu.cn | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
通讯地址 | 邮编 | 山东省济南市市中区南辛庄西路336号济南大学前沿交叉科学研究院逸夫科学楼B212研究室 | 250022 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
招生方向(领域) | 化学:1-2名 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
研究领域、学习工作经历、学术兼职等情况 | 逄金波,男,博士,副教授,硕士研究生导师,校聘A3岗教师,山东省优青。济南大学前沿交叉科学研究院;在二维材料合成及光电器件领域已有十余年的科研工作经历,积累了丰富的经验,在德国攻读博士学位期间,研究课题为石墨烯的热沉积法合成,在德国从事博士后研究期间,申请人将研究方向拓展为二维过渡金属硫属化合物(包含二硒化钨、二硫化钼)的合成、球差透射电镜表征结构和电学输运及电子器件效能。 主要学术任职 所得荣誉称号 工作经历 学习经历 2013.04-2017.03 2011.09-2013.03 2008.09-2011.07 2004.09-2018.07 研究课题 主持基金项目 参与基金项目 |
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代表性科研成果及奖励: (包括项目、鉴定、论文、专著、专利等) |
科研论文 [1] Pang, J.; Mendes, R. G.; Bachmatiuk, A.; Zhao, L.; Ta, H. Q.; Gemming, T.; Liu, H.; Liu, Z.; Rummeli, M. H. Applications of 2D MXenes in energy conversion and storage systems. Chemical Society reviews 2019, 48, 72-133. (Inside front cover) (IF=42.846) (新颖二维材料可控制备及应用课题) [2] Pang, J.; Bachmatiuk, A.; Yin, Y.; Trzebicka, B.; Zhao, L.; Fu, L.; Mendes, R. G.; Gemming, T.; Liu, Z.; Rummeli, M. H. Applications of Phosphorene and Black Phosphorus in Energy Conversion and Storage Devices. Advanced Energy Materials 2018, 8, 1702093. (IF=25.245) (新颖二维材料可控制备及应用课题) [3] Pang, J.; Mendes, R. G.; Wrobel, P. S.; Wlodarski, M. D.; Ta, H. Q.; Zhao, L.; Giebeler, L.; Trzebicka, B.; Gemming, T.; Fu, L.; Liu, Z.; Eckert, J.; Bachmatiuk, A.; Rummeli, M. H. Self-Terminating Confinement Approach for Large-Area Uniform Monolayer Graphene Directly over Si/SiOx by Chemical Vapor Deposition. ACS nano 2017, 11, 1946-1956. (IF=14.588) (石墨烯课题) [4] Cheng, Q.; Pang, J.*; Sun, D.; Wang, J.; Zhang, S.; Liu, F.; Chen, Y.; Yang, R.; Liang, N.; Lu, X.; Ji, Y.; Wang, J.; Zhang, C.; Sang, Y.; Liu, H.; Zhou, W. WSe2 2D p‐type semiconductor‐based electronic devices for information technology: Design, preparation, and applications. InfoMat 2020, 22, 656-697. (所指导的学生Cheng Qilin 作为第一作者发表SCI文章, Wiley期刊InfoMat;本人通讯作者,星号*代表通讯作者) [5] Jiang, J.#; Meng, F.#; Cheng, Q.#; Wang, A.#; Chen, Y.; Qiao, J.; Pang, J.; Xu, W.; Ji, H.; Zhang, Y.; Zhang, Q.; Wang, S.; Feng, X.; Gu, L.; Liu, H.; Han, L. Low Lattice Mismatch InSe–Se Vertical Van der Waals Heterostructure for High‐performance Transistors via Strong Fermi‐Level Depinning. Small Methods 2020, 4, 2000238. (IF=12.13)(所指导的研究生Cheng Qilin 作为共同第一作者,参与范德华异质结FET项目;#代表共同第一作者) [6] Jiang, J.#; Meng, F.#; Cheng, Q.#; Wang, A.#; Chen, Y.; Qiao, J.; Pang, J.; Xu, W.; Ji, H.; Zhang, Y.; Zhang, Q.; Wang, S.; Feng, X.; Gu, L.; Liu, H.; Han, L. Low Lattice Mismatch InSe–Se Vertical Van der Waals Heterostructure for High‐performance Transistors via Strong Fermi‐Level Depinning (Small Methods 8/2020). Small Methods 2020, 4, 2070032. (IF=12.13)(所指导的研究生Cheng Qilin 参与范德华异质结FET项目,获选内封面文章) [7] Wang, J.; Zhang, C.; Chen, D.; Sun, M.; Liang, N.; Cheng, Q.; Ji, Y.; Gao, H.; Guo, Z.; Li, Y.; Sun, D.; Li, Q.; Liu, H. Fabrication of a Sensitive Strain and Pressure Sensor from Gold Nanoparticle-Assembled 3D-Interconnected Graphene Microchannel-Embedded PDMS. ACS Appl Mater Interfaces 2020, 12, 51854-51863. (IF=8.758)(所指导的研究生Cheng Qilin 参与触觉传感器项目) [8] Sun, B.; Pang, J.; Cheng, Q.; Zhang, S.; Zhang, C.; Sun, D.; Li, Y.; Chen, D.; Fan, H.; Han, Q.; Chao, M.; Liu, H.; Wang, J.; Han, L.; Zhou, W. Synthesis of wafer-scale graphene with chemical vapor deposition for electronic device applications. Adv. Mater. Technol. 2021, 2000744. doi: 10.1002/admt.202000744. (IF=5.969)(所指导的学生Sun Baojun为第一作者,本人为通讯作者,负责晶圆级石墨烯合成项目) [9] Cao, Y.; Liu, C.; Jiang, J.; Zhu, X.; Zhou, J.*; Ni, J.; Zhang, J.; Pang, J.*; Rummeli, M. H.; Zhou, W.; Liu, H.*; Cuniberti, G.* Theoretical Insight into High Efficiency Triple Junction Tandem Solar Cells via the Band Engineering of Antimony Chalcogenides. Solar RRL 2021, 2000800. doi: 10.1002/solr.202000800. (IF=7.527)(本人通讯作者. 合作薄膜太阳电池项目) [10] Zhou, J.; Chen, H.; Zhang, X.; Chi, K.; Cai, Y.; Cao, Y.*; Pang, J.* Substrate dependence on (Sb4Se6)n ribbon orientations of antimony selenide thin films: morphology, carrier transport and photovoltaic performance. J. Alloy Compd. 2021, 862, 158703. doi: 10.1016/j.jallcom.2021.158703. (IF=4.869)(本人通讯作者. 合作薄膜太阳电池项目,合作方:东北电力大学教育部重点实验室) [11] Chen, D.; Liu, Z.; Li, Y.; Sun, D.; Liu, X.; Pang, J.; Liu, H.; Zhou, W. Unsymmetrical Alveolate PMMA/MWCNT Film as a Piezoresistive E-Skin with Four-Dimensional Resolution and Application for Detecting Motion Direction and Airflow Rate. ACS Appl Mater Interfaces 2020, 12, 30896-30904. (IF=8.758) (本校的触觉传感器项目) [12] He, Z.; Liu, Y.; Lin, S.; Shi, S.; Sun, S.; Pang, J.; Zhou, Z.; Sun, Y.; Liu, W. Energy Band Alignment in Molybdenum Oxide/Cu(In,Ga)Se2 Interface for High-Efficiency Ultrathin Cu(In,Ga)Se2 Solar Cells from Low-Temperature Growth. ACS Applied Energy Materials 2020, 3, 3408-3414. (IF=4.473)(南开大学光电所合作,天津市重点实验室,光电课题) [13] Han, Y.; Wang, H.; Qiang, L.; Gao, Y.; Li, Q.; Pang, J.; Liu, H.; Han, L.; Wu, Y.; Zhang, Y. Fabrication of a uniform Au nanodot array/monolayer graphene hybrid structure for high-performance surface-enhanced Raman spectroscopy. Journal of Materials Science 2019, 55, 591-602. (IF=3.553)(山东大学海洋研究院合作,二维材料拉曼增强光学探测课题) [14] Gao, J.; Gao, Y.; Han, Y.; Pang, J.; Wang, C.; Wang, Y.; Liu, H.; Zhang, Y.; Han, L. Ultrasensitive Label-free MiRNA Sensing Based on a Flexible Graphene Field-Effect Transistor without Functionalization. ACS Applied Electronic Materials 2020, 2, 1090-1098. (山东大学海洋研究院合作,二维材料FET场效应晶体管课题) [15] Jiang, J.; Zhang, Y.; Wang, A.; Duan, J.; Ji, H.; Pang, J.; Sang, Y.; Feng, X.; Liu, H.; Han, L. Construction of High Field-Effect Mobility Multilayer MoS2 Field-Effect Transistors with Excellent Stability through Interface Engineering. ACS Applied Electronic Materials 2020, 2, 2132-2140. (山东大学海洋研究院合作,二维材料FET场效应晶体管课题) [16] Hao, Q.#; Pang, J.#; Zhang, Y.; Wang, J.; Ma, L.; Schmidt, O. G. Boosting the Photoluminescence of Monolayer MoS2 on High-Density Nanodimer Arrays with Sub-10 nm Gap. Advanced Optical Materials 2018, 6, 1700984. . (#joint first author 共同第一作者) (IF=8.286) (二维光学传感器课题) [17] Zhou, Y.; Wang, Y.; Wang, K.; Kang, L.; Peng, F.; Wang, L.; Pang, J.* Hybrid genetic algorithm method for efficient and robust evaluation of remaining useful life of supercapacitors. Applied Energy 2020, 260, 114169. (IF=8.848) (超级电容器课题) [18] Cao, Y.; Zhu, X.; Jiang, J.; Liu, C.; Zhou, J.; Ni, J.; Zhang, J.; Pang, J.* Rotational design of charge carrier transport layers for optimal antimony trisulfide solar cells and its integration in tandem devices. Solar Energy Materials and Solar Cells 2020, 206, 110279. (IF=6.984)(通讯作者,光电课题) [19] Mendes, R. G.; Pang, J.; Bachmatiuk, A.; Ta, H. Q.; Zhao, L.; Gemming, T.; Fu, L.; Liu, Z.; Rummeli, M. H. Electron-Driven In Situ Transmission Electron Microscopy of 2D Transition Metal Dichalcogenides and Their 2D Heterostructures. ACS nano 2019, 13, 978-995. (IF=14.588) (二维过渡金属硫属化合物异质结TMDC vdwH课题) [20] Cao, Y.; Zhu, X.; Chen, H.; Zhang, X.; Zhouc, J.; Hu, Z.; Pang, J.* Towards high efficiency inverted Sb2Se3 thin film solar cells. Solar Energy Materials and Solar Cells 2019, 200, 109945. (IF=6.984) (通讯作者,光电课题) [21] Yin, Y.; Pang, J.; Wang, J.; Lu, X.; Hao, Q.; Saei Ghareh Naz, E.; Zhou, X.; Ma, L.; Schmidt, O. G. Graphene-Activated Optoplasmonic Nanomembrane Cavities for Photodegradation Detection. ACS Applied Materials & Interfaces 2019, 11, 15891-15897. (IF=8.758) (光学传感器课题) [22] Zhou, Y.; Huang, Y.; Pang, J.; Wang, K. Remaining useful life prediction for supercapacitor based on long short-term memory neural network. Journal of Power Sources 2019, 440, 227149. (IF=8.247) (超级电容器课题) [23] Pang, J.; Bachmatiuk, A.; Fu, L.; Yan, C. L.; Zeng, M. Q.; Wang, J.; Trzebicka, B.; Gemming, T.; Eckert, J.; Rummeli, M. H. Oxidation as A Means to Remove Surface Contaminants on Cu Foil Prior to Graphene Growth by Chemical Vapor Deposition. J Phys Chem C 2015, 119, 13363-13368. (IF=4.189) (石墨烯精确制备课题) [24] Pang, J.; Bachmatiuk, A.; Fu, L.; Mendes, R. G.; Libera, M.; Placha, D.; Martynkova, G. S.; Trzebicka, B.; Gemming, T.; Eckert, J.; Rummeli, M. H. Direct synthesis of graphene from adsorbed organic solvent molecules over copper. RSC Adv. 2015, 5, 60884-60891. (IF=3.119) (石墨烯精确制备课题) [25] Pang, J.; Bachmatiuk, A.; Ibrahim, I.; Fu, L.; Placha, D.; Martynkova, G. S.; Trzebicka, B.; Gemming, T.; Eckert, J.; Rümmeli, M. H. CVD growth of 1D and 2D sp2 carbon nanomaterials. Journal of Materials Science 2015, 51, 640-667. (IF=3.553) (石墨烯精确制备课题) [26] Pang, J.; Cai, Y. A.; He, Q.; Wang, H.; Jiang, W. L.; He, J. J.; Yu, T.; Liu, W.; Zhang, Y.; Sun, Y. Preparation and Characteristics of MoSe2 Interlayer in Bifacial Cu(In,Ga)Se2 Solar Cells. Physics Procedia 2012, 32, 372-378. (EI) [27] Olszowska, K.#; Pang, J.#; Wrobel, P. S.; Zhao, L.; Ta, H. Q.; Liu, Z.; Trzebicka, B.; Bachmatiuk, A.; Rummeli, M. H. Three-dimensional nanostructured graphene: Synthesis and energy, environmental and biomedical applications. Synthetic Met 2017, 234, 53-85. (#joint first author) (IF=3.286) (石墨烯精确制备课题) [28] Cao, Y.; Zhu, X.; Tong, X.; Zhou, J.; Ni, J.; Zhang, J.; Pang, J.* Ultrathin microcrystalline hydrogenated Si/Ge alloyed tandem solar cells towards full solar spectrum conversion. Frontiers of Chemical Science and Engineering 2020, 14, 997-1005. (IF=3.552) [29] Shu, F.; Wang, M.; Pang, J.; Yu, P. A free-standing superhydrophobic film for highly efficient removal of water from turbine oil. Frontiers of Chemical Science and Engineering 2019, 13, 393-399. (IF=3.552) [30] Wang, K.#*; Pang, J.#*; Li, L.; Zhou, S.; Li, Y.; Zhang, T. Synthesis of hydrophobic carbon nanotubes/reduced graphene oxide composite films by flash light irradiation. Frontiers of Chemical Science and Engineering 2018, 12, 376-382. (IF=3.552) [31] Bu, C.; Li, F.; Yin, K.; Pang, J.*; Wang, L.; Wang, K*. Research Progress and Prospect of Triboelectric Nanogenerators as Self-Powered Human Body Sensors. ACS Applied Electronic Materials 2020, 2, 863-878. [32] Ma, Y.; Wang, J.; He, D.; Pang, J. Accurate Line Detection by Adjusting Hough Transform Threshold Adaptively. 2010 6th International Conference on Wireless Communications Networking and Mobile Computing (WiCOM) 2010, 10.1109/WICOM.2010.5601319. (EI) [33] Sun, D.; Zhang, Y.; Wang, D.; Song, W.; Liu, X.; Pang, J.; Geng, D.; Sang, Y.; Liu, H. Microstructure and domain engineering of lithium niobate crystal films for integrated photonic applications. Light Sci Appl 2020, 9, 197. (IF=13.714)(光子晶体集成器件课题) [34] Wang, J.; Pang, J.; Liu, S.; Zhang, H.; Tang, W.; Xia, W. Experimental and dynamical study of a dual Q-switched intracavity OPO based on few-layer MoSe2 SA. Optics express 2019, 27, 36474-36486. (IF=3.669)(二维材料可饱和吸收体用于脉冲激光课题) [35] Liu, S.; Wang, J.; Pang, J.; Song, P.; Chen, L.; Tang, W.; Xia, W. An active and passive dual-loss Q-switched intracavity OPO based on few-layer WS2 saturable absorber. Optical Materials 2020, 100, 109700. (IF=2.779)(二维材料可饱和吸收体用于脉冲激光课题) [36] Wang, J.; Liu, S.; Pang, J.; Song, P.; Tang, W.; Ren, Y.; Xia, W. Threshold decrease and output-power improvement in dual-loss Q-switched laser based on a few-layer WTe2 saturable absorber. Applied Physics Express 2020, 13, 052004. (IF=3.086)(二维材料可饱和吸收体用于脉冲激光课题) [37] Wang, J.; Pang, J.; Liu, S.; Song, P.; Tang, W.; Ren, Y.; Xia, W. Experimental optimization and dynamics solution of active-passive Q-switched intracavity optical parametric oscillator based on EO modulator and layered-WSe2 SA. Infrared Physics & Technology 2020, 103525. (IF=2.379)(二维材料可饱和吸收体用于脉冲激光课题) 发明专利 逄金波、程绮琳、孙春辉、张丛丛、王金刚、刘宏,一种大面积石墨烯的制备方法,2019.11.21,专利号CN201811245851.7 奖励 2011年,南开大学优秀毕业研究生 2008年,青岛大学优秀毕业生 2007年,逄金波、孔建敏、葛春明 无线识别,全国大学生电子设计竞赛全国二等奖(推荐)、山东赛区一等奖,教育部高等教育司
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教学及研究生培养情况 | 研究生培养 以副导师身份合作指导2名济大硕士研究生(2018.9-2021.6) 主讲课程 教学论文 本科生培养 |
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