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Mr. Vincent Masika Peheliwa

LECTURER
Physics and Electronics

Research Areas

Green Energy, 2D Semiconductors, Nanotechnology, Batteries,

Profile

Vincent Masika Peheliwa is a dedicated Lecturer of Physics in the Department of Physics and Electronics, University of Malawi. Currently pursuing his PhD at Charles University and the Institute of Physics of the Czech Academy of Sciences, he is an emerging researcher with a strong academic background. Vincent holds a Master of Applied Physics from National Dong Hwa University, Taiwan (2022) and a Bachelor of Education Science (Physics & Electronics) from the University of Malawi (2018). His research focuses on cutting-edge areas such as Green Energy, 2D Semiconductors, and Nanotechnology, reflecting his commitment to advancing sustainable and innovative technologies. With a passion for both teaching and research, Vincent contributes to the academic and scientific community through his expertise in physics and materials science.

Publications

  • Journal Article
    Sujit A. Kadam a., Ranjit S. Kate b, Vincent M. Peheliwa c, Shruti A. Shingate b, Carlo C. Sta. Maria a, Yuan-Ron Ma. Comprehensive review on transition metal nitrides electrode materials for supercapacitor: Syntheses, electronic structure engineering, present perspectives and future aspects. J. Energy Storage, 72 (2023) 108229. DOI: https://doi.org/10.1016/j.est.2023.108229 (2023)

  • Journal Article
    Vincent M. Peheliwa, Kuan-Cheng Lu, Denny Pratama Hasibuan, Clara Sinta Saragih, Carlo C. Sta. Maria, Yen-Rui Chen, Ranjit A. Patil,* Chien-Chih Lai, Wen-Bin Jian, Maw-Kuen Wu, and Yuan-Ron Ma*. Layer-Dependent Optical Modulation and Field-Effect-Transistor in Two-Dimensional 4H-SnS2 Layers. Adv. Optical Mater. 2023, 2300395. https://doi.org/10.1002/adom.202300395 (2023)

  • Journal Article
    Vincent M. Peheliwa, Kuan-Cheng Lu, Denny Pratama Hasibuan, Clara Sinta Saragih, Carlo C. Sta. Maria, Yen-Rui Chen, Ranjit A. Patil,* Chien-Chih Lai, Wen-Bin Jian, Maw-Kuen Wu, and Yuan-Ron Ma*. Layer-Dependent Optical Modulation and Field-Effect-Transistor in Two-Dimensional 4H-SnS2 Layers. Adv. Optical Mater. 2023, 2300395. https://doi.org/10.1002/adom.202300395 (2013)