Development of Novel Solar Cell Design based on Current Energy Converted from Phonon Energy by Controlling the Phonon Transport

Development of Novel Solar Cell Design based on Current Energy Converted from Phonon Energy by Controlling the Phonon Transport

Authors

DOI:

https://doi.org/10.56741/jnest.v3i03.626

Keywords:

Current Energy, Novel Solar Cell, Phonon Energy, Phonon Transport, Photonic Devices

Abstract

The paper mainly focuses on the Development of Novel Solar Cell Design based on Current Energy Converted from Phonon Energy by Controlling the Phonon Transport. The research challenges in this study are: to find a means of the control of phonon transport or phonon accumulation and propose a novel solar cell structure to convert the phonon energy to the current energy; to study phonon control method for III-nitrides and the properties of phonon transport; to analyze the phonon absorption in a short time for III-nitrides is higher than gallium arsenide by one order, which makes it possible to extract higher current than previous materials. The research objectives are: to design the novel solar cell structure to convert Phonon Energy to Current Energy; to analyze the physics of solar cell structure with numerical approaches; to model the Quantum Well in the proposed solar cell structure; to set the experimental measurement system for physical characteristics of novel solar cells; to confirm the results from the analysis of Control of Phonon Transport. The conversion of current energy from the phonon energy by controlling the phonon transport depends on the structure of the solar cell stacking system. The implementation of this study was accomplished based on the specific model, especially Quantum Well Structure. The results confirm that the performance specification of targeted solar cell structures in real-world applications.

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Author Biographies

Hsu Myat Tin Swe, Yangon Technological University

received her B.E. from Technological University (Taunggyi) in 2015 and, her M.E. degree from Yangon Technological University (YTU) in 2020, respectively. She is now a PhD candidate at the Department of Electronic Engineering of Yangon Technological University. (email: ecdepartment.ytu@gmail.com).   

Hla Myo Tun, Yangon Technological University

is a Leading Pro-Rector for Research and Engineering Higher Education at Yangon Technological University (YTU), Myanmar. He specializes in professional training for Engineering Higher Education leaders, heads of departments, and faculty members. He also directs Research and Development programs and workshops and has worked as a certified Quality Assurance Evaluator of the Myanmar Engineering Council (MEngC) since 2019. (email: hmt.ytu@gmail.com).

Devasis Pradhan, Acharya Institute of Technology

working as an Assistant Professor in Grade 1 and Dean of Research and Development at Acharya Institute of Technology, Bengaluru, Karnataka, from 2017 onwards. His current research includes the effectiveness of 5G Green Communications, mmWave antenna design, UWB antennas, and its implementation. With 16+ years of experience in the Academic and Research field, he has published 76 research papers and eight papers submitted to IEEE Access and Reputed Book and 4 Authored Books and 3 Edited Books (CRC, ISTE, Bentham Science) with a reputed publishing house. (email: devasispradhan@acharya.ac.in).

Lei Lei Yin Win, Yangon Technological University

is a Professor at the Department of Electronic Engineering at Yangon Technological University. (email: maleileiyinwin.ytu@gmail.com).

Ei Ei Khin, Yangon Technological University

is a Professor at the Department of Electronic Engineering at Yangon Technological University. She also manages the Remote Sensing and GIS Research Centre of YTU. (email: maeieikhin.ytu@gmail.com).

Khaing Thandar Soe, Yangon Technological University

is an Assistant Lecturer at the Department of Electronic Engineering of Yangon Technological University, Myanmar. (email: makhaingthandarsoe.ytu@gmail.com).

References

Villalva, M.G., Gazoli, J.R., and Filho, E.R. “Approach to modeling and simulation of Photovoltaic arrays”, IEEE Transactions on Power Electronics. Vol. 24, No.5 May 2009. DOI: https://doi.org/10.1109/TPEL.2009.2013862

Singh, K.J., Rajanna, K.M., Basu, S., Sarkar, S.K. “Numerical simulation model of compositionally graded optimized radiation hard InGaN multi-junction space solar cell”, Chennai and Dr. MGR University Second International Conference on Sustainable Energy and Intelligent System (SEISCON 2011), Dr. M.G.R. University, Maduravoyal, Chennai, Tamil Nadu, India. July 20-22, 2011. DOI: https://doi.org/10.1049/cp.2011.0453

Wurfel, P. “Physics of solar cells”, ©2005WILEY-VCH Verlag GmbH and Co. KGaA, Weinheim.

Fonash, S. “Solar cell device physics”, Second Edition,© 2010 Elsevier Inc.

Moller, H.J., “Semiconductors for Solar Cells”. Norwood, MA: Artech House, 1993.

Fahrenbruch, A.L., and Bube, R.H. “Fundamentals of Solar Cells”. San Francisco, CA: Academic, 1983. DOI: https://doi.org/10.1016/B978-0-12-247680-8.50013-X

Lasnier, F., and Ang, T.G. “Photovoltaic Engineering Handbook”. New York: Adam Hilger, 1990.

Tin Swe, H.M.T., Ei Khin, E., Soe, K.T., Win, L.L.Y., Tun, H.M., and Pradhan, D. “Analysis of Third Generation Solar Cell Design with Physics of Semiconductor”, Journal of Novel Engineering Science and Technology, Vol. 3 No. 02 (2024)

Tin Swe, H.M., Win, L.L.Y., Soe, K.T., Ei Khin, E., and Tun, H.M. “Analysis on Quantum Well Structure Design for Solar Cell”, Conference on Science and Technology Development, 26th and 27th October 2023, Myanmar.

Tin Swe, H.M., Win, L.LY., Soe, K.T., Ei Khin, E., and Tun, H.M. “Approaching the Depletion Width Estimation in Conventional Solar Cell Structure to High-Performance Solar Cell Design with Physical Parameters”, National Conference on Science and Engineering 2023, 9th November 2023, Myanmar.

Tin Swe, H.M., Win, L.L.Y, Soe, K.T., and Tun, H.M. “Analysis on Third Generation Quantum Well Solar Cell Design by using Physical Parameters”, YTU Journal of Engineering, 2023, Myanmar

Tin Swe, H. M., Ei Khin, E., Soe, K. T., Win, L. L. Y., Tun, H. M., and Pradhan, D. “ Analysis of Third-Generation Solar Cell Design with Physics of Semiconductor”, Journal of Novel Engineering Science and Technology, 3(02), 31–37, 2024. https://doi.org/10.56741/jnest.v3i02.525 DOI: https://doi.org/10.56741/jnest.v3i02.525

Tun, H. M., Wulansari, R. E., Pradhan, D., and Naing, Z. M. “Design, fabrication, and measurement of metal-semiconductor field-effect transistors based on zinc oxide material”, Journal of Engineering Researcher and Lecturer, 2(3), 104–111, 2023. https://doi.org/10.58712/jerel.v2i3.103 DOI: https://doi.org/10.58712/jerel.v2i3.103

Tun, H.M., Tun, S. and Naing, Z.M., “Light Emitting Diode Modelling Based on Double Heterojunction Structure with Hybrid II-VI Compound Semiconductor Materials: Computational Approaches”. Solid State Technology, 63(6), pp.12464-12493, 2020.

Ei Cho, P.E., Tun, H.M., Naing, Z.M., Moe, W.K. “Analysis of V-I Characteristics and Bandgap Design for Homojunction and Heterojunction Solar Cells”, International Journal of Scientific Engineering and Technology Research, 6(15), pp 2899-2904, 2022.

Tun, H.M., Myint, M.S., Than, T., Myint Than, M., Naing, Z.M., and Khin, K. “Analysis on Band Diagram Design and Physical Properties of p-GaN/n-ZnO Light Emitting Diodes (LEDs)”, Regional Conference on Electrical and Electronics Engineering, Bangkok, Thailand, 2018.

Tun, H.M., and Nwe, M.S, “Fabrication of High-Performance High Electron Mobility Transistor Design Based on III-V Compound Semiconductor”. In: Mahyuddin, N.M., Mat Noor, N.R., Mat Sakim, H.A. (eds) Proceedings of the 11th International Conference on Robotics, Vision, Signal Processing and Power Applications. Lecture Notes in Electrical Engineering, vol 829. Springer, 2022, Singapore. DOI: https://doi.org/10.1007/978-981-16-8129-5_59

Win, P. S., Swe, H. M. T., & Tun, H. M., “Computerized FDTD Method for Longitudinal Optical Phonon Energy on Semiconductor Hybrid Structure for High Power Devices Fabrication”. Journal of Computer Science Research, 3(2), 39–51. 2021 https://doi.org/10.30564/jcsr.v3i2.3139 DOI: https://doi.org/10.30564/jcsr.v3i2.3139

Tin Swe H.M, Tun, H.M., and Latt, M. “Analysis of quantum-well heterojunction emitter bipolar transistor design”. American J Nano Res Appl 9(1):9–15. 2020. doi: https://doi.org/10.11648/j.nano.20200801.12 DOI: https://doi.org/10.11648/j.nano.20200801.12

Min, K.K., Win, P.S., Tun, H.M., Naing, Z.M., and Moe, W.K. "Photoluminescence and Lifetime Measurement for the Excitation and Temperature Dependence of Carrier Relaxation in III-V Semiconductors " Optics, vol. 7, no. 1, pp. 38-42, 2018, https://doi.org/10.11648/j.optics.2018070116. DOI: https://doi.org/10.11648/j.optics.20180701.16

Tun, H.M., Win, T.Z., Minami, K., Teraya, S., Okita, K. and Nakamura, Y. “Film Formation and Characterization of Undoped ZnO on M-plane Sapphire by Mist Chemical Vapour Deposition (Mist-CVD) with Different Carrier Gas Flow Rates”, International Conference on Science and Engineering, 2015, Yangon, Myanmar.

Tun, H.M., Shoji, R., Ma, B., Morita, K., Shiojima, K. and Ishitani, Y. “Electronic transition dynamics of deep levels in a p-GaN film analyzed by time-resolved PL measurements using two excitation laser beams”, International Conference on Science and Engineering, 2016, Yangon, Myanmar.

Tun, H.M., Sakamoto, H. and Ishitani, Y. “Fourier Transform Infrared (FTIR) Measurement on GaInP/Al-stripe Structure on GaAs Substrate”, International Conference on Science and Engineering, 2017, Yangon, Myanmar.

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Published

2024-09-20

How to Cite

Tin Swe, H. M., Hla Myo Tun, Pradhan, D., Win, L. L. Y., Khin, E. E., & Soe, K. T. (2024). Development of Novel Solar Cell Design based on Current Energy Converted from Phonon Energy by Controlling the Phonon Transport. Journal of Novel Engineering Science and Technology, 3(03), 107–112. https://doi.org/10.56741/jnest.v3i03.626

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