• 대한전기학회
Mobile QR Code QR CODE : The Transactions of the Korean Institute of Electrical Engineers
  • COPE
  • kcse
  • 한국과학기술단체총연합회
  • 한국학술지인용색인
  • Scopus
  • crossref
  • orcid

References

1 
V. K. Sharma, G. Monteleone, G. Braccio, C. N. Anyanwu, N. N. Aneke, 2025, A Comprehensive Review of Green Energy Technologies: Towards Sustainable Clean Energy Transition and Global Net-Zero Carbon Emissions, Processes, Vol. 13, No. 1, pp. 69DOI
2 
F.J.M.M. Nijsse, JF. Mercure, N. Ameli, 2023, The momentum of the solar energy transition, Nature Communications, Vol. 14, pp. 6542DOI
3 
E. Pulli, E. Rozzi, F. Bella, 2020, Transparent photovoltaic technologies: Current trends towards upscaling, Energy Conversion and Management, Vol. 219, pp. 112982DOI
4 
A. K. Rana, M. Kumar, D.-K. Ban, C.-P. Wong, J. Yi, J. Kim, 2019, Enhancement in performance of transparent p-NiO/n-ZnO heterojunction ultrafast self-powered photodetector via pyro-phototronic effect, Advanced Electronic Materials, Vol. 5, No. 9, pp. 1900438DOI
5 
Ü. Özgür, Y. I. Alivov, C. Liu, A. Teke, M. A. Reshchikov, S. Doğan, V. Avrutin, S.-J. Cho, H. Morkoç, 2005, A comprehensive review of ZnO materials and devices, Journal of Applied Physics, Vol. 98, No. 4, pp. 041301DOI
6 
A. R. Jayakrishnan, J. P. B. Silva, K. Gwóźdź, M. J. M. Gomes, R. L. Z. Hoye, J. L. MacManus-Driscoll, 2023, The ferro-pyro-phototronic effect for high-performance self-powered photodetectors, Nano Energy, Vol. 118, pp. 108969DOI
7 
M. Ding, H. Wu, H. Niu, Y. Luo, R. Zhu, 2018, One-Dimensional Zinc Oxide Nanomaterials for Application in High-Performance Advanced Optoelectronic Devices, Crystals, Vol. 8, No. 5, pp. 223DOI
8 
J. Tian, 2023, An overview of pyroelectric photodetector: Photoresponse mechanisms and applications, AIP Advances, Vol. 13, No. 5, pp. 050701DOI
9 
M. S. Jamal, S. A. Shahahmadi, P. Chelvanathan, H. F. Alharbi, M. R. Karim, Monis Luqman, N. H. Alharthi, Y. S. Al-Harthi, M. Aminuzzaman, Nilofar Asim, K. Sopian, S. K. Tiong, N. Amin, Md. Akhtaruzzaman, 2019, Effects of growth temperature on the photovoltaic properties of RF sputtered undoped NiO thin films, Results in Physics, Vol. 14, pp. 102360DOI
10 
J. Lee, N. Kumar, M. Patel, B.-J. Shin, J. Kim, 2022, Enhancement of Metal-oxide (NiO/ZnO) Transparent Photodetector Properties with Bias Tuning, Journal of the Korean Solar Energy Society, Vol. 42, No. 6, pp. 41-50DOI
11 
S. Podder, B. Basumatary, D. Gogoi, J. Bora, A. R. Pal, 2021, Pyro-phototronic application in the Au/ZnO interface for the fabrication of a highly responsive ultrafast UV photodetector, Applied Surface Science, Vol. 537, pp. 147893DOI
12 
C. Choi, E. Schlenker, H. Ha, B. Hwang, 2023, Versatile applications of silver nanowire-based electrodes and their impacts, Micromachines, Vol. 14, No. 3, pp. 562DOI
13 
A. R. Jayakrishnan, J. P. B. Silva, K. Gwóźdź, M. J. M. Gomes, R. L. Z. Hoye, J. L. MacManus-Driscoll, 2023, The ferro-pyro-phototronic effect for high-performance self-powered photodetectors, Nano Energy, Vol. 118, pp. 108969DOI
14 
L. Chen, B. Wang, J. Dong, F. Gao, H. Zheng, M. He, X. Wang, 2020, Insights into the pyro-phototronic effect in p-Si/n-ZnO nanowires heterojunction toward high-performance near-infrared photosensing, Nano Energy, Vol. 78, pp. 105260DOI
15 
C. Choi, M. Patel, J. Kim, 2024, High-performing transparent ZnO/NiO pyroelectric devices with frequency modulation, Journal of the Korean Solar Energy Society, Vol. 42, No. 6, pp. 49-63Google Search
16 
Y. Feng, Y. Zhang, Y. Wang, Z. Wang, 2018, Frequency response characteristics of pyroelectric effect in p-n junction UV detectors, Nano Energy, Vol. 54, pp. 429-436DOI
17 
T. T. Nguyen, M. Patel, S. Kim, R. A. Mir, J. Yi, V.-A. Dao, J. Kim, 2021, Transparent photovoltaic cells and self-powered photodetectors by TiO₂/NiO heterojunction, Journal of Power Sources, Vol. 481, pp. 228865DOI
18 
W. Tian, Y. Wang, L. Chen, L. Li, 2017, Self-Powered Nanoscale Photodetectors, Small, Vol. 13, No. 45, pp. 1701848DOI
19 
M. Kumar, M. Patel, T. T. Nguyen, J. Kim, J. Yi, 2018, High-performing ultrafast transparent photodetector governed by the pyro–phototronic effect, Nanoscale, Vol. 10, No. 15, pp. 6928-6935DOI