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Performances analysis of heterojunction solar cells through integration of hydrogenated nanocrystalline silicon bilayer by using numerical study

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Performances analysis of heterojunction solar cells through integration of hydrogenated nanocrystalline silicon bilayer by using numerical study (1) (2).pdf (3.642Mb)
Date
2021-06-26
Author
Hamdani, Dadan
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Abstract
This study was conducted to simulate a pin-type thin film solar cell by integrating nc-Si:H as p-window and buffer layers. The structures proposed to investigated are ITO/(p)nc-Si:H/((i)a-Si:H/(n)a-Si:H/Ag and ITO/(p)nc-Si:H/(p’)nc-Si:H(buff)/(i)a-Si:H/(n)a-Si:H/Ag simulated with the AFORS-HET simulator. In an effort to improve the electrical and optical properties of the heterojunction solar cell, the dopant concentration for the p-window and n-layers, the absorber bandgap, and the absorber thickness were optimized. The result showed that the Eff of p-p’-i-n is 9.60% (VOC ¼ 936.6 mV, JSC ¼ 13.86 mA/cm2, FF ¼ 0.738) were obtained when values of Na, Nd, absorber bandgap, and absorber thickness parameters are 1.0 x 1017 particles/cm3, 1.0 x 1019 particles/cm3, 1.80 eV, and 600 nm, respectively
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http://repository.unmul.ac.id/handle/123456789/38897
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Repository Universitas Mulawarman copyright ©   LP3M Universitas Mulawarman
Jalan Kuaro Kotak Pos 1068
Telp. (0541) 741118
Fax. (0541) 747479 - 732870
Samarinda 75119, Kalimantan Timur, Indonesia
Contact Us | Send Feedback