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Showing results 1 to 18 of 18

  • 2020-10
  • Kim, Se-Yun. (2020-10). CZTSSe Formation Mechanism Using a Cu/Zn/SnS Stacked Precursor: Origin of Triple CZTSSe Layer Formation. ACS Applied Materials & Interfaces, 12(41), 46037–46044. doi: 10.1021/acsami.0c12616
  • American Chemical Society
  • View : 704
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  • Kim, Se-Yun
  • Hong, Sang Hun
  • Kim, Seung-Hyun
  • Son, Dae-Ho
  • Kim, Young-Il
  • Kim, Sammi
  • Young-Woo Heo
  • Kang, Jin-Kyu
  • Kim, Dae-Hwan
  • 2020-09
  • Kim, Se-Yun. (2020-09). Effect of al2o3 dot patterning on cztsse solar cell characteristics. Nanomaterials, 10(9), 1–9. doi: 10.3390/nano10091874
  • MDPI AG
  • View : 820
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  • 2020-04
  • Kim, Se-Yun. (2020-04). Effect of Cu-Sn-Se Liquid Phase on Grain Growth and Efficiency of CZTSSe Solar Cells. Advanced Energy Materials, 10(14), 1903173. doi: 10.1002/aenm.201903173
  • Wiley-VCH Verlag
  • View : 988
  • Download : 0
  • Kim, Se-Yun
  • Kim, Seung-Hyun
  • Son, Dae-Ho
  • Yoo, Hyesun
  • Kim, Seongyeon
  • Kim, Sammi
  • Kim, Young-Ill
  • Park, Si-Nae
  • Jeon, Dong-Hwan
  • Lee, Jaebaek
  • et al
  • 2022-06
  • Kim, Se-Yun. (2022-06). Effect of Metal-Precursor Stacking Order on Volume-Defect Formation in CZTSSe Thin Film: Formation Mechanism of Blisters and Nanopores. ACS Applied Materials & Interfaces, 14(27), 30649–30657. doi: 10.1021/acsami.2c01892
  • American Chemical Society
  • View : 736
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  • 2015-12
  • Hwang, Sunwook. (2015-12). Effects of a pre-annealing treatment (PAT) on Cu2ZnSn(S,Se)(4) thin films prepared by rapid thermal processing (RTP) selenization. Solar Energy Materials and Solar Cells, 143, 218–225. doi: 10.1016/j.solmat.2015.06.059
  • Elsevier B.V.
  • View : 1176
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  • 2020-02
  • Ko, Byoung-Soo. (2020-02). Effects of the annealing temperature on the properties of sulfur-graded Cu2ZnSn(S,Se)4 thin films grown by a modified two-step process. Journal of Industrial and Engineering Chemistry, 82, 406–412. doi: 10.1016/j.jiec.2019.11.004
  • Korean Society of Industrial Engineering Chemistry
  • View : 710
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  • 2017-10
  • Rana, Tanka Raj. (2017-10). Fabrication and device characterization of potassium fluoride solution treated CZTSSe solar cell. Current Applied Physics, 17(10), 1353–1360. doi: 10.1016/j.cap.2017.07.007
  • 한국물리학회
  • View : 836
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  • 2018-03
  • Kim, Seong Yeon. (2018-03). Limiting effects of conduction band offset and defect states on high efficiency CZTSSe solar cell. Nano Energy, 45, 75–83. doi: 10.1016/j.nanoen.2017.12.031
  • Elsevier BV
  • View : 633
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  • Gour, Kuldeep Singh
  • Karade, Vijay
  • Jang, Jun Sung
  • Jo, Eunae
  • Babar, Pravin
  • Korade, Sumit
  • Yoo, Hyesun
  • Kim, Sugil
  • Kim, Dongmyung
  • Park, Jongsung
  • et al
  • 2021-04
  • Gour, Kuldeep Singh. (2021-04). Nanoscale Rear-Interface Passivation in Cu2ZnSn(S,Se)4Solar Cells through the CuAlO2Intermediate Layer. doi: 10.1021/acsaem.1c00743
  • American Chemical Society
  • View : 397
  • Download : 0
  • 2022-08
  • Oh, Siwon. (2022-08). Optical Detection of SnSe2 Formation on CZTSSe Thin-Film Solar Cells. ACS Applied Energy Materials, 5(9), 11774–11779. doi: 10.1021/acsaem.2c02280
  • American Chemical Society
  • View : 592
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  • 2017-05
  • Yang, Kee-Jeong. (2017-05). Precursor designs for Cu2ZnSn(S,Se)(4) thin-film solar cells. Nano Energy, 35, 52–61. doi: 10.1016/j.nanoen.2017.03.025
  • Elsevier BV
  • View : 642
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  • 2019-07
  • Kim, Se-Yun. (2019-07). Secondary Phase Formation Mechanism in the Mo-Back Contact Region during Sulfo-Selenization Using a Metal Precursor: Effect of Wettability between a Liquid Metal and Substrate on Secondary Phase Formation. ACS Applied Materials & Interfaces, 11(26), 23160–23167. doi: 10.1021/acsami.9b03969
  • American Chemical Society
  • View : 535
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Self-alignment of bottom CZTSSe by patterning of an Al2O3 intermediate layer

  • 2020-01
  • Hong Sanghun. (2020-01). Self-alignment of bottom CZTSSe by patterning of an Al2O3 intermediate layer. Nanomaterials, 10(1), 43. doi: 10.3390/nano10010043
  • MDPI AG
  • View : 815
  • Download : 301
  • 2021-07
  • Yang, Kee-Jeong. (2021-07). Sodium Effects on the Diffusion, Phase, and Defect Characteristics of Kesterite Solar Cells and Flexible Cu2ZnSn(S,Se)(4) with Greater than 11% Efficiency. Advanced Functional Materials, 31(29), 2102238. doi: 10.1002/adfm.202102238
  • John Wiley and Sons Inc
  • View : 732
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  • 2018-10
  • Yang, Kee Jeong. (2018-10). The alterations of carrier separation in kesterite solar cells. Nano Energy, 52, 38–53. doi: 10.1016/j.nanoen.2018.07.039
  • Elsevier
  • View : 706
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  • 2021-09
  • Lee, Sanghyun. (2021-09). Two local built-in potentials of H2S processed CZTSSe by complex impedance spectroscopy. Solar Energy, 225, 11–18. doi: 10.1016/j.solener.2021.06.064
  • Pergamon Press Ltd.
  • View : 655
  • Download : 0

Vertical plane depth-resolved surface potential and carrier separation characteristics in flexible CZTSSe solar cells with over 12% efficiency

  • 2024-03
  • Son, Dae-Ho. (2024-03). Vertical plane depth-resolved surface potential and carrier separation characteristics in flexible CZTSSe solar cells with over 12% efficiency. Carbon Energy, 6(3). doi: 10.1002/cey2.434
  • Wiley
  • View : 431
  • Download : 61
  • 2019-05
  • Kim, Se-Yun. (2019-05). Void and secondary phase formation mechanisms of CZTSSe using Sn/Cu/Zn/Mo stacked elemental precursors. Nano Energy, 59, 399–411. doi: 10.1016/j.nanoen.2019.02.063
  • Elsevier BV
  • View : 729
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