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  4. Hierarchical Nanoneedle –decorated Shell Structure Of Cobalt Phosphide As Counter Electrode For Dye-sensitized Solar Cell
 
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Hierarchical Nanoneedle –decorated Shell Structure Of Cobalt Phosphide As Counter Electrode For Dye-sensitized Solar Cell

Journal
Energy Proceedings
Journal Volume
4
Date Issued
2020-03-03
Author(s)
Chia-Lin Yeh
Yi-June Huang
Han-Ting Chen
Chuan-Pei Lee
KUO-CHUAN HO  
DOI
10.46855/energy-proceedings-3477
DOI
10.46855/energy-proceedings-3477
URI
https://www.scopus.com/record/display.uri?eid=2-s2.0-85202626529&origin=resultslist
https://scholars.lib.ntu.edu.tw/handle/123456789/721613
Abstract
The nanoneedle-decorated shell, nanoneedle, and nanosheet structures of cobalt phosphide (named CoP-NDS, CoP-N, and CoP-S, respectively) are synthesized via one-step hydrothermal method and phosphilization process. The CoP-NDS is consisted of nanoneedle with about 400 nm of length and nanosheet with about 100 nm of thickness. The CoP-NDS hierarchical structure provides a larger specific surface area and allows more electrolyte to penetrate into the interior of the nanospace. The result shows that dye-sensitized solar cell (DSSC) using CoP-NDS as the counter electrode (CE) exhibits the best photoelectric conversion efficiency (η) of 8.80 ± 0.07%, as compared to CoP-N (8.50 ± 0.13%) and CoP-S (7.71 ± 0.12%) CEs under the illumination of 1 sun (AM1.5G, 100 mW cm-2). Furthermore, CoP-NDS CE shows higher photovoltaic performance than traditional Platinum (Pt) CE (8.24 ± 0.02%), demonstrating its potential to replace Pt as CE in DSSCs. To further explore the application, the photovoltaic performance of DSSCs under dim light condition is also studied. The results show that DSSCs with CoP-NDS CE achieve η’s of 14.22 ± 0.12%, 15.75 ± 0.02%, and 17.27 ± 0.14% at 1000, 3500, and 7000 lux, respectively. This study concludes that the low-cost and easy-to-fabricate CoP-NDS can be a promising candidate to replace the conventional Pt CE in DSSCs.
Event(s)
11th International Conference on Applied Energy, ICAE 2019, Västerås12 August 2019 through 15 August 2019. Code 316949
Subjects
Dim light photovoltaics
dye-sensitized solar cell
nanoneedle
nanosheet
Pt-free counter electrode
transition metal phosphide
SDGs

[SDGs]SDG7

Publisher
Applied Energy Innovation Institute (AEii)
Type
conference paper

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