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Solid State Solar Cell Made From N-Cu2O With Coir Activated Carbon (AC) as Upper-Electrode


Affiliations
1 Nano-Technology Research Laboratory, Department of Electronics, Wayamba University of Sri Lanka, Kuliyapitiya, Sri Lanka
2 Department of Textile & Apparel Technology, Open University of Sri Lanka, Nawala, Nugegoda, Sri Lanka
 

Coir is a natural vegetable fibre obtained from the coconut tree. In this research, alkaline-bio scoured bristle coir fibre powder was subjected to alkaline activation by using Potassium Hydroxide (0.1 M). The coir carbon powder was fed into a tube furnace with a constant heating rate of 20°C min–1 until the temperature reached a range of temperatures between 380°C to 450°C. At a selected temperature between 380°C to 450°C the samples were kept inside the tube furnace for 15 min in a nitrogen flow. Subsequently they were cooled to room temperature and the iodine number was determined. The copper plate was fabricated by using a thin film of Cu2O which is formed by boiling (5210–3M) solution of copper sulphate. After that Cu/Cu2O/AC/ITO solid state photovoltaic cell was made with coir AC as the upper electrode. Formed junction at n-Cu2O/AC interface is believed to be supported toseparatephoto generated charge carriers, in the solid state photovoltaic device. Absorption spectra, XRD measurements, SEM micrographs and photocurrent action spectra were presented in this study.

Keywords

Coir, Activated Carbon, Thin Film Solar Cell.
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  • Solid State Solar Cell Made From N-Cu2O With Coir Activated Carbon (AC) as Upper-Electrode

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Authors

N. W. P. S. Perera
Nano-Technology Research Laboratory, Department of Electronics, Wayamba University of Sri Lanka, Kuliyapitiya, Sri Lanka
C. A. N. Fernando
Nano-Technology Research Laboratory, Department of Electronics, Wayamba University of Sri Lanka, Kuliyapitiya, Sri Lanka
S. A. Ariadurai
Department of Textile & Apparel Technology, Open University of Sri Lanka, Nawala, Nugegoda, Sri Lanka

Abstract


Coir is a natural vegetable fibre obtained from the coconut tree. In this research, alkaline-bio scoured bristle coir fibre powder was subjected to alkaline activation by using Potassium Hydroxide (0.1 M). The coir carbon powder was fed into a tube furnace with a constant heating rate of 20°C min–1 until the temperature reached a range of temperatures between 380°C to 450°C. At a selected temperature between 380°C to 450°C the samples were kept inside the tube furnace for 15 min in a nitrogen flow. Subsequently they were cooled to room temperature and the iodine number was determined. The copper plate was fabricated by using a thin film of Cu2O which is formed by boiling (5210–3M) solution of copper sulphate. After that Cu/Cu2O/AC/ITO solid state photovoltaic cell was made with coir AC as the upper electrode. Formed junction at n-Cu2O/AC interface is believed to be supported toseparatephoto generated charge carriers, in the solid state photovoltaic device. Absorption spectra, XRD measurements, SEM micrographs and photocurrent action spectra were presented in this study.

Keywords


Coir, Activated Carbon, Thin Film Solar Cell.