Jurnal Teknologi Bahan dan Barang Teknik
Vol 8, No 1 (2018)

The Effect of Counter Electrode Preparation Methods Toward Dye Sensitized Solar Cell Performance

Pramujo Widiatmoko (Chemical Engineering Study Program, Faculty of Industrial Technology)
Hary Devianto (Chemical Engineering Study Program, Faculty of Industrial Technology)
Isdiriayani Nurdin (Chemical Engineering Study Program, Faculty of Industrial Technology)
Adriaan Adriaan (Chemical Engineering Study Program, Faculty of Industrial Technology)
Henry Natanail Purwito (Chemical Engineering Study Program, Faculty of Industrial Technology)



Article Info

Publish Date
29 Jun 2018

Abstract

Carbon-coated electrodes is superior substitution for platinum electrodes of Dye-Sensitized Solar Cells (DSSC). This paper describes effect of electrode coating methods as well as carbon types on the performance of DSSC. The electrodes were prepared using 3 methods, i.e. doctor blade, metering rod and bubble deposition. Commercial industrial-grade and medical-grade activated carbon were used in this research. The DSSC performance was measured from I-V curve and electrochemical impedance spectroscopy, meanwhile the morphology of coated carbon electrode was studied from Scanning Electron Microscope and Brunauer-Emmett-Teller analysis. It was found that efficiency of DSSC was higher when the counter electrodes were prepared using doctor blade and bubble deposition methods with medical-grade activated carbon. The highest achievement on light-to-electricity conversion was 3.76%.Elektroda bantu karbon merupakan alternatif pengganti elektroda platinum yang baik untuk aplikasi sel surya tersensitisasi pewarna (Dye-Sensitized Solar Cell, DSSC). Makalah ini menjelaskan pengaruh metode pelapisan elektroda bantu serta jenis karbon pada kinerja DSSC. Elektroda disiapkan menggunakan 3 metode yaitu bilah dokter, batang pengaduk dan pelapisan gelembung. Karbon aktif untuk industri dan medis digunakan dalam penelitian ini. Kinerja DSSC ditentukan berdasarkan data kurva I-V dan spektroskopi impedansi elektrokimia, sementara morfologi lapisan karbon pada elektroda dipelajari menggunakan Scanning Electron Microscope dan analisis Brunauer-Emmett-Teller. Efisiensi DSSC lebih tinggi diperoleh ketika elektroda bantu disiapkan menggunakan metode bilah dokter dan pelapisan gelembung dengan karbon aktif medis. Perolehan tertinggi efisiensi konversi cahaya ke listrik adalah 3,76%.

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Journal Info

Abbrev

JTBBT

Publisher

Subject

Computer Science & IT Electrical & Electronics Engineering Energy Engineering Materials Science & Nanotechnology

Description

Jurnal Teknologi Bahan dan Barang Teknik is a peer-reviewed and open access scientific journal. This journal is published by Center for Material and Technical Product (B4T) since 2011. Jurnal Teknologi Bahan dan Barang Teknik is published twice a year, in June and December. Jurnal Teknologi Bahan ...