PENGARUH PENAMBAHAN LOGAM TRANSISI NIKEL TERHADAP SIFAT FISIS NANOROD ZnO
Abstract
Keywords
Full Text:
PDF (INDONESIA)References
1. Kumara, W. S. M. & Prajitno, G. (2012). Studi Awal Fabrikasi Dye Sensitized Solar Cell (DSSC) dengan Menggunakan Ekstraksi Daun Bayam (Amaranthus Hybridus L.) sebagai Dye Sensitizer dengan Variasi Jarak Sumber Cahaya pada DSSC. Skripsi Jurusan Fisika FMIPA. Institut Teknologi Sepuluh Nopember. Surabaya.
2. Yella, A. H. –W., Lee, H. N., Tsao, C., Yi, A. K., Chandiran, Md. K., Nazeeruddin, E. W. –G., Diau, C. –Y., Yeh, S. M., & Zakeerudin, M. (2011). Porphyrin-Sensitized Solar Cells with Cobalt (II/III)-Based Redox Electrolyte Exceed 12 Percent Efficiency. Science, 334, 629–634.
3. Windayani, Iwantono, Awitdrus & Zulkarnain. (2019). Efek Penambahan Atom Tembaga (Cu) dan Perak (Ag) pada Material Aktif Nanomaterial ZnO Sel Surya Fotoelektrokimia. Komunikasi Fisika Indonesia, 16(1), 20–24.
4. Iwantono, Damayanti, N., Anggelina, F., Naumar, F. Y., &Umar, A. A. (2015). Efek Co-Doping Al-Ga pada Nanorod ZnO Terhadap Efisiensi Dye Sensitized Solar Cells (DSSC). Jurnal Material dan Energi Indonesia, 02, 8–16.
5. Guo, K. M., Li, X., Fang, X., Liu, B., Sebo, Y., Zhu, Z., & Hu, X. (2013). Preparation and Enhanced Properties of Dye Sensitized Sollar Cells by Surface Plasmon Resonance of Ag Nanoparticles in Nanocomposite Photoanode. Journal of Power Sources, 230, 155–160.
6. Ridha, N. J., Jumali, M. H. H., Umar, A. A., & Alosfur, F. (2013). Deffects-Controlled ZnO Nanorod With High Aspect Ratio for Ethanol Detection. Int. J. Electrochem. Sci., 8, 4583–4593.
7. Iwantono, Oktorina, E., Taer, E., & Taslim, R. 2014. Karakterisasi Penumbuhan Nanopartikel Zinc Oxide di Atas Substrat Padat dengan Metode Hidrotermal. Prosiding Semirata FMIPA Institut Pertanian Bogor, 510–517.
8. Irannejad, A., Janghorban, K., Tan, O. K., Huang, H., Lim, C. K., Tan, P. Y., Fang, X., Chua, C. S., Maleksaeedi, S., Hajezi, S. M. H., Shahjamali, M. M., & Ghaffari, M. (2011). Effect of The TiO2 Shell Thickness on The Dye Sensitized Solar Cells with ZnO-TiO2 Core Shell Nanorod Electrodes. Internasional Journal of Electrochemical Science, 10, 1–6.
9. Ko, H. Y., Sub Kim, M., & Su Yu, T. (2012). Controllable Electrochemical Systensis of ZnO Nanorod Arrray On Flexible ITO/PET Substrate and Their Structural and Properties. Journal Applied Surface Science.
10. Maddu, A., Basuki C. A., Irmansyah & Pramudito, S. (2006). Struktur dan Sifat Optik Film Zno Hasil Deposisi dengan Teknik Spin-Coating Melalui Proses Sol-Gel. Indonesian Journal of Materials Science, 7, 80–95.
DOI: http://dx.doi.org/10.31258/jkfi.17.3.155-159
Refbacks
- There are currently no refbacks.
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Indexing by: