Mohd Hatta, Maziati Akmal and Abd Rashid, Mohd Warikh M. and Azlan, Umar Al Amani and Azmi, Nurul Azuwa and Azam, Mohd Asyadi and Moriga, Toshihiro (2016) Influence of yttrium dopant on the structure and electrical conductivity of potassium sodium niobate thin films. Materials Research, 19 (6). pp. 1417-1422. ISSN 1516-1439 E-ISSN 1980-5373
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Abstract
KNN thin films with diverse yttrium concentration (mol % = 0, 0.1, 0.3, 0.5, 0.7 and 0.9) were fabricated using sol-gel spin coating technique. Doped KNN revealed that Y3+ was successfully doped into the ABO3 perovskite lattice without changing the phase formation of KNN. The thickness of the deposited layer of KNN produced with increasing dopant concentration was determined to be 200 nm with dense and well-defined grains. Afterwards, the vibrational bonding and conductivity of KNN films with diverse yttrium concentration were identified according to the charge compensation mechanism. At high dopant concentration of > 0.5 mol %, O-Nb-O bonding was asymmetric and became distorted due to B-site occupancy by yttrium dopant. Further investigation revealed that charge compensation mechanism was shifted by increasing doping concentration. As a result, yttrium-doped KNN became semi-conductive at low yttrium concentration. Meanwhile, at high concentration, yttrium-doped KNN became an insulator and underwent ionic compensation.
Item Type: | Article (Journal) |
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Additional Information: | 8252/67746 |
Uncontrolled Keywords: | KNN, yttrium, thin film, doped, structural, conductivity |
Subjects: | Q Science > Q Science (General) |
Kulliyyahs/Centres/Divisions/Institutes (Can select more than one option. Press CONTROL button): | Kulliyyah of Engineering |
Depositing User: | Dr Maziati Akmal |
Date Deposited: | 20 Jul 2023 09:14 |
Last Modified: | 20 Jul 2023 09:14 |
URI: | http://irep.iium.edu.my/id/eprint/105620 |
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Influence of yttrium dopant on the structure and electrical conductivity of potassium
sodium niobate thin films. (deposited 05 Apr 2019 11:10)
- Influence of yttrium dopant on the structure and electrical conductivity of potassium sodium niobate thin films. (deposited 20 Jul 2023 09:14) [Currently Displayed]
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