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Optimizing oxygen vacancy concentrations in CeO2 thin films for enhanced photodetector sensitivity
- Balasubramani, V.;
- Akila, T.;
- Suresh, R.;
- Alodhay, Abdullah N.;
- Muthuramamoorthy, Muthumareeswaran;
- ... Sasikumar, Kandasamy
WEB OF SCIENCE
10SCOPUS
12초록
The widespread integration of science and technology development has led to significant changes in optoelectronic devices. Researchers are rapidly expanding in search of new materials, tools and applications. In this context, cerium oxide (CeO) appears to be a promising product due to its tunable properties. Doping CeO2 with elements such as Al, Co, In, Mn and Y improves its optical, structural, functional, morphological and electrical properties, making it ideal for optoelectronics and harvesting power. This study shows that doped CeO2 films maintain a single-phase cubic fluorite or sphalerite structure with minimal lattice distortion. Various morphological patterns were received as spherical (ADC), white sponge (CDC), golf ball (IDC), bee net (MDC), and spindle (YDC) by the insertion of foreign materials into cerium lattice. FT-IR confirmed the presence of metal oxide containing small amounts of hydroxyl and carbonyl groups. Variations in morphological shapes and band gap energy, without lattice distortion by the influence of doping elements are crucial for optoelectronic advancements. These spectroscopic analysis demonstrates that the cerium oxide films prepared from indium (IDC) have unique characteristics compared with other doped films.
키워드
- 제목
- Optimizing oxygen vacancy concentrations in CeO2 thin films for enhanced photodetector sensitivity
- 저자
- Balasubramani, V.; Akila, T.; Suresh, R.; Alodhay, Abdullah N.; Muthuramamoorthy, Muthumareeswaran; Sasikumar, Kandasamy
- 발행일
- 2025-02
- 유형
- Article
- 권
- 159