인문학
사회과학
자연과학
공학
의약학
농수해양학
예술체육학
복합학
지원사업
학술연구/단체지원/교육 등 연구자 활동을 지속하도록 DBpia가 지원하고 있어요.
커뮤니티
연구자들이 자신의 연구와 전문성을 널리 알리고, 새로운 협력의 기회를 만들 수 있는 네트워킹 공간이에요.
논문 기본 정보
- 자료유형
- 학술저널
- 저자정보
- 발행연도
- 2026.5
- 수록면
- 56 - 67 (12page)
이용수
초록· 키워드
Due to the increasing population growth, urbanization, and industrial expansion, the demand for water-intensive sectors like the textile, cosmetics, and food industries has made water pollution a global issue. To address this issue, the development of new materials and greener methods is essential. Nanocomposites have the potential to increase solar conversion, improve solar energy efficiency, and reduce wastewater pollutants. Herein, a nanocomposite-based heterojunction of BiVO₄, GCN (g-C₃N₄) and BiVO₄/GCN nanocomposite was prepared by the hydrothermal method. The as-synthesized pure BiVO₄ and BiVO4/GCN nanocomposite were found to possess a monoclinic phase without any impurities, which is confirmed by Powder XRD (X-Ray Diffraction). The vibrational, morphological, elemental, and optical properties of as-prepared BiVO₄/GCN nanocomposite were studied using FTIR (Fourier Transform Infrared Spectroscopy), SEM (Scanning Electron Microscopy), EDAX (Energy Dispersive X-Ray Analysis), and UV-Visible Spectroscopy. The observed data from the aforementioned methodologies indicate that the BiVO₄/GCN nanocomposite influences the crystalline nature and electron hole recombination rate, and it also exhibits superior optical quality. Further, the photocatalytic performance was investigated by the degradation of methylene blue dye under sunlight illumination, achieved 97.83%. The BiVO₄/GCN nanocomposite exhibits enhanced photocatalytic activity compared with the pristine BiVO₄. This showed it to be a promising photocatalyst for organic dye degradation under sunlight irradiation.
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목차
- ABSTRACT
- 1. Introduction
- 2. Experimental Section
- 3. Results and Discussion
- 4. Conclusion
- References