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저온 상압 졸-겔 합성 기반 Anatase TiO2 졸 제조 및 광촉매 특성 평가 KCI 등재 SCOPUS

Facile Synthesis of Anatase TiO2 Sol via a Low-Temperature and Ambient-Pressure Sol-Gel Process with Enhanced Photocatalytic Properties

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한국재료학회지 (Korean Journal of Materials Research)
한국재료학회 (Materials Research Society Of Korea)
초록

In this study, anatase TiO2 nano sol (TNS, TiO2 Nano-Sol) was synthesized via a simple sol-gel method under low-temperature and ambient pressure conditions using TiOCl2 as a precursor. The structural and photocatalytic properties of the TNS were systematically investigated as a function of reaction time. X-ray diffraction (XRD) confirmed the formation of the anatase crystal structure as the reaction time increased, while field-emission scanning electron microscopy (FE-SEM) and transmission electron microscopy (TEM) analyses verified the uniform formation of fine anatase nanoparticles, averaging less than 10 nm in size. The synthesized TNS sol enabled the fabrication of transparent TiO2 coatings that retained over 76 % transmittance in the visible light range, as verified by UV-Vis spectroscopy. Photocatalytic activity was evaluated through methylene blue (MB) degradation experiments, which showed that degradation efficiency was enhanced with longer reaction times. Notably, the TNS-48 exhibited superior photocatalytic degradation performance, being approximately three times higher than that of TNS-1 and about twice that of the commercial P25. This study demonstrates that the TNS sol synthesized through a simple sol-gel process can achieve high transparency and excellent photocatalytic properties without requiring hightemperature and high-pressure synthesis. It is expected to be applicable in various photocatalytic fields, such as functional coatings and electrode materials.

목차
Abstract
1. 서 론
2. 실험 방법
    2.1. 시약 및 재료
    2.2. Anatase TiO2 나노 졸 제조(TNS, TiO2 Nano-Sol)
    2.3. 투명 TNS 코팅막 제조
    2.4. 특성 분석
3. 결과 및 고찰
4. 결 론
Acknowledgement
References
<저자소개>
저자
  • 문혜원(한국세라믹기술원) | Hyewon Mun (New Growth Materials Research Division, Korea Institute of Ceramic Engineering and Technology (KICET), Jinju 52851, Republic of Korea)
  • 노동규(한국세라믹기술원) | Dongkyu Roh (New Growth Materials Research Division, Korea Institute of Ceramic Engineering and Technology (KICET), Jinju 52851, Republic of Korea) Corresponding author