A review on novel routes of synthesizing titanium dioxide-based nanostructure derived from ilmenite mineral

Maulana, Fakhri Akbar and Yuwono, Akhmad Herman and Sofyan, Nofrijon and Dhaneswara, Donanta and Septiningrum, Fairuz and Nurhidayah, Eka and Lalasari, Latifa Hanum and Noviyanto, Alfian (2024) A review on novel routes of synthesizing titanium dioxide-based nanostructure derived from ilmenite mineral. Chemical Engineering Journal Advances, 20. p. 100640. ISSN 26668211

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Abstract

Nanostructure materials have received significant attention in recent years due to the unique properties and potential applications in various fields. Among these materials, titanium dioxide (TiO 2 )-based materials have proven promising due to outstanding mechanical, electrical, and catalytic properties. Therefore, this research aimed to offer a comprehensive overview of synthesis and photocatalytic applications of TiO-based nano structure materials derived from ilmenite mineral. Furthermore, the pretreatment process of ilmenite mineral using mechanical activation was explored. Various synthetic routes, such as liquid-based, residue-based, and direct ilmenite-based approaches, were also discussed and the advantages and limitations of the routes were explained. In addition, the research included a comparative analysis of the properties of TiO 2-based nano structure materials derived from ilmenite mineral with the commercial in terms of crystallinity, composition, morphology, and selected optical properties. The article concluded with a discussion of the challenges and prospects for using nanostructure materials based on TiO 2 2 from ilmenite mineral. This research served as a valuable resource for explorers and scientists working on nanostructure materials and provides insight into the sustainable use of natural resources for synthesis of advanced TiO 2-based materials with shaped properties

Item Type: Article
Uncontrolled Keywords: Ilmenite mineral; Sulfate processing; TiO 2 nanostructure; Novel synthesizing route ; Photocatalytic application
Subjects: Materials Sciences
Depositing User: Mrs Titi Herawati
Date Deposited: 09 Dec 2025 02:00
Last Modified: 09 Dec 2025 02:00
URI: https://karya.brin.go.id/id/eprint/55855

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