
BiOX-based Photocatalysts for Dual Applications
Water Treatment and Energy Storage
by Tonni Agustiono Kurniawan, Kit Wayne Chew
1st Edition
Publisher: Elsevier
Book Details
| Print ISBN | 9780443238611 |
| eText ISBN | 9780443238628 |
| Publisher | Elsevier |
| Publishing Year | 2025 |
| Edition | 1st Edition |
| Language | English |
| Pages | 538 |
BiOX-based Photocatalysts for Dual Applications, 1st Edition, presents the preparation and operational mechanisms of bismuth oxyhalide semiconductor materials for water treatment and energy storage. The text establishes how structural modifications direct photoreaction performance, providing postgraduate students and academics with a structured framework for evaluating photo-driven chemical processes.
The volume organizes its theoretical and empirical findings around key synthetic pathways and material architectures. Readers examine the hydrothermal synthesis of Bi5O7Br under visible light alongside the solvothermal growth of hierarchical Bi4O5I2 structures. Subsequent sections detail the fabrication of Bi24O31Br10 nanosheets, Z-scheme Bi2MoO6/CdSe heterojunctions, and BiOI/TiO2 heterostructured nanofibers configured for solar energy conversion.
An extensive literature survey incorporates findings across wastewater treatment, environmental cleaning, and energy production. This evidence-based structure equips postdoctoral researchers, chemical engineers, and industrial waste specialists to translate physical chemistry principles into practical remediation tools.
Table of Contents
Chapter 1.1: Introduction of BiOX photocatalysts
Chapter 1.2: Outlook of photocatalytic properties of BiOX
Chapter 1.3: Controllable synthesis, growth mechanism, and application of BiOClxBr1-x
Chapter 1.4: Hydrothermal synthesis of Bi5O7Br and photocatalytic activity under visible light
Chapter 1.5: Synthesis of BiOCl thin film by electrochemical method for photocatalysis
Chapter 1.6: Solvothermal synthesis of hierarchical Bi4O5I2
Chapter 2.1: Controllable growth and application of BiOClxBr1-x photocatalysis
Chapter 2.2: Electronic structure and photocatalytic activity of BiOCl photocatalyst.
Chapter 2.3: Ag-BiOBr-rGO photocatalyst for enhanced photodegradation
Chapter 2.4: Fabrication of Bi24O31Br10 as a highly efficient photocatalyst
Chapter 2.5: Bi7O9I3 microsheets for efficient photocatalytic degradation
Chapter 2.6: BiOCl-g-C3N4 ultrathin heterostructure nanosheets
Chapter 2.7: Bi3O4Cl single-crystalline nanosheets with high {001} facet
Chapter 2.8: BiOCl/Bi24O31Cl10 heterojunctions via self-combustion
Chapter 3.1: BiOBr/Bi12O17Cl2 heterojunction
Chapter 3.2: p-n BiOI@Bi5O7I heterojunction
Chapter 3.3: Bi24O31Br10 nanosheets with controllable thickness
Chapter 3.4: Intra-heterostructure BixOyClz nanophotocatalyst
Chapter 3.5: Z-scheme Bi2MoO6/CdSe heterojunction
Chapter 3.6: BiOI/TiO2 heterostructured nanofibers
Chapter 3.7: Bi4O5Br2 photocatalyst with tunable conduction
Chapter 4.1: Bi12O15Cl6 photocatalyst for photodegradation of bisphenol A
Chapter 4.2: Challenges and bottlenecks of BiOX in wastewater treatment
Chapter 4.3: Emerging opportunities of BiOX in wastewater treatment
Chapter 4.4: Ways forward for BiOX-based photocatalysts in water treatment
Chapter 4.5: Feasibility of BiOX for photocatalytic degradation of organic pollutants
Chapter 4.6: Applicability of BiOX for photocatalytic degradation of inorganic pollutants
Chapter 4.7: State of the art of BiOX for aquatic environmental remediation
Chapter 5.1: Application of BiOX for photocatalysis production of H2
Chapter 5.2: Utilization of BiOX for photocatalytic reduction of CO2
Chapter 5.3: Defect engineering of BiOX- based photocatalysts for energy storage
Chapter 5.4: BiOX-based 2D composites for solar energy harvesting
Chapter 5.5: L-BIOX as a high-capacity anode for energy storage of Li ion batteries
Chapter 5.6: Bi-based photocatalysts for energy storage applications
Chapter 5.7: BiOX-based photoctalysts for water splitting
Chapter 5.8: Bi4O5Br2 photocatalyst for CO2 photoreduction
Chapter 5.9: Bi4O5Br2 for solar-driven conversion of CO2 into valuable fuels
Chapter 5.10: State of the art of BiOX for removal of air pollutant
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