Titanate nanofibers provide optimized ion exchange capacity, superior mechanical reinforcement, and enhanced thermal stability. Designed for catalysis, energy storage, and biomedical applications, they ensure efficient charge transport, extended durability, and high adaptability.
Product Overview
Titanate nanofibers are a novel nanomaterial, commonly prepared by the hydrothermal method. By controlling reaction temperature, time, and the concentration of mineralizing agents, these nanofibers are synthesized. They possess excellent light energy conversion properties, photocatalytic/electrocatalytic properties, and ion exchange abilities, making them widely applicable in optoelectronic devices, catalysis, adsorption separation, and sensor technologies.
Key Features
- Light Energy Conversion:Capable of absorbing and converting light energy, opening up potential applications in optoelectronic devices.
- Photocatalytic/Electrocatalytic Properties:Exhibits good catalytic activity in photocatalytic and electrocatalytic reactions, useful for organic pollutant degradation and water splitting for hydrogen production.
- Ion Exchange Properties:With ion exchange capabilities, ideal for use in ion-exchange membranes and adsorption separation applications.
- Mechanical Properties:With specific assembly methods, these nanofibers show excellent compressive strength and high porosity, making them suitable for separation and catalysis applications.
Applications
- Optoelectronic Devices:Their light energy conversion properties make them ideal for use in solar cells, photodetectors, and other optoelectronic devices.
- Catalysis:Used in photocatalytic and electrocatalytic reactions for organic pollutant degradation and water splitting, with applications in environmental protection and energy sectors.
- Adsorption and Separation:With ion exchange properties and high porosity, they are suitable for ion adsorption separation in solutions and capturing ultrafine nanoparticles.
- Sensors:With their unique properties, they have potential applications in chemical sensors and other sensing technologies.
Parameter | Value |
Purity | 99% |
Width | 40-500 nm |
Length | 5-20 μm |
Surface Area | 20-30 m²/g |
Shape | White powder |
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