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Au TiO2 Core Shell Nanoparticles

Au TiO2 Core Shell Nanoparticles

Product Details:

  • Ph Level Typically neutral, can be adjusted for dispersion
  • Boiling point N/A (Solid Core-Shell Nanoparticle)
  • Smell Odorless
  • Shape Spherical Core-Shell
  • Molecular Formula Not applicable (Composite nanoparticle: Au core, TiO2 shell)
  • HS Code 28530090
  • Taste Odorless and Tasteless (for research use only)
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Au TiO2 Core Shell Nanoparticles Product Specifications

  • Au-TiO2 Core Shell NP, Core-Shell Gold-Titania Nanoparticles
  • >99%
  • Catalysis, Photocatalysis, Biosensing, SERS substrates, Photonics, Drug delivery, Plasmonic devices
  • N/A (Composite); Au: 7440-57-5, TiO2: 13463-67-7
  • Gold (Au), Titanium Dioxide (TiO2)
  • Au: 1064C; TiO2: 1843C; (Core-shell form remains stable under <500C)
  • Yes
  • Varies, typically in the range of 1.8 2.5 (TiO2 shell)
  • Core (Au) Shell (TiO2)
  • Colloidal Dispersion, Powder (on request)
  • Nano Material
  • Conforms to lab research standards
  • Research, Nanotechnology, Material Science, Biomedical Engineering
  • N/A (Composite material; individual EINECS: Au 231-165-9, TiO2 236-675-5)
  • Not defined (depends on nanoparticle size and shell thickness)
  • 9 Gram per cubic centimeter(g/cm3)
  • Store in a cool, dry place. Protect from light/UV and contamination.
  • Gold@Titanium Dioxide Core Shell Nanoparticle
  • Dispersible in water and most polar solvents
  • Odorless and Tasteless (for research use only)
  • Not applicable (Composite nanoparticle: Au core, TiO2 shell)
  • 28530090
  • Spherical Core-Shell
  • Odorless
  • N/A (Solid Core-Shell Nanoparticle)
  • Core-Shell Nanoparticle
  • Research Grade
  • Typically neutral, can be adjusted for dispersion
  • Water or ethanol-based for suspension
  • Stable under recommended storage conditions
  • Whitish to pale yellow colloidal solution or fine powder
  • Typically 5-20 nm
  • Core and shell sizes, and surface modifications available upon request
  • Typically +30 mV to 30 mV (depends on functionalization)
  • Usually 10-50 nm (customizable)
  • Gold@Titania Nanoparticles, Au/TiO2 core-shell
  • 12-24 months in sealed container
  • Available on request (e.g., PEG, amine, carboxyl)

Au TiO2 Core Shell Nanoparticles Trade Information

  • Paypal, Letter of Credit (L/C), Western Union, Telegraphic Transfer (T/T), Cash in Advance (CID), Cheque
  • Yes
  • Sample costs shipping and taxes has to be paid by the buyer
  • All India

Product Description

Au TiO2 Core Shell Nanoparticles

  • MF:                                  Au/TiO2
  • Chemical Name:             Gold Titanium Oxide Core Shell Nanoparticles
  • Purity:                             > 99.99%
  • APS:                               80-100 nm (Size Customization possible)
  • Form:                              Nanopowder
  • Product Number:            NCZCS118
  • CAS Number:                 7440-57-5


Advanced Nanostructure Design

The gold core encapsulated by a titanium dioxide shell creates a unique plasmonicphotocatalytic hybrid material. This architected composition offers exceptional chemical and physical stability, with tailored core and shell dimensions to suit experimental requirements in various fields.


Versatility in Applications

Au TiO2 Core Shell Nanoparticles are utilized in a wide spectrum of research areas, including catalysis, biosensing, SERS substrates, photonics, and drug delivery systems. Their customizable surface and dispersibility ensure broad compatibility with a range of experimental setups and scientific disciplines.


Customizable and Reliable

These core-shell nanoparticles are available with customized core/shell sizes and surface functionalities to match your research needs. With high purity, predictable zeta potential, and a shelf life of up to 24 months, they conform to laboratory standards, ensuring dependable results.

FAQs of Au TiO2 Core Shell Nanoparticles:


Q: How can Au TiO2 Core Shell Nanoparticles be utilized in scientific research?

A: These nanoparticles are ideal for catalysis, biosensing, photonics, surface-enhanced Raman spectroscopy (SERS), and drug delivery due to their plasmonic and photocatalytic properties and customizable size and surface chemistries.

Q: What customization options are available for these coreshell nanoparticles?

A: You can request customized core diameters (1050 nm), TiO2 shell thicknesses (520 nm), and surface modifications such as PEG, amine, or carboxyl functionalization to best suit your project objectives.

Q: When should the nanoparticles be stored, and under what conditions?

A: Store Au TiO2 Core Shell Nanoparticles in a sealed container in a cool, dry place, protected from UV light and contamination to maintain their stability and performance for 1224 months.

Q: Where can these nanoparticles be applied for maximum benefit?

A: They are suited for laboratory research in nanotechnology, material science, and biomedical engineering, as well as for advanced development in catalysis, photonics, and drug delivery applications.

Q: What is the process for dispersing these nanoparticles in solution?

A: They can be readily dispersed in water or ethanol. For best results, gentle stirring or sonication helps achieve a uniform suspension, and the pH can be adjusted as required.

Q: How does surface functionalization enhance the usage of these nanoparticles?

A: Surface functionalization (e.g., PEGylation, amination) improves biocompatibility, stability, and specific targeting capabilities, expanding their use in biosensing, biomedical, and drug delivery research.

Q: What are the main benefits of using Au TiO2 Core Shell Nanoparticles compared to individual components?

A: Combining gold and titanium dioxide provides synergistic effects, such as enhanced plasmonic resonance, improved photocatalytic efficiency, increased stability, and broader application potential in advanced research.

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