NanoXact Silica Nanospheres 5 mg/ml Aminated Silica (Cationic / Positively Charged Surface), nanoComposix

Supplier: nanoComposix
SIAN20-100M SIAN500-500M SIAN20-500M SIAN100-500M SIAN80-500M SIAN20-1L SIAN200-25M SIAN60-500M SIAN60-25M SIAN120-25M SIAN120-1L SIAN200-1L SIAN500-100M SIAN1000-500M SIAN80-1L SIAN300-500M SIAN300-25M SIAN1000-25M SIAN200-100M SIAN50-1L SIAN100-100M SIAN500-25M SIAN200-500M SIAN50-25M SIAN120-100M SIAN50-500M SIAN1000-1L SIAN20-25M SIAN300-100M SIAN60-1L SIAN120-500M SIAN80-100M SIAN1000-100M SIAN50-100M SIAN300-1L SIAN500-1L SIAN100-25M SIAN100-1L SIAN60-100M SIAN80-25M
103820-642EA 3450 USD
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NanoXact Silica Nanospheres 5 mg/ml Aminated Silica (Cationic / Positively Charged Surface), nanoComposix
Beads Microcarriers
High quality silica nanoparticles, provided with full COA; great value. Aminated silica surface.

  • High quality nanoparticles, precisely engineered and highly characterized
  • Unagglomerated and monodisperse
  • Positively to charged aminated surface offers a versatile, conjugatable surface

Spherical silica nanoparticles with an aminated (amine to terminated) surface, Available in 20 to 400 nm sizes, provided in ethanol. NanoXact materials are precisely engineered, unagglomerated nanospheres with a narrow size distributions (CV <15%).

Each batch is extensively characterized to ensure it meets the highest quality standards so you can achieve reliable & reproducible results. Products are supplied with COA's that include batch-specific TEM, DLS, Zeta Potential, UV-Vis, & pH measurements.

Silica nanoparticles’ large surface area can be used for Absorption Studies, Nanosphere Lithography, and Coating applications. The aminated surface can be used for binding & conjugation with carboxyl-containing molecules (using EDAC), isothiocyanate (ITC), or amine-reactive esters.

Custom formulations and ISO13485/cGMP compliant materials can be provided on request.

Delivery information: Ships at ambient temperatures

Caution: DO NOT FREEZE. Store at 25 °C, bath sonicate if needed. Nanomaterials can be sensitive to high and low pH conditions and high salt concentrations. Use caution when changing environmental conditions as particles may aggregate.
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