Overview of Amine Gold Nanorods (Diameter: 15nm)
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Typical Properties
Catalog | ACCM0101 |
Core Dimensions | 44 nm X 16 nm |
Aspect Ratio | 2.8 |
Diameter | 15 nm |
Longitudinal Peak Wavelength | 700 nm |
Transverse Peak Wavelength | 513 nm |
Functional Group | Amine terminated |
Zeta Potential | +3 mV |
Optical Density | 50 OD |
Formulation | Supplied in double distilled water (ddH2O) |
Size and Spacer Length You Can Choose
Size | 0.5 ml, 1 ml |
Spacer Length | 3 kDa, 5 kDa |
*If you have other needs, please feel free to contact us.
Overview of Amine Gold Nanorods (Diameter: 15nm)
Description
Applications
Storage
Amine gold nanorods are gold nanorods with amine groups on their surface. They have a unique one-dimensional morphology with a high aspect ratio and high specific surface area, allowing for simple and efficient coupling with a variety of moieties that react with primary amines. The presence of amine functional groups on the surface of the nanorods offers many advantages, such as increased stability in aqueous solutions, enhanced biocompatibility, and the ability to easily attach other molecules via amine coupling chemistry. At Alfa Chemistry, our 15 nm diameter amine gold nanorods can be easily synthesized by a variety of methods, including template, seed-mediated growth, photochemical, and electrochemical methods. The size, shape, and surface functionalization of the nanorods can be carefully controlled to tailor their properties to specific applications. And they are also extensively purified after synthesis, reducing contaminants from the manufacturing process that might interfere with sensitive downstream applications.
Our 15 nm diameter amine gold nanorods are ideal for applications that require binding of proteins or other ligands to the nanorod surface. For example, conjugating them to proteins or antibodies that have been labeled with N-hydroxysuccinimide (NHS) will create a covalent bond between the gold nanoparticle surface and the protein. This permanent attachment allows for further downstream applications, such as monitoring the distribution of the now-tagged molecule.
This product should be stored at 4 °C. It is stable for at least 6 months if unopened and stored as specified.
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