Product Introduction:
Gold nanorods are defined as nanometer-sized rod-shaped gold particles. Due to their anisotropic shape and unique physical properties, they have become one of the emerging materials in recent years. They are highly promising in the fields of biosensing, drug delivery, cell imaging, cancer therapy, chemical analysis and catalysts.
Our Products
Water-soluble Gold Nanorods
Oil-soluble Gold Nanorods
PEG Functionalized Gold Nanorods (-NH2)
PEG Functionalized Gold Nanorods (-COOH)
PEG Functionalized Gold Nanorods (-OCH3)
Streptavidin Modified Gold Nanorods
Water-soluble gold nanorods have a wide range of applications, especially in the fields of drug carriers, tumor diagnosis, laser hyperthermia, photoacoustic imaging, and computed tomography (CT) imaging. According to the different aspect ratios, the aqueous solution of gold nanorods presents blue, brown, brownish red and other colors.
Product Name | Catalog Number | Surface Group | Maximum Absorption Wavelength | Concentration | Solvent |
Water-soluble Gold Nanorods (λ=610 nm) | GH-Au001 | -CTAB | 610±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=660 nm) | GH-Au002 | -CTAB | 660±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=700 nm) | GH-Au003 | -CTAB | 700±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=720 nm) | GH-Au004 | -CTAB | 720±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=760 nm) | GH-Au005 | -CTAB | 760±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=790 nm) | GH-Au006 | -CTAB | 790±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=800 nm) | GH-Au007 | -CTAB | 800±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=830 nm) | GH-Au008 | -CTAB | 830±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=880 nm) | GH-Au009 | -CTAB | 880±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=900 nm) | GH-Au010 | -CTAB | 900±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=940 nm) | GH-Au011 | -CTAB | 940±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=960 nm) | GH-Au012 | -CTAB | 960±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=980 nm) | GH-Au013 | -CTAB | 980±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=1260 nm) | GH-Au014 | -CTAB | 1260±15 nm | 0.1 mg/mL | Ultrapure water |
Water-soluble Gold Nanorods (λ=1850 nm) | GH-Au015 | -CTAB | 1850±15 nm | 0.1 mg/mL | Ultrapure water |
Oil-soluble gold nanorods can be stably dispersed in organic solvents such as xylene, trichloromethane, toluene and cyclohexane. These gold nanorods can be co-dissolved with insoluble drugs, and further surface phospholipid modification to form a nanoparticle-drug-phospholipid composite structure to effectively construct nano-drug carriers. They can be used for photothermal therapy, photoacoustic imaging, surface-enhanced Raman imaging, CT imaging, and combined drug therapy. In addition, oil-soluble gold nanorods are also widely used in anti-counterfeiting materials, surface-enhanced Raman spectroscopy detection of oily systems, and fuel cells.
Product Name | Catalog Number | Surface Group | Maximum Absorption Wavelength | Concentration | Solvent |
Oil-soluble Gold Nanorods (λ=610 nm) | GH-Au016 | Aromatic hydrocarbon | 610±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=660 nm) | GH-Au017 | Aromatic hydrocarbon | 660±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=700 nm) | GH-Au018 | Aromatic hydrocarbon | 700±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=720 nm) | GH-Au019 | Aromatic hydrocarbon | 720±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=760 nm) | GH-Au020 | Aromatic hydrocarbon | 760±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=790 nm) | GH-Au021 | Aromatic hydrocarbon | 790±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=800 nm) | GH-Au022 | Aromatic hydrocarbon | 800±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=830 nm) | GH-Au023 | Aromatic hydrocarbon | 830±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=880 nm) | GH-Au024 | Aromatic hydrocarbon | 880±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=900 nm) | GH-Au025 | Aromatic hydrocarbon | 900±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=940 nm) | GH-Au026 | Aromatic hydrocarbon | 940±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=960 nm) | GH-Au027 | Aromatic hydrocarbon | 960±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=980 nm) | GH-Au028 | Aromatic hydrocarbon | 980±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=1260 nm) | GH-Au029 | Aromatic hydrocarbon | 1260±15 nm | 0.1 mg/mL | Xylene |
Oil-soluble Gold Nanorods (λ=1850 nm) | GH-Au030 | Aromatic hydrocarbon | 1850±15 nm | 0.1 mg/mL | Xylene |
PEG functionalized gold nanorods have excellent biocompatibility and biomolecular re-modification ability. They can be used for photothermal therapy, photoacoustic imaging, surface-enhanced Raman imaging, CT imaging, and combined drug therapy.
Product Name | Catalog Number | Surface Group | Maximum Absorption Wavelength | Concentration | Solvent |
PEG Functionalized Gold Nanorods (-NH2) (λ=610 nm) | GH-Au031 | -NH2 | 610±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=660 nm) | GH-Au032 | -NH2 | 660±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=700 nm) | GH-Au033 | -NH2 | 700±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=720 nm) | GH-Au034 | -NH2 | 720±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=760 nm) | GH-Au035 | -NH2 | 760±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=790 nm) | GH-Au036 | -NH2 | 790±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=800 nm) | GH-Au037 | -NH2 | 800±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=810 nm) | GH-Au038 | -NH2 | 810±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=880 nm) | GH-Au039 | -NH2 | 880±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=900 nm) | GH-Au040 | -NH2 | 900±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=940 nm) | GH-Au041 | -NH2 | 940±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=960 nm) | GH-Au042 | -NH2 | 960±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=980 nm) | GH-Au043 | -NH2 | 980±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=1260 nm) | GH-Au044 | -NH2 | 1260±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-NH2) (λ=1850 nm) | GH-Au045 | -NH2 | 1850±15 nm | 0.1 mg/mL | Ultrapure water |
PEG functionalized gold nanorods have excellent biocompatibility and biomolecular re-modification ability. They can be used for photothermal therapy, photoacoustic imaging, surface-enhanced Raman imaging, CT imaging, and combined drug therapy.
Product Name | Catalog Number | Surface Group | Maximum Absorption Wavelength | Concentration | Solvent |
PEG Functionalized Gold Nanorods (-COOH) (λ=610 nm) | GH-Au046 | -COOH | 610±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=660 nm) | GH-Au047 | -COOH | 660±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=700 nm) | GH-Au048 | -COOH | 700±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=720 nm) | GH-Au049 | -COOH | 720±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=760 nm) | GH-Au050 | -COOH | 760±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=790 nm) | GH-Au051 | -COOH | 790±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=800 nm) | GH-Au052 | -COOH | 800±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=810 nm) | GH-Au053 | -COOH | 810±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=880 nm) | GH-Au054 | -COOH | 880±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=900 nm) | GH-Au055 | -COOH | 900±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=940 nm) | GH-Au056 | -COOH | 940±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=960 nm) | GH-Au057 | -COOH | 960±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=980 nm) | GH-Au058 | -COOH | 980±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=1260 nm) | GH-Au059 | -COOH | 1260±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-COOH) (λ=1850 nm) | GH-Au060 | -COOH | 1850±15 nm | 0.1 mg/mL | Ultrapure water |
PEG functionalized gold nanorods have excellent biocompatibility and biomolecular re-modification ability. They can be used for photothermal therapy, photoacoustic imaging, surface-enhanced Raman imaging, CT imaging, and combined drug therapy.
Product Name | Catalog Number | Surface Group | Maximum Absorption Wavelength | Concentration | Solvent |
PEG Functionalized Gold Nanorods (-OCH3) (λ=610 nm) | GH-Au061 | -OCH3 | 610±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=660 nm) | GH-Au062 | -OCH3 | 660±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=700 nm) | GH-Au063 | -OCH3 | 700±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=720 nm) | GH-Au064 | -OCH3 | 720±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=760 nm) | GH-Au065 | -OCH3 | 760±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=790 nm) | GH-Au066 | -OCH3 | 790±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=800 nm) | GH-Au067 | -OCH3 | 800±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=810 nm) | GH-Au068 | -OCH3 | 810±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=880 nm) | GH-Au069 | -OCH3 | 880±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=900 nm) | GH-Au070 | -OCH3 | 900±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=940 nm) | GH-Au071 | -OCH3 | 940±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=960 nm) | GH-Au072 | -OCH3 | 960±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=980 nm) | GH-Au073 | -OCH3 | 980±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=1260 nm) | GH-Au074 | -OCH3 | 1260±15 nm | 0.1 mg/mL | Ultrapure water |
PEG Functionalized Gold Nanorods (-OCH3) (λ=1850 nm) | GH-Au075 | -OCH3 | 1850±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin modified gold nanorods can bind biotinylated proteins or oligonucleotides to meet the different experimental needs of researchers. Streptavidin-biotin system is characterized by high sensitivity, good specificity, high stability and wide application.
Product Name | Catalog Number | Surface Group | Maximum Absorption Wavelength | Concentration | Solvent |
Streptavidin Modified Gold Nanorods (λ=610 nm) | GH-Au076 | SA | 610±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=660 nm) | GH-Au077 | SA | 660±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=700 nm) | GH-Au078 | SA | 700±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=720 nm) | GH-Au079 | SA | 720±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=760 nm) | GH-Au080 | SA | 760±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=790 nm) | GH-Au081 | SA | 790±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=800 nm) | GH-Au082 | SA | 800±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=810 nm) | GH-Au083 | SA | 810±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=880 nm) | GH-Au084 | SA | 880±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=900 nm) | GH-Au085 | SA | 900±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=940 nm) | GH-Au086 | SA | 940±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=960 nm) | GH-Au087 | SA | 960±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=980 nm) | GH-Au088 | SA | 980±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold Nanorods (λ=1260 nm) | GH-Au089 | SA | 1260±15 nm | 0.1 mg/mL | Ultrapure water |
Streptavidin Modified Gold NanorodSAs (λ=1850 nm) | GH-Au090 | SA | 1850±15 nm | 0.1 mg/mL | Ultrapure water |