| Catalog | name | Description | price |
|---|---|---|---|
| R-R-0303 | Silane-PEG1k-NHS | Silane-PEG-NHS/Silane-PEG-N-hydroxysuccinimide is a heterobifunctional polyethylene glycol (PEG) derivative. Surface modification of glass, silica nanoparticles, and metal oxide substrates. Bioconjugation: Facilitates covalent attachment of biomolecules (antibodies, peptides, enzymes). Spacer/Linker: Provides a hydrophilic, flexible PEG chain to improve stability and reduce nonspecific adsorption. Applications: Biosensors, microarrays, targeted drug delivery systems, and nanoparticle functionalization. | price> |
| R-29020909 | Silane-peg-N3 | Silane-polyethylene glycol-azide,Silane-peg-N3 can be used to modify proteins, peptides and other materials. Azide can react with alkynes catalyzed by copper in aqueous solution and be reduced to amines.Silane functionalized peg can be used to modify glass, silicon, etc. Polyethylene glycol can increase solubility and stability, reduce the immunogenicity of peptides and proteins, and inhibit the nonspecific binding of charged molecules on modified surfaces. | price> |
| R-M2-9768 | Silane-PEG8-OCH3 | Silane-PEG8-OCH3/Silane-polyethylene glycol8-OCH3 is a mono-functional surface modifier designed for surface passivation and hydrophilic coating. Applications: Nanomedicine: PEGylation of nanoparticles for stealth behavior; Surface passivation: Prevents non-specific protein adsorption; Microfluidics and lab-on-a-chip: Reduces biofouling in channels; Biosensing: Used alongside reactive PEGs (e.g.,-COOH,-NH2) to control surface density; Silicon/Glass chip modification: Produces hydrophilic, non-reactive coatings. | price> |
| R-M2-10851 | Silane-PEG-NTA | NTA-PEG-Silane/Silane-PEG-Nitrilotriacetic acid/Nitrilotriacetic acid-PEG-Silane is a bifunctional PEG derivative designed for inorganic surface functionalization, suitable for your previous research scenarios related to biomaterial modification. Constructing anti protein adsorption functional layers on the surface of medical implants such as titanium alloys and zirconia ceramics, while introducing metal affinity sites for immobilizing functional active proteins. It can be used for functionalization modification of glass and silica substrates, constructing a biosensing interface that can selectively capture His tag recombinant proteins, and adapting to protein interaction screening experiments. | price> |

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