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Catalog | name | Description | price |
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R-C-6523 | (E)-4-(((4-((6-mercaptohexyl)oxy)phenyl)imino)methyl)phenyl acrylate | The compound (E)-4-(((4-((6-mercaptohexyl)oxy)phenyl)imino)methyl)phenyl acrylate is a chemical compound with the given structure.It consists of a phenyl acrylate group attached to a structure containing a (4-((6-mercaptohexyl)oxy)phenyl)imino)methyl functional group.This compounds structure suggests it could be used in organic synthesis or potentially in materials science applications.Please inquire about the price directly through email for sales. | price> |
R-C-6524 | (E)-4-(((4-(heptyloxy)phenyl)imino)methyl)phenyl acrylate CAS:57222-56-7 | The compound(E)-4-(((4-(heptyloxy)phenyl)imino)methyl)phenyl acrylate consists of a phenyl acrylate group with a structural component that includes a (4-(heptyloxy)phenyl)imino)methyl group.This compound is characterized by its specific arrangement of functional groups and is likely used in organic synthesis or related fields.Please inquire about the price directly through email for sales. | price> |
R-C-6525 | DMPE (C14 alkyl chains)-PCB | Carboxybetaine is a zwitterionic compound,meaning it possesses both positive and negative charges,but overall is electrically neutral.They are excellent in resisting non-specific protein adsorption,making them highly useful in biotechnological and medical applications,especially for materials that require excellent biocompatibility.1,2-Dimyristoyl-sn-glycero-3-phosphoethanolamine-(Poly(carboxybetaine))describes a complex amphiphilic molecule. | price> |
R-C-6526 | DPPE (C16 alkyl chains)-PCB | The phospholipid part,DPPE,consists of a glycerol backbone with two palmitic acid chains attached to the first and second positions and a phosphoethanolamine group attached to the third position.This type of phospholipid is often used in the formation of liposomes and lipid bilayers for various experimental and biological applications.The poly(carboxybetaine) segment is a polymer containing carboxybetaine groups along its chain.Carboxybetaine polymers are known for their unique properties,including high water solubility,excellent biocompatibility,and resistance to nonspecific protein adsorption,making them attractive for various biomedical and biomaterial applications. | price> |
R-C-6527 | Monolayer Graphene Powder Chemical method | The single-layer graphene powder chemical method is based on the preparation of single-layer graphene oxide through chemical reducing agents.It belongs to the category of reduced graphene oxide(RGO), with high monolayer rate,multiple active sites,and good conductivity.It is used in fields such as electrochemistry,catalysis,photothermal,absorption,heat dissipation,and energy storage.When using this product for dispersion in water,it is recommended to add a dispersant for ultrasonic dispersion. | price> |
R-C-6528 | DETA-GO powder | Amino graphene oxide has a wide range of applications in sensing,adsorption,catalysis, supercapacitors,and other fields.Diethylenetriamine modified graphene oxide can be combined with traditional metal oxide photocatalysts to enhance the catalytic performance of the material. | price> |
R-C-6529 | APTMS-rGO powder | Amino graphene oxide has a wide range of applications in sensing, adsorption, catalysis, lubrication, coatings, and other fields.Research has shown that graphene oxide modified with 3-aminopropyltrimethoxysilane can be combined with water-based resins to improve the tensile properties and thermal stability of the composite materials. | price> |
R-C-6530 | ACS Material Graphene on Silicon Nitride TEM Grids | Stone electron microscopy(SEM)is a type of electron microscopy technique used for transmission electron microscopy(TEM)and scanning electron microscopy(SEM).It involves growing or coating a layer of graphite film on a silicon nitride substrate to provide a stable,conductive,and low background signal carrier for supporting the observed sample. | price> |
R-C-6531 | Carboxylated reduced graphene oxide dispersion 1mg/mL | Carboxylated reduced graphene oxide can be well dispersed in water.A dispersion solution with a concentration of 1 mg/mL(without additives)only partially settles at the bottom of the container after 24 hours of standing,and can be re dispersed after shaking.Carboxyl based fossil graphene materials are widely used in fields such as electrocatalysis,photocatalytic reactions,nanocarriers,dispersants,etc. | price> |
R-C-6532 | Hydroxylated graphene dispersion 1mg/mL | Hydroxyl fossil graphene materials can be combined with cement to improve the compressive strength of their composite materials;It can also be used as a thermal filler to composite with rubber materials and improve their thermal conductivity.Meanwhile,hydroxylated graphene materials can be used as anti-corrosion coatings to improve the corrosion resistance of equipment.Hydroxyl fossil graphene materials have also been widely used in photocatalysis and pollutant adsorption. | price> |
R-C-6533 | High concentration graphene oxide dispersion 20mg/ml | Used for anti-static materials,adsorption materials,sensors,solar cells,fuel cells,electrochemical energy storage,graphene/polymer composite materials,conductive films,high-strength graphene films,metal catalyst carriers,biomedicine,etc. | price> |
R-C-6534 | Graphene oxide dispersion 10 mg/ml | Used for anti-static materials,adsorption materials,sensors,solar cells,fuel cells,electrochemical energy storage,graphene/polymer composite materials,conductive films,high-strength graphene films,metal catalyst carriers,biomedicine,etc. | price> |
R-C-6535 | Graphene Powder with small diameter | Graphene Powder with small diameter,Small diameter single-layer graphene powder refers to a powder form composed of single-layer graphene sheets.Single layer graphene is a two-dimensional material composed of a single layer of carbon atoms,with many unique properties such as high conductivity,high thermal conductivity,and mechanical strength. | price> |
R-C-6536 | Porous graphene | Porous graphene is an excellent electrode material for trace level quantification of environmental toxins. Porous graphene is applied in the form of nanomesh graphene,crumpled graphene,and graphene foam. Porous graphene monolith provides the better interaction of the electrolyte and analyte to the electrode surface. | price> |
R-C-6537 | Large diameter graphene oxide sheet | The Large diameter graphene oxide sheet can be used for applications such as adsorption,separation, catalysis,solid-phase extraction,detection,and sensors.Due to the influence of ultrasound power and time on the size of graphene oxide flakes,prolonged ultrasound is not recommended.Store in a dry and dark place,with a storage temperature not exceeding 20 ℃.When dispersing solids,the temperature should be controlled below 20 ℃.The maximum storage period before opening is 6 months. | price> |
R-C-6538 | Graphene Oxide | The monolayer rate of graphene oxide(GO)is as high as 99%,and the interlayer spacing is about 1nm. Fresh GO samples are brown in color, rich in oxygen-containing functional groups,and have good water solubility.Generally,after 2 hours of 700W ultrasound,a uniform water dispersion can be obtained,with good film-forming properties and excellent adsorption of single stranded DNA.They can be widely used in fields such as electrochemistry,biology,humidity sensing,fluorescence quenching,and heat dissipation, providing great convenience for scientific researchers. | price> |
R-C-6539 | Staudenmaier Method of graphite oxide powder | The Staudenmaier method is a chemical oxidation method used to prepare graphite oxide powder.This method involves using a series of strong oxidants and acids to oxidize graphite,thereby producing graphite oxide.The Staudenmaier method typically involves the use of ammonium sulfate (NH4HSO4), nitric acid (HNO3),and chlorine containing oxidants such as potassium chlorate (KClO3). | price> |
R-C-6540 | Boron doping reduced graphene oxide powder | Boron doping reduced graphene oxide powder,The boron doping of graphene also promotes excellent electronic properties by the tunability of the energy bandgap and electrical conductivity.B-rGO was initially synthesized using boric acid via the microwave-assisted hydrothermal technique.The structural and morphological studies of the synthesized B-rGO were then performed using the FESEM,FTIR,XPS, Raman,and XRD techniques. | price> |
R-C-6541 | Vitamin C Reduced Graphene Oxide | Vitamin C reduced graphene oxide finds applications in various fields,including energy storage devices, sensors,composites, and biomedical applications.The use of vitamin C as a reducing agent offers a mild and environmentally friendly approach to reduce graphene oxide and produce reduced graphene oxide with improved properties. | price> |
R-C-6542 | Tea polyphenol reduced graphene oxide | Tea polyphenols can effectively reduce oxidized graphene,which not only utilizes the reducibility of phenolic hydroxyl groups in tea polyphenols,but also undergoes surface non covalent modification of the obtained graphene.The anti thrombotic properties of tea polyphenols and the large amount of negative charge they carry neutralize the charge of positively charged graphene oxide,thereby reducing it to graphene.This process greatly reduces the toxic effect of graphene oxide | price> |