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Citric acid modified carbon nanotubes

NegotiableUpdate on 05/06
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Overview

Citric acid modified carbon nanotubes introduction: Citric acid, as an organic acid, has carboxyl and hydroxyl functional groups, which can chemically interact with the surface of carbon nanotubes to achieve modification of carbon nanotubes.

Product Details

The product categories operated by Xi'an Haoran Biotechnology Co., Ltd. include synthetic phospholipids, high molecular weight polyethylene glycol derivatives, block copolymers, magnetic nanoparticles, nano gold and nano gold rods, near-infrared fluorescent dyes, reactive fluorescent dyes, fluorescently labeled dextran BSA and streptavidin, protein crosslinkers, small molecule PEG derivatives, click chemistry products, dendritic polymers, cyclodextrin derivatives, macrocyclic ligands, fluorescent quantum dots, hyaluronic acid derivatives, graphene or graphene oxide, carbon nanotubes, fullerenes, silica and mesoporous binary products, fluorescent proteins and fluorescent probes, etc.

【 Basic Information 】

Chinese name:Citric acid modified carbon nanotubes

Purity: 95%+

Storage conditions: Keep away from light, inert gas, room temperature storage

Specification: mg

Packaging: Bottled/bagged

Usage: For scientific research only, not for human use

Citric acid, as an organic acid with carboxyl and hydroxyl functional groups, can chemically interact with the surface of carbon nanotubes, thereby achieving modification of carbon nanotubes.

Citric acid modified carbon nanotubesThe process usually includes two steps: acid treatment and heat treatment. During the acid treatment process, citric acid molecules react with functional groups on the surface of carbon nanotubes to form chemical bonds. During the heat treatment process, citric acid molecules further react with carbon atoms on the surface of carbon nanotubes, forming a more stable structure.

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Growth of carbon nanotubes on the surface of graphene oxide

Growth of carbon nanotube arrays on stainless steel surface

Nitrogen doped graphene in-situ growth of carbon nanotube composite transition metal catalyst

In situ growth of carbon nanotubes on the surface of quartz fibers

In situ growth of carbon nanotubes modified carbon fibers using solid carbon sources

In situ growth of carbon nanotubes on the surface of carbon fibers

In situ growth of carbon nanotubes on the surface of carbon fibers

In situ growth of carbon nanotubes (CNTs) on carbon fiber cloth

Surface growth of oriented carbon nanotube arrays on silica ceramic based SiO (2f)/SiO2 composite materials

In situ growth of carbon nanotube composite heteroatom doped porous MXene material

Three dimensional anisotropic carbon nanotube array

Nitrogen doped carbon nanotubes (CNx)

The above information is from Xi'an Haoran Biological Editor JMY 2024.3.21

The products mentioned above are only for scientific research and cannot be used for human or other purposes.