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Merck

735132

Allylamine hydrochloride

98%

Synonyme(s) :

3-Aminopropene hydrochloride, Mono-allylamine hydrochloride

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A propos de cet article

Formule empirique (notation de Hill) :
C3H7N · HCl
Numéro CAS:
Poids moléculaire :
93.56
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
12162002
MDL number:
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Nom du produit

Allylamine hydrochloride, 98%

InChI

1S/C3H7N.ClH/c1-2-3-4;/h2H,1,3-4H2;1H

SMILES string

Cl.NCC=C

InChI key

MLGWTHRHHANFCC-UHFFFAOYSA-N

assay

98%

form

solid

mp

178-183 °C (dec.)

Quality Level

Application

Allylamine hydrochloride can be used :
  • As a monomer to synthesize poly(allylamine hydrochloride) (PAH) by bulk polymerization. PAH is widely used in the field of drug delivery, gene delivery, surface coatings and nanoparticle stabilization owing to its cationic nature, biocompatibility, water solubility and functionalization.
  • As a precursor to synthesize amphiphilic allylamine copolymers to fabricate biodegradable hydrogels. The hydrophilic nature of allylamine hydrochloride contributes to the hydrogel′s ability to retain water which is crucial for drug delivery, wound healing, and tissue engineering.

General description

Allylamine hydrochloride is a hydrophilic allyl monomer with double bond that allows for polymerization reactions, leading to the formation of poly(allylamine) and other copolymers. These polymers exhibit excellent film-forming properties, mechanical strength, and flexibility. Its amino groups can facilitate interactions with various biological molecules, including proteins and nucleic acids, enhancing biocompatibility.

pictograms

Skull and crossbones

signalword

Danger

hcodes

Hazard Classifications

Acute Tox. 3 Oral

Classe de stockage

6.1C - Combustible acute toxic Cat.3 / toxic compounds or compounds which causing chronic effects

wgk

WGK 2


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Aqiang Wang et al.
Small (Weinheim an der Bergstrasse, Germany), 16(9), e1903925-e1903925 (2019-10-11)
Highly sensitive responsiveness is vital for stimuli-responsive membranes. However, it is a great challenge to fabricate stimuli-responsive membranes with ultrahigh gating ratio (the ratio of the salt solution permeating flux to the pure water permeating flux) and high response speed
Jianlong Wang et al.
Langmuir : the ACS journal of surfaces and colloids, 35(10), 3615-3623 (2019-02-13)
Interfacial gas enrichment (IGE) of dissolved gases in water is shown to govern the strong attraction between solid hydrophobic surfaces of an atomic force microscopy (AFM) colloidal probe and solid substrate. However, the role of IGE in controlling the attraction
Lu Han et al.
Biomaterials, 44, 111-121 (2015-01-27)
Multifunctional nanocomplexes (NCs) consisting of urocanic acid-modified galactosylated trimethyl chitosan (UA-GT) conjugates as polymeric vectors, poly(allylamine hydrochloride)-citraconic anhydride (PAH-Cit) as charge-reversible crosslinkers, and vascular endothelial growth factor (VEGF) siRNA as therapeutic genes, were rationally designed to simultaneously overcome the extracellular
Wei Li et al.
Biomaterials, 65, 93-102 (2015-07-06)
Selective isolation and purification of circulating tumor cells (CTCs) from whole blood is an important capability for both clinical medicine and biological research. Current techniques to perform this task place the isolated cells under excessive stresses that reduce cell viability
Seyeong Lee et al.
Nanoscale, 7(35), 14627-14635 (2015-07-23)
Recent advances in nanostructure-based biotechnology have resulted in a growing demand for vertical nanostructure substrates with elaborate control over the nanoscale geometry and a high-throughput preparation. In this work, we report the fabrication of non-periodic vertical silicon nanocolumn substrates via

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