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POLYETHYLENEIMINE

POLYETHYLENEIMINE Struktur
9002-98-6
CAS-Nr.
9002-98-6
Englisch Name:
POLYETHYLENEIMINE
Synonyma:
PEI-10;polyethyleneimine, branched, m.w. 1800;Aziridine,homopolymer;polyethylenimine(10,000);POLYETHYLENEIMINE, BRANCHED;PEI-35;PEI-2500;PEI-1500;polyethylenimine(20,000);Ethyleneimine,homopolymer
CBNumber:
CB9162514
Summenformel:
C2H5N
Molgewicht:
43.07
MOL-Datei:
9002-98-6.mol

POLYETHYLENEIMINE Eigenschaften

Schmelzpunkt:
59-60°C
Siedepunkt:
250 °C(lit.)
Dichte
1.030 g/mL at 25 °C
Dampfdruck
9 mmHg ( 20 °C)
Brechungsindex
n20/D 1.5290
Flammpunkt:
>230 °F
storage temp. 
2-8°C
L?slichkeit
DMSO (Sparingly)
Aggregatzustand
Liquid
Farbe
Pale yellow
Wichte
1.045 (20/4℃)
PH
pH(50g/l, 25℃) : 10~12
Wasserl?slichkeit
Soluble in water.
Sensitive 
Hygroscopic
InChI
InChI=1S/C2H5N/c1-2-3-1/h3H,1-2H2
InChIKey
NOWKCMXCCJGMRR-UHFFFAOYSA-N
SMILES
C1NC1
LogP
-0.969 (est)
EPA chemische Informationen
Aziridine, homopolymer (9002-98-6)
Sicherheit
  • Risiko- und Sicherheitserkl?rung
  • Gefahreninformationscode (GHS)
Kennzeichnung gef?hrlicher Xn,N,Xi
R-S?tze: 22-43-51/53-36/38
S-S?tze: 22-24/25-61-36/37-37-26
RIDADR  UN 3082 9 / PGIII
WGK Germany  2
RTECS-Nr. TQ7917000
10-34
TSCA  Yes
HS Code  39019090
Bildanzeige (GHS) GHS hazard pictogramsGHS hazard pictograms
Alarmwort Warnung
Gefahrenhinweise
Code Gefahrenhinweise Gefahrenklasse Abteilung Alarmwort Symbol P-Code
H302 Gesundheitssch?dlich bei Verschlucken. Akute Toxizit?t oral Kategorie 4 Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" /> P264, P270, P301+P312, P330, P501
H317 Kann allergische Hautreaktionen verursachen. Sensibilisierung der Haut Kategorie 1A Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" /> P261, P272, P280, P302+P352,P333+P313, P321, P363, P501
H319 Verursacht schwere Augenreizung. Schwere Augenreizung Kategorie 2 Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" /> P264, P280, P305+P351+P338,P337+P313P
H411 Giftig für Wasserorganismen, mit langfristiger Wirkung. Langfristig (chronisch) gew?ssergef?hrdend Kategorie 2
Sicherheit
P273 Freisetzung in die Umwelt vermeiden.
P280 Schutzhandschuhe/Schutzkleidung/Augenschutz tragen.
P302+P352 BEI BERüHRUNG MIT DER HAUT: Mit viel Wasser/... (Hersteller kann, falls zweckm??ig, ein Reinigungsmittel angeben oder, wenn Wasser eindeutig ungeeignet ist, ein alternatives Mittel empfehlen) waschen.
P305+P351+P338 BEI KONTAKT MIT DEN AUGEN: Einige Minuten lang behutsam mit Wasser spülen. Eventuell vorhandene Kontaktlinsen nach M?glichkeit entfernen. Weiter spülen.

POLYETHYLENEIMINE Chemische Eigenschaften,Einsatz,Produktion Methoden

Chemische Eigenschaften

Clear viscous liquid

Verwenden

Polyethyleneimine is used as a polyelectrolyte multilayer on charged surfaces to provide a biocompatible coating on surfaces.1Detergents, adhesives, water treatment, printing inks, dyes, cosmetics, and paper industry, adhesion promoter, lamination primer, fixative agent, flocculant, cationic dispersant, stability enhancer, surface activator, chelating agent, scavenger for aldehydes and oxides.

Application

Polyethyleneimine(PEI) can be used as a non-viral synthetic polymer carrier for in vivo delivery of therapeutic nucleic acids. The interaction between the negatively charged nucleic acid and the positively charged polymer backbone leads to the formation of nanoscale complexes. This neutralising complex protects the enclosed nucleic acid from enzymes and maintains its stability until cellular uptake occurs. For example, human serum albumin-coupled PEI shows good pDNA transfection and low toxicity.
PEI can be used to functionalize single-walled nanotubes (SWNTs) to improve their solubility and biocompatibility while maintaining the structural integrity of the original SWNT. Covalently functionalized SWNTs can be used for CO2 uptake and gene delivery.
Branched PEI can also be used to modify the surface properties of adsorbents. PEI-modified aqueous zirconia/PAN nanofibres have a high fluoride adsorption capacity and a wide working pH range, and can therefore be used for groundwater defluoridation.

Vorbereitung Methode

Polyethylenimine is produced by the homopolymerization of ethylenimine. The reaction is catalyzed by acids, Lewisacids, or haloalkanes. The polymerization is usually carried out at 90 – 110 ℃ in water or in a variety of organic solvents. The average molecular mass of the polyethylenimine prepared as described above is 10 000 – 20 000. Higher molecular mass polymers are prepared by addition of a difunctional alkylating agent, such as chloromethyloxirane or 1,2-dichloroethane. Polyethylenimines with a higher average molecular mass can also be provided by ultrafiltration of polymers with a broad mass distribution. Likewise, polymers of lower molecular mass can be obtained by inclusion of a low molecular mass amine, such as 1,2- ethanediamine, during polymerization. By using these techniques a range of molecular masses from 300 to 10 6 can be obtained. Cross-linking during the polymerization of ethylenimine in organic solvents leads to solid polyethylenimines. Furthermore the polymerization process can be conducted on the surface of organic or inorganic materials, thus fixing the polyethylenimines to a support.

Allgemeine Beschreibung

All polyethylene imine polymers are hydrophilic and may contain approx. 30% hydrated water.

Handelsname

Lupasol, Polymin, Catiofast, Lugalvan (BASF), Epomin (Nippon Shokubai).

Biologische Aktivit?t

Polyethylenimine is nondegradable and the molecular weight of PEI affects the cytotoxicity and gene transfer activity. Polyethylenimine acts as a low toxicity and efficient gene vector. 

Structure and conformation

Polyethyleneimine(PEI) exists as both a branched and linear structure. Branched PEI (bPEI) is synthesized via acid-catalyzed polymerization of aziridine, whereas the linear structure (lPEI) is synthesized via ring opening polymerization of 2-ethyl-2-oxazoline followed by hydrolysis.

POLYETHYLENEIMINE Upstream-Materialien And Downstream Produkte

Upstream-Materialien

Downstream Produkte


POLYETHYLENEIMINE Anbieter Lieferant Produzent Hersteller Vertrieb H?ndler.

Global( 365)Lieferanten
Firmenname Telefon E-Mail Land Produktkatalog Edge Rate
Wuhan Bright Chemical Co., Ltd
+86-02785804899 +86-15071395570
alice@brightchemical.com.cn China 93 58
Hebei Kingfiner Technology Development Co.Ltd
+86-15532196582 +86-15373005021
lisa@kingfinertech.com China 2990 58
Shaanxi Dideu Medichem Co. Ltd
+86-29-81148696 +86-15536356810
1022@dideu.com China 3882 58
Hebei Mojin Biotechnology Co., Ltd
+86 13288715578 +8613288715578
sales@hbmojin.com China 12837 58
Shanghai UCHEM Inc.
+862156762820 +86-13564624040
sales@myuchem.com China 7433 58
Hebei Chuanghai Biotechnology Co,.LTD
+86-13131129325
sales1@chuanghaibio.com China 5893 58
Hebei Weibang Biotechnology Co., Ltd
+8617732866630
bess@weibangbio.com China 18166 58
Hebei Zhuanglai Chemical Trading Co.,Ltd
+8613343047651
admin@zlchemi.com China 3002 58
Shandong Deshang Chemical Co., Ltd.
+86-0531-8875-2665 +8613153039501
info@deshangchem.com China 660 58
Capot Chemical Co.,Ltd.
+86-(0)57185586718 +86-13336195806
sales@capot.com China 29791 60

9002-98-6()Verwandte Suche:


  • PEI-1750
  • ETHYLENE IMINE POLYMER SOLUTION, 50% IN WATER
  • POLY(ETHYLENEIMINE) SOLUTION 10%
  • POLYETHYLENIMINE AV. MOL. WT. APPROX.*50 ,000 50% (W
  • PEI-14M
  • Ethyleneimine polymer solution, PEI
  • polyethyleneimine, branched, m.w. 10,000
  • polyethyleneimine, branched, m.w. 600
  • polyethyleneimine, branched, m.w. 70,000
  • EPOMIN P-1000
  • EPOMIN P-1050
  • EPOMIN SP-003
  • EPOMIN SP-200
  • POLYETHYLENEIMINE,50%(V/V)AQUEOUSSOLUTION
  • MODIFIEDPOLYETHYLENEIMINE
  • Polyethyleneimine,Mw70,000Solution
  • Polyethyleneimine,Mw50,000Solution
  • Polyethyleneimine,branched,M.W.1800,99%
  • Polyethyleneimine,branched,M.W.70,000,30%w/vaq.soln.
  • Polyethyleneimine, approx. M.W. 60,000, 50 wt% aq. solution, branched
  • Polyethyleneimine, linear, M.W. 25,000
  • Polyethyleneimine (30% in Water)
  • Ethylene iMine polyM
  • PolyethyleneiMine on silica beads, anion exchange resin, 20-40 Mesh
  • PolyethyleneiMine on silica beads, anion exchange resin, 40-200 Mesh
  • PolyethyleneiMine on silica beads, anion exchange resin, benzylated, 20-40 Mesh
  • PolyethyleniMine, Branched, Av. Mn (by GPC) Approx. 10,000
  • Poly(ethyleneiMine) solution ~50% in H2O
  • Poly(ethyleneiMine) solution average Mn ~1,200, average Mw ~1300 by LS, 50 wt. % in H2O
  • Poly(ethyleneiMine) solution average Mn ~1,800 by GPC, average Mw ~2,000 by LS, 50 wt. % in H2O
  • Poly(ethyleneiMine) solution average Mn ~60,000 by GPC, average Mw ~750,000 by LS, 50 wt. % in H2O
  • PolyethyleniMine, branched average Mw ~25,000 by LS, average Mn ~10,000 by GPC, branched
  • Polyethylenimine, linear
  • Polyethylenimine hydrochloride linear, average Mn 20,000, PDI <=1.2
  • Polyethylenimine hydrochloride linear, average Mn 4,000, PDI <=1.1
  • Polyethylenimine, linear average Mn 10,000, PDI <=1.2
  • Polyethylenimine, linear average Mn 5,000, PDI <1.2
  • PolyethyleneiMine on silica beads, anion exchange resin, benzylated, 40-200 Mesh
  • PolyethyleniMine, linear average Mn 2,500, PDI <1.2
  • polyethylenimine(35,000)
  • polyethylenimine(40,000)
  • Ethylene imine polymer solution
  • Ethyleneimine polymer solution
  • Ethyleneimine resin (50%)
  • polyethylenimine 50% (W/V) aqueous*solution
  • PEI-7
  • PEI-15
  • PEI-30
  • PEI-45
  • PEI-250
  • PEI-275
  • PEI-700
  • PEI-1000
  • PEI-1400
  • Polyethyleneimine, branched, M.W. 50,000 - 100,000, 30% w/w aq. soln.
  • Polyethyleneimine (ca. 30% in Water) [for Biochemical Research]
  • Polyethyleneimine (ca. 30% in Water)
  • Poly(ethyleneimine) solution,Ethyleneimine polymer solution, PEI
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