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Manganese triacetate dihydrate

Manganese triacetate dihydrate Struktur
19513-05-4
CAS-Nr.
19513-05-4
Englisch Name:
Manganese triacetate dihydrate
Synonyma:
MANGANESE(III) ACETATE DIHYDRATE;MANGANESE (III) ACETATE;Manganic acetate dihydrate;anese(Ⅲ) acetate dihydrate;manganese acetate dihydrate;TriacetoxyManganese dihydrate;Manganese(Ⅲ) acetate dihydrate;MANGANESE TRIACETATE DIHYDRATE;MANGANESE(III) ACETATE HYDRATE;Manganese(III)acetatedehydrated
CBNumber:
CB9725704
Summenformel:
C2H6MnO3
Molgewicht:
133.01
MOL-Datei:
19513-05-4.mol

Manganese triacetate dihydrate Eigenschaften

Dichte
1.59
storage temp. 
Inert atmosphere,Room Temperature
L?slichkeit
DMF (Slightly, Heated, Sonicated), DMSO (Slightly, Heated), Methanol (Slightly),
Aggregatzustand
Solid
Farbe
Pink
Wasserl?slichkeit
decomposes
Sensitive 
Hygroscopic
BRN 
3732626
Expositionsgrenzwerte
OSHA: Ceiling 5 mg/m3
NIOSH: IDLH 500 mg/m3; TWA 1 mg/m3; STEL 3 mg/m3
CAS Datenbank
19513-05-4(CAS DataBase Reference)
Sicherheit
  • Risiko- und Sicherheitserkl?rung
  • Gefahreninformationscode (GHS)
Kennzeichnung gef?hrlicher Xi,Xn
R-S?tze: 36/37/38-63-62
S-S?tze: 26-36-37/39
RIDADR  1479
WGK Germany  3
TSCA  Yes
HazardClass  5.1
PackingGroup  III
HS Code  29152990
Bildanzeige (GHS) GHS hazard pictograms
Alarmwort Warnung
Gefahrenhinweise
Code Gefahrenhinweise Gefahrenklasse Abteilung Alarmwort Symbol P-Code
H315 Verursacht Hautreizungen. Hautreizung Kategorie 2 Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" /> P264, P280, P302+P352, P321,P332+P313, P362
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
H335 Kann die Atemwege reizen. Spezifische Zielorgan-Toxizit?t (einmalige Exposition) Kategorie 3 (Atemwegsreizung) Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" />
Sicherheit
P261 Einatmen von Staub vermeiden.
P304+P340 BEI EINATMEN: Die Person an die frische Luft bringen und für ungehinderte Atmung sorgen.
P305+P351+P338 BEI KONTAKT MIT DEN AUGEN: Einige Minuten lang behutsam mit Wasser spülen. Eventuell vorhandene Kontaktlinsen nach M?glichkeit entfernen. Weiter spülen.
P405 Unter Verschluss aufbewahren.

Manganese triacetate dihydrate Chemische Eigenschaften,Einsatz,Produktion Methoden

R-S?tze Betriebsanweisung:

R36/37/38:Reizt die Augen, die Atmungsorgane und die Haut.
R63:Kann das Kind im Mutterleib m?glicherweise sch?digen.
R62:Kann m?glicherweise die Fortpflanzungsf?higkeit beeintr?chtigen.

S-S?tze Betriebsanweisung:

S26:Bei Berührung mit den Augen sofort gründlich mit Wasser abspülen und Arzt konsultieren.
S36:DE: Bei der Arbeit geeignete Schutzkleidung tragen.
S37/39:Bei der Arbeit geeignete Schutzhandschuhe und Schutzbrille/Gesichtsschutz tragen.

Beschreibung

Manganese (III) acetate is an inorganic compound that is used as an oxidizing agent in organic synthesis and materials science. Like the analogous acetates of iron and chromium, it is an oxygen-centered coordination complex containing three manganese atoms bridged by acetate units. The anhydrous form of this compound crystallizes as a linear coordination polymer, with an additional acetic acid molecule bridging between manganese atoms on consecutive three-manganese clusters.The chemical is therefore not a simple metal acetate ionic compound nor does the actual structure of it reflect the simple "Mn(OAc)3" chemical formula that is commonly given. It is usually used as the dihydrate, though the anhydrous form is also used in some situations. The dihydrate is prepared by reacting potassium permanganate and manganese (II) acetate in acetic acid; addition of acetic anhydride to the reaction produces the anhydrous form.
Mangese triacetate has been used as a single electron oxidant. It can oxidize alkenes via addition of acetic acid to form lactones.

Chemische Eigenschaften

The cinnamon-brown crystals of a silky luster are immediately decomposed by cold water (hydration).

Verwenden

Triacetoxymanganese Dihydrate functions as a catalyst for direct acetylation of alcohols with acetic acid.

Synthese

In the method of Christensen, the salt is obtained in the following manner: 19.6 g. (80 mmoles) of Mn(CH3COO)3 -2H3O powder is added to 200 ml. of glacial acetic acid at the boiling temperature of the latter, and is stirred until completely dissolved. Then, KMnO4 powder (3.1 g. = 20 mmoles) is gradually added and the mixture heated for a short time with constant agitation. After cooling, 3 ml. of water is added to the darkbrown solution; the mixture is allowed to stand overnight. If the quantity of precipitate is too small, another 3 ml. of water is added and the solution stirred. The formation of crystallization nuclei is promoted by frequent rubbing of the container walls with a glass rod. As a rule, copious crystallization occurs within about one hour. If necessary, the solution is allowed to stand for a few more days (frequent agitation) until the mother liquor is almost colorless. The salt is then filtered off with suction, washed with some glacial acetic acid and recrystallized. The last procedure consists in dissolving 30 g. of salt in 200 ml. of glacial acetic acid (heating), filtering off and working up further in the manner described above. Finally, the salt is dried over CaO.
4 Mn(CH3COO)2 ? 4 H2O + KMnO4 + 8 CH3COOH = 5 Mn(CH3COO)3 ? 2 H2O + CH3COOK + 10 H2O

Manganese triacetate dihydrate Upstream-Materialien And Downstream Produkte

Upstream-Materialien

Downstream Produkte


Manganese triacetate dihydrate Anbieter Lieferant Produzent Hersteller Vertrieb H?ndler.

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19513-05-4()Verwandte Suche:


  • TriacetoxyManganese dihydrate
  • Manganese(III) acetate dihydrate, 98% 100GR
  • Manganese(III) acetate dihydrate, 98% 25GR
  • Manganese(Ⅲ) acetate dihydrate
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