Cyclobutanon

Cyclobutanone Struktur
1191-95-3
CAS-Nr.
1191-95-3
Bezeichnung:
Cyclobutanon
Englisch Name:
Cyclobutanone
Synonyma:
CBON;obutanone;CYCLOBUTANONE;Oxocyclobutane;1-Oxocyclobutane;Cyclobutanone 98%;Cyclobutanone, 97%;Cyclobutanone, 98+%;OS-7558Cyclobutanone;cyclobutanone(SALTDATA: FREE)
CBNumber:
CB7231982
Summenformel:
C4H6O
Molgewicht:
70.09
MOL-Datei:
1191-95-3.mol

Cyclobutanon Eigenschaften

Schmelzpunkt:
-50.9 °C
Siedepunkt:
99 °C (lit.)
Dichte
0.938 g/mL at 25 °C (lit.)
Brechungsindex
n20/D 1.421(lit.)
Flammpunkt:
50 °F
storage temp. 
2-8°C
Löslichkeit
soluble in Dichloromethane
Aggregatzustand
Liquid
Wichte
0.938
Farbe
Clear colorless to slightly yellow
Wasserlöslichkeit
INSOLUBLE
BRN 
1560289
Stabilität:
Volatile
InChI
1S/C4H6O/c5-4-2-1-3-4/h1-3H2
InChIKey
SHQSVMDWKBRBGB-UHFFFAOYSA-N
SMILES
O=C1CCC1
CAS Datenbank
1191-95-3(CAS DataBase Reference)
EPA chemische Informationen
Cyclobutanone (1191-95-3)
Sicherheit
  • Risiko- und Sicherheitserklärung
  • Gefahreninformationscode (GHS)
Kennzeichnung gefährlicher F,F+
R-Sätze: 10-11
S-Sätze: 23-24/25-9-33-29-16-7/9
RIDADR  UN 1224 3/PG 3
WGK Germany  3
TSCA  TSCA listed
HazardClass  3
PackingGroup  II
HS Code  29142900
Speicherklasse 3 - Flammable liquids
Hazard Classifications Flam. Liq. 2
Bildanzeige (GHS) Flame (GHS02)
Alarmwort Achtung
Gefahrenhinweise
Code Gefahrenhinweise Gefahrenklasse Abteilung Alarmwort Symbol P-Code
H225 Flüssigkeit und Dampf leicht entzündbar. Entzündbare Flüssigkeiten Kategorie 2 Achtung P210,P233, P240, P241, P242, P243,P280, P303+ P361+P353, P370+P378,P403+P235, P501
Sicherheit
P210 Von Hitze, heißen Oberflächen, Funken, offenen Flammen und anderen Zündquellenarten fernhalten. Nicht rauchen.
P233 Behälter dicht verschlossen halten.
P240 Behälter und zu befüllende Anlage erden.
P241 Explosionsgeschützte [elektrische/Lüftungs-/ Beleuchtungs-/...] Geräte verwenden.
P242 Nur funkenfreies Werkzeug verwenden.
P243 Maßnahmen gegen elektrostatische Entladungen treffen.

Cyclobutanon Chemische Eigenschaften,Einsatz,Produktion Methoden

R-Sätze Betriebsanweisung:

R10:Entzündlich.
R11:Leichtentzündlich.

S-Sätze Betriebsanweisung:

S23:Gas/Rauch/Dampf/Aerosol nicht einatmen(geeignete Bezeichnung(en) vom Hersteller anzugeben).
S24/25:Berührung mit den Augen und der Haut vermeiden.
S9:Behälter an einem gut gelüfteten Ort aufbewahren.
S33:Maßnahmen gegen elektrostatische Aufladungen treffen.
S29:Nicht in die Kanalisation gelangen lassen.
S16:Von Zündquellen fernhalten - Nicht rauchen.
S7/9:Behälter dicht geschlossen an einem gut gelüfteten Ort aufbewahren.

Chemische Eigenschaften

Clear colourless to slightly yellow liquid

Verwenden

Cyclobutanone is used in preparation of cyclobutane derivatives. It is used as a starting material for aminocyclobutanecarboxylic acid through sulfonyloxiranes. It is also used to prepare dihydro-furan-2-one in presence of polystyrene-bound phenylselenic acid as catalyst. Further, it is involved in the photochemical synthesis of nucleoside analogues such as bicyclic nucleosides and isonucleosides.

synthetische

The Russian chemist Nikolai Kischner first prepared cyclobutanone in 1905. He synthesized cyclobutanone in a low yield from cyclobutanecarboxylic acid in several reaction steps.
Another synthesis of cyclobutanone involves lithium-catalyzed rearrangement of oxaspiropentane, which is formed by epoxidation of the easily accessible methylenecyclopropane.

Synthese

In a 2-L, three-necked, round-bottomed flask equipped with a reflux condenser are placed 250 mL of water, 48 mL (ca. 0.55 mol) of concentrated hydrochloric acid, and 49.5 g (0.65 mol) of cyclopropylcarbinol; the reaction mixture is refluxed for ca. 100 min. The flask is then immersed in an ice bath equipped with a mechanical stirrer, a thermometer, and a dropping funnel (using a three-way adapter, parallel sidearm), and the reflux condenser is replaced by an ethanol–dry ice trap connected to a U-tube immersed in an ethanol–dry ice bath to ensure condensation of the very volatile cyclobutanone. The flask is charged with an additional 48 mL (ca. 0.55 mol) of concentrated hydrochloric acid in 200 mL of water and 440 g (3.5 mol) of oxalic acid dihydrate. The heterogeneous mixture is stirred for ca. 15 min to saturate the solution with oxalic acid. A solution of 162 g (1.62 mol) of chromium trioxide in 250 mL of water is added dropwise with stirring at such a rate that the temperature of the reaction mixture is kept between 10°C and 15°C (NaCl–ice bath, −5°C to −10°C) and the generation of carbon dioxide remains gentle. After the oxidation is completed, the ice bath is removed and stirring is continued for ca. 1 hr to bring the reaction mixture to room temperature.
The reaction mixture is poured into a 2-L separatory funnel and extracted with four 200-mL portions of methylene chloride. The extracts (the lower phase) are combined, dried over anhydrous magnesium sulfate containing a small amount of anhydrous potassium carbonate (to remove traces of hydrochloric acid), and filtered, and the filtrate is concentrated by distillation through a vacuum-insulated silvered column packed with glass helices and equipped with an adjustable stillhead, until the pot temperature rises to 80°C. The crude product is then transferred to a 100-mL flask and distilled through the same column (reflux ratio 10:1) to give 14–16 g (0.20–0.23 mol), 31–35% overall yield (based on pure cyclopropyl carbinol) of cyclobutanone.
epibromohydrin cyclobutanone synthesis

läuterung methode

Treat cyclobutanone with dilute aqueous KMnO4, dry it with molecular sieves and fractionally distil it. Purify it via the semicarbazone, then regenerate the ketone, dry it (CaSO4), and distil it in a stainless steel spinning-band (or Vigreux, p 11) column. Alternatively, purify it by preparative gas chromatography using a Carbowax 20-M column at 80o. (This treatment also removes acetone). The oxime has m 84-85o (from pet ether) and the semicarbazone has m 212-212-5o (220-221o from MeOH or H2O, Buchanan et al. J Am Chem Soc 64 2701 1942). [Salaun Org Synth 57 36 1977, Fitzer & Quabeck Synthesis 299 1987, Beilstein 7 IV 3.]

Cyclobutanon Upstream-Materialien And Downstream Produkte

Upstream-Materialien

Downstream Produkte


Cyclobutanon Anbieter Lieferant Produzent Hersteller Vertrieb Händler.

Global( 379)Lieferanten
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1191-95-3(Cyclobutanon)Verwandte Suche:


  • CBON
  • CYCLOBUTANONE
  • Cyclobutanone, 98+%
  • Cyclobutanone 98%
  • Cyclobutanone, 98%, stab. with ca 0.01% BHT
  • Oxocyclobutane
  • Cyclobutanone (stabilized with Na2CO3)
  • Cyclobutanone, 98%, stabilized
  • OS-7558Cyclobutanone
  • Cyclobutanone, Stab. With ca 0.01% Bht
  • cyclobutanone(SALTDATA: FREE)
  • 1-Oxocyclobutane
  • CYCLOBUTANONE FOR SYNTHESIS 1 ML
  • CYCLOBUTANONE FOR SYNTHESIS 5 ML
  • Cyclobutanone, stabilized with &ap:0.01% BHT
  • obutanone
  • Cyclobutanone - stabilise 0.01 % BHT
  • Cyclobutanone (stabilized with Na2CO3)>
  • Cyclobutanone(For export only)
  • Cyclobutanone, stab. with 0.1% BHT
  • Cyclobutanone (6CI, 8CI, 9CI, ACI)
  • Cyclobutanone, 97%
  • 1191-95-3
  • 74853-03-0
  • C4H60
  • Ketones
  • Organic Building Blocks
  • C3 to C6
  • Carbonyl Compounds
  • Building Blocks
  • Cyclobutanes & Cyclobutenes
  • Simple 4-Membered Ring Compounds
  • C3 to C6
  • Carbonyl Compounds
  • Ketones
  • ketone
  • Carbonyl Compounds
  • Pharmaceutical Intermediates
  • cyclic compounds
  • bc0001
  • 1191-95-3
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