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2,4-Difluorobenzaldehyde

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2,4-Difluorobenzaldehyde manufacturers

2,4-Difluorobenzaldehyde Basic information
Product Name:2,4-Difluorobenzaldehyde
Synonyms:2,4-Difluorobenzaldehyde, 98% 5GR;Of 2,4-difluorobenzaldehyde;2,4-DIFLUOROBENZALDEHYDE;Benzaldehyde, 2,4-difluoro-;2-fluro-5- nitro-Benzoic acid;2,4-Difluorobenzaldehyde 98%;2,4-Difluorobenzaldehyde98%;2,4-Difluorobenzalde
CAS:1550-35-2
MF:C7H4F2O
MW:142.1
EINECS:216-287-2
Product Categories:Benzaldehyde;Fluorobenzene;Fluorobenzaldehyde Series;Aldehydes;C7;Carbonyl Compounds;Benzaldehyde series;Fluorine series;Fluorin-contained benzaldehyde series;Aromatic Aldehydes & Derivatives (substituted);john's;intermediate
Mol File:1550-35-2.mol
2,4-Difluorobenzaldehyde Structure
2,4-Difluorobenzaldehyde Chemical Properties
Melting point 2-3 °C (lit.)
Boiling point 65-66 °C/17 mmHg (lit.)
density 1.299 g/mL at 25 °C (lit.)
refractive index n20/D 1.498(lit.)
Fp 131 °F
storage temp. Inert atmosphere,2-8°C
form Liquid
Specific Gravity1.299
color Clear colorless
Sensitive Air Sensitive
BRN 2243422
InChIInChI=1S/C7H4F2O/c8-6-2-1-5(4-10)7(9)3-6/h1-4H
InChIKeyWCGPCBACLBHDCI-UHFFFAOYSA-N
SMILESC(=O)C1=CC=C(F)C=C1F
CAS DataBase Reference1550-35-2(CAS DataBase Reference)
NIST Chemistry Reference2,4-Difluorobenzaldehyde(1550-35-2)
Safety Information
Hazard Codes Xi
Risk Statements 10-36/37/38
Safety Statements 26-36-37/39-16-36/37
RIDADR UN 1989 3/PG 3
WGK Germany 3
10-23
Hazard Note Irritant
HazardClass 3
PackingGroup III
HS Code 29130000
Storage Class3 - Flammable liquids
Hazard ClassificationsEye Irrit. 2
Flam. Liq. 3
Skin Irrit. 2
STOT SE 3
MSDS Information
ProviderLanguage
2,4-Difluorobenzaldehyde English
SigmaAldrich English
ACROS English
ALFA English
2,4-Difluorobenzaldehyde Usage And Synthesis
Chemical Propertiesclear colorless liquid
Uses2,4-Difluorobenzaldehyde was used in the synthesis of 3-benzylidene 20,29-dihydrobetulinic acid derivatives.
General DescriptionThe emission and absorption spectra of 2,4-difluorobenzaldehyde were studied.
Synthesis
2,4-Difluorotoluene

452-76-6

2,4-Difluorobenzaldehyde

1550-35-2

(1) Device: Refer to Figure 2 to configure the tubular reactor system. The reactor adopts (3a + 3b) type DC channel and round cake pulse diameter adjustable rectangular flat tube combination design, the specific tube diameter and volume need to be calculated according to the reactant flow and the required residence time to determine, the heat transfer medium selection of heat transfer oil. (2) Preparation of catalyst solution: dissolve 6.06 g of cobalt acetate and 6.06 g of sodium molybdate in 200 mL of 2,4-difluorotoluene and 200 mL of acetic acid, respectively, and mix them well to ensure that n (cobalt acetate): n (2,4-difluorotoluene) = 0.015: 1. Preparation of oxidizer solution: dissolve 6.06 g of sodium bromide in 30% H2O2 to form a solution of H2O2-acetic acid. . Subsequently, 2,4-difluorotoluene-acetic acid solution and H2O2-acetic acid solution were injected into a tubular reactor via a constant flow pump at a flow rate of 5.33 mL/min and 10.67 mL/min, respectively, controlling n(H2O2): n(2,4-difluorotoluene) = 2: 1. The reaction was carried out in a microchannel reactor (shown in Fig. 2) at a temperature maintained at 105 °C and a residence time of 400 s. After completion of the reaction, the outlet material was cooled to 0 °C and quenched with dichloromethane. The conversion of 2,4-difluorotoluene was 49.5% and the yield of 2,4-difluorobenzaldehyde was 31.1% by GC analysis.

References[1] Patent: CN106588600, 2017, A. Location in patent: Paragraph 0040-0066
[2] Kogyo Kagaku Zasshi, 1956, vol. 59, p. 1160
[3] Chem.Abstr., 1958, p. 13265
[4] Monatshefte fuer Chemie, 1959, vol. 90, p. 683,687
[5] Patent: US5998477, 1999, A
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