Structure

Phloretin

CAS
60-82-2
Catalog Number
ACM60822
Category
Material of Cosmetics
Molecular Weight
274.27
Molecular Formula
C15H14O5

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Specification

Synonyms
Dihydronaringenin
IUPAC Name
3-(4-Hydroxyphenyl)-1-(2,4,6-trihydroxyphenyl)propan-1-one
Canonical SMILES
C1=CC(=CC=C1CCC(=O)C2=C(C=C(C=C2O)O)O)O
InChI
InChI=1S/C15H14O5/c16-10-4-1-9(2-5-10)3-6-12(18)15-13(19)7-11(17)8-14(15)20/h1-2,4-5,7-8,16-17,19-20H,3,6H2
InChI Key
VGEREEWJJVICBM-UHFFFAOYSA-N
Boiling Point
337.26 °C
Melting Point
260 °C
Flash Point
291.1 °C
Density
1.1827 g/cm³
Solubility
Soluble in water
Appearance
Powder
Storage
2-8 °C
Active Content
95%
Assay
0.99
Complexity
312
Exact Mass
274.08412354
Monoisotopic Mass
274.08412354
Packaging
1 kg
Physical State
Solid
pKa
7.16±0.40(Predicted)
Plant Origin
Branches and leaves from apple
Refractive Index
1.573-1.575
Storage Conditions
2-8°C
Topological Polar Surface Area
98 Ų
What is the CAS number for Phloretin?

The CAS number for Phloretin is 60-82-2.

What is the molecular weight of Phloretin?

The molecular weight of Phloretin is 274.26.

What is the molecular formula of Phloretin?

The molecular formula of Phloretin is C15H14O5.

What is the boiling point of Phloretin?

The boiling point of Phloretin is predicted to be 534.4 °C at 760 mmHg.

What is the melting point of Phloretin?

The melting point of Phloretin is 260-262°C.

What is the purity of Phloretin?

The purity of Phloretin is 98%.

What is the density of Phloretin?

The density of Phloretin is 1.429 g/cm³.

What is the appearance of Phloretin?

The appearance of Phloretin is a crystalline solid.

What are the typical applications of Phloretin?

Phloretin is typically used as an antioxidant.

What is the percentage of actives in Phloretin?

Phloretin contains 95% actives.

Upstream Synthesis Route 1

  • 480-41-1
  • 60-82-2

Reference: [1] Indian Journal of Chemistry, Section B: Organic Chemistry Including Medicinal Chemistry, 1988, vol. 27, # 1-12, p. 899 - 901
[2] Synthetic Communications, 1989, vol. 19, # 1, 2, p. 119 - 124
[3] Angewandte Chemie - International Edition, 2014, vol. 53, # 5, p. 1439 - 1442[4] Angew. Chem., 2014, vol. 126, # 05, p. 1463 - 1466,4

Upstream Synthesis Route 2

  • 108-73-6
  • 17362-17-3
  • 60-82-2

Reference: [1]Monatshefte fur Chemie,1929,vol. 53/54,p. 560

Downstream Synthesis Route 1

  • 133-89-1
  • 60-82-2
  • 4192-90-9
  • 60-81-1

Reference: [1] Organic Letters, 2014, vol. 16, # 18, p. 4874 - 4877

Downstream Synthesis Route 2

  • 133-89-1
  • 60-82-2
  • 58-98-0
  • 60-81-1

Reference: [1] Green Chemistry, 2014, vol. 16, # 9, p. 4417 - 4425

* For details of the synthesis route, please refer to the original source to ensure accuracy.

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