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Merck

W266825

Sigma-Aldrich

L-Menthylacetat

natural, ≥98%, FCC, FG

Synonym(e):

(1R)-(−)-Menthyl-acetat

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About This Item

Empirische Formel (Hill-System):
C12H22O2
CAS-Nummer:
Molekulargewicht:
198.30
FEMA-Nummer:
2668
Beilstein:
2208505
EG-Nummer:
MDL-Nummer:
UNSPSC-Code:
12164502
PubChem Substanz-ID:
Flavis-Nummer:
9.016
NACRES:
NA.21

Qualität

FG
Fragrance grade
Halal
Kosher
natural

Qualitätsniveau

Agentur

follows IFRA guidelines

Einhaltung gesetzlicher Vorschriften

EU Regulation 1223/2009
EU Regulation 1334/2008 & 178/2002
FCC
FDA 21 CFR 117
FDA 21 CFR 182.20

Assay

≥98%

Optische Aktivität

[α]20/D −73°, neat

Brechungsindex

n20/D 1.447 (lit.)

bp

229-230 °C (lit.)

Dichte

0.92 g/mL at 25 °C (lit.)

Anwendung(en)

flavors and fragrances

Dokumentation

see Safety & Documentation for available documents

Nahrungsmittelallergen

no known allergens

Allergener Duftstoff

no known allergens

Organoleptisch

herbaceous; minty

SMILES String

CC(C)[C@@H]1CC[C@@H](C)C[C@H]1OC(C)=O

InChI

1S/C12H22O2/c1-8(2)11-6-5-9(3)7-12(11)14-10(4)13/h8-9,11-12H,5-7H2,1-4H3/t9-,11+,12-/m1/s1

InChIKey

XHXUANMFYXWVNG-ADEWGFFLSA-N

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Anwendung


  • Inclusion complexes of β-cyclodextrin with isomeric ester aroma compounds: Preparation, characterization, mechanism study, and controlled release.: This study examines the formation of inclusion complexes between β-cyclodextrin and isomeric esters like l-Menthyl acetate, emphasizing their controlled release properties which could have significant implications in food flavoring and pharmaceuticals (Xiao et al., 2024).

  • Enhancing the Enantioselectivity and Catalytic Efficiency of Esterase from Bacillus subtilis for Kinetic Resolution of l-Menthol through Semirational Design.: Research focuses on optimizing esterase enzymes for the kinetic resolution of l-Menthol using l-Menthyl acetate, highlighting advances in biocatalysis that enhance selectivity and efficiency in synthetic chemistry (Zhou et al., 2024).

  • Engineering a Bacillus subtilis esterase for selective hydrolysis of d, l-menthyl acetate in an organic solvent-free system.: This publication details the engineering of an esterase for efficient hydrolysis of l-Menthyl acetate, demonstrating the potential for more sustainable and efficient biochemical processes in industry (Qiao et al., 2023).

  • Conversion and Hydrothermal Decomposition of Major Components of Mint Essential Oil by Small-Scale Subcritical Water Treatment.: Investigates the decomposition of l-Menthyl acetate within mint essential oil under subcritical water conditions, providing insights into the stability and transformation of flavor compounds under industrial processing conditions (Chiou et al., 2020).

  • Enhancement in skin permeation of 5-aminolevulinic acid using l-menthol and its derivatives.: This study explores the use of l-Menthyl acetate to enhance the skin permeation of 5-aminolevulinic acid, suggesting its potential application in transdermal drug delivery systems (Tokuoka et al., 2008).


Biochem./physiol. Wirkung

Taste at 25 ppm

Sonstige Hinweise

Natural occurrence: Mentha arvensis, peppermint, scotch spearmint, raspberry, mango, buchu oil, lemon balm, ginger and orange juice eucalyptus oil.

Piktogramme

Environment

H-Sätze

Gefahreneinstufungen

Aquatic Chronic 2

Lagerklassenschlüssel

10 - Combustible liquids

WGK

WGK 2

Flammpunkt (°F)

170.6 °F - closed cup

Flammpunkt (°C)

77 °C - closed cup

Persönliche Schutzausrüstung

Eyeshields, Gloves, multi-purpose combination respirator cartridge (US)


Analysenzertifikate (COA)

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Kunden haben sich ebenfalls angesehen

Tai-Ying Chiou et al.
Molecules (Basel, Switzerland), 25(8) (2020-04-26)
Thermal stabilities of four major components (l-menthol, l-menthone, piperitone, and l-menthyl acetate) of Japanese mint essential oil were evaluated via subcritical water treatment. To improve experimental throughput for measuring compound stabilities, a small-scale subcritical water treatment method using ampoule bottles
Alexandros P Katsoulidis et al.
Nature, 565(7738), 213-217 (2019-01-11)
Metal-organic frameworks (MOFs) are crystalline synthetic porous materials formed by binding organic linkers to metal nodes: they can be either rigid1,2 or flexible3. Zeolites and rigid MOFs have widespread applications in sorption, separation and catalysis that arise from their ability
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Journal of chromatography. A, 1547, 86-98 (2018-03-15)
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Mosciano, G.
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