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2216-52-6

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2216-52-6 Usage

Description

(+)-NEOMENTHOL, also known as (1S,2S,5R)-(+)-Neomenthol, is a monoterpenoid compound found in the peppermint herb, Mentha piperita L. It is an isomer of menthol and has a menthol-like odor. This natural compound is known for its清凉and refreshing properties, making it a popular choice as an additive in various products.

Uses

Used in Oral Hygiene Products:
(+)-NEOMENTHOL is used as a flavoring agent in oral hygiene products such as toothpaste and mouthwashes. Its cooling and refreshing sensation helps to improve the overall experience of using these products and contributes to fresher breath.
Used in Food and Beverage Industry:
(+)-NEOMENTHOL is used as a flavoring agent in food and beverages, particularly in products that require a minty or cooling taste. Its pleasant aroma and flavor enhance the sensory experience of consuming these products.
Used in Chemical Synthesis:
(+)-NEOMENTHOL serves as a reagent in the preparation of alkyl sulfonyl fluorides, which are important intermediates in the synthesis of various chemical compounds.
Occurrence:
(+)-NEOMENTHOL has been reported to be found in corn mint oil (Mentha arvenis), indicating its natural presence in certain plant sources.
General Description:
(+)-NEOMENTHOL, with its menthol-like odor, is used in mixtures of menthols as a substitute for l-menthol. This versatile compound offers a range of applications across different industries, from personal care to food and beverage, and even in chemical synthesis.

Flammability and Explosibility

Notclassified

Check Digit Verification of cas no

The CAS Registry Mumber 2216-52-6 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,2,1 and 6 respectively; the second part has 2 digits, 5 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 2216-52:
(6*2)+(5*2)+(4*1)+(3*6)+(2*5)+(1*2)=56
56 % 10 = 6
So 2216-52-6 is a valid CAS Registry Number.
InChI:InChI=1S/C10H20O/c1-7(2)9-5-4-8(3)6-10(9)11/h7-11H,4-6H2,1-3H3/t8-,9+,10+/m0/s1

2216-52-6 Well-known Company Product Price

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  • TCI America

  • (N0626)  (+)-Neomenthol  >96.0%(GC)

  • 2216-52-6

  • 5mL

  • 990.00CNY

  • Detail
  • TCI America

  • (N0626)  (+)-Neomenthol  >96.0%(GC)

  • 2216-52-6

  • 25mL

  • 3,750.00CNY

  • Detail
  • Aldrich

  • (235180)  (1S,2S,5R)-(+)-Neomenthol  ≥95%

  • 2216-52-6

  • 235180-5G

  • 1,219.14CNY

  • Detail
  • Aldrich

  • (235180)  (1S,2S,5R)-(+)-Neomenthol  ≥95%

  • 2216-52-6

  • 235180-25G

  • 5,551.65CNY

  • Detail

2216-52-6SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 11, 2017

Revision Date: Aug 11, 2017

1.Identification

1.1 GHS Product identifier

Product name (+)-neomenthol

1.2 Other means of identification

Product number -
Other names (1S,2S,5R)-2-Isopropyl-5-methylcyclohexanol

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only. Fragrances
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:2216-52-6 SDS

2216-52-6Relevant articles and documents

Alkylation of acylmetalates with alkyl halides to prepare Fischer carbene complexes: An improved protocol

Nandi, Bappaditya,Sinha, Surajit

, p. 106 - 113 (2011)

Alkoxy Fischer carbene complexes have been synthesized by alkylation of lithium acylmetalates with alkyl halides in the presence of catalytic amount (5-10 mol %) of n-tetrabutylammonium bromide (n-Bu4NBr) restricting the temperature below 55 °C to minimize decomposition of the product. The reaction occurs in a biphasic condition involving water and alkyl halide. The effect of cesium on this alkylation reaction has been studied. The presence of a radical quencher, di-tert-butyl phenol, neither affects the yield nor leads to the formation of dimer of di-tert-butyl phenol, which rules out the possibility of radical pathway mechanism. The kinetic study and the 1H NMR spectra of products suggest an SN2 pathway particularly involving alkyl halides.

Revision of the stereochemistry of elisabethatriene, a putative biosynthetic intermediate of pseudopterosins

Nasuda, Masayuki,Ohmori, Miho,Ohyama, Kiyoshi,Fujimoto, Yoshinori

, p. 681 - 685 (2012)

In the past, we have questioned the accuracy of the stereochemistry of elisabethatriene, a putative biosynthetic intermediate of pseudopterosins, in light of the configuration of elisabethatrienol isolated from Pseudopterogorgia elisabethae, which was represented as 1S,4R,9S,11S. We have reinvestigated the stereochemistry of elisabethatriene. Elisabethatriene with the reported 1S,4R,9R,11S configuration was synthesized starting from (-)-isopulegol in its enantiomeric form. The 1H- and 13C-NMR data of the synthesized compound differed from those reported for elisabethatriene. In addition to the fact that elisabethatriene is converted into pseudopterosins, this finding has allowed us to propose that elisabethatriene should have the 1S,4R,9S,11S stereochemistry, which is identical to that of elisabethatrienol.

Preparation of Neutral trans - Cis [Ru(O2CR)2P2(NN)], Cationic [Ru(O2CR)P2(NN)](O2CR) and Pincer [Ru(O2CR)(CNN)P2] (P = PPh3, P2= diphosphine) Carboxylate Complexes and their Application in the Catalytic Carbonyl Compounds Reduction

Baldino, Salvatore,Giboulot, Steven,Lovison, Denise,Nedden, Hans Günter,P?thig, Alexander,Zanotti-Gerosa, Antonio,Zuccaccia, Daniele,Ballico, Maurizio,Baratta, Walter

, p. 1086 - 1103 (2021/05/06)

The diacetate complexes trans-[Ru(κ1-OAc)2(PPh3)2(NN)] (NN = ethylenediamine (en) (1), 2-(aminomethyl)pyridine (ampy) (2), 2-(aminomethyl)pyrimidine (ampyrim) (3)) have been isolated in 76-88% yield by reaction of [Ru(κ2-OAc)2(PPh3)2] with the corresponding nitrogen ligands. The ampy-type derivatives 2 and 3 undergo isomerization to the thermodynamically most stable cationic complexes [Ru(κ1-OAc)(PPh3)2(NN)]OAc (2a and 3a) and cis-[Ru(κ1-OAc)2(PPh3)2(NN)] (2b and 3b) in methanol at RT. The trans-[Ru(κ1-OAc)2(P2)2] (P2 = dppm (4), dppe (5)) compounds have been synthesized from [Ru(κ2-OAc)2(PPh3)2] by reaction with the suitable diphosphine in toluene at 95 °C. The complex cis-[Ru(κ1-OAc)2(dppm)(ampy)](6) has been obtained from [Ru(κ2-OAc)2(PPh3)2] and dppm in toluene at reflux and reaction with ampy. The derivatives trans-[Ru(κ1-OAc)2P2(NN)] (7-16; NN = en, ampy, ampyrim, 8-aminoquinoline; P2 = dppp, dppb, dppf, (R)-BINAP) can be easily synthesized from [Ru(κ2-OAc)2(PPh3)2] with a diphosphine and treatment with the NN ligands at RT. Alternatively these compounds have been prepared from trans-[Ru(OAc)2(PPh3)2(NN)] by reaction with the diphosphine in MEK at 50 °C. The use of (R)-BINAP affords trans-[Ru(κ1-OAc)2((R)-BINAP)(NN)] (NN = ampy (11), ampyrim (15)) isolated as single stereoisomers. Treatment of the ampy-type complexes 8-15 with methanol at RT leads to isomerization to the cationic derivatives [Ru(κ2-OAc)P2(NN)]OAc (8a-15a; NN = ampy, ampyrim; P2 = dppp, dppb, dppf, (R)-BINAP). Similarly to 2, the dipivalate trans-[Ru(κ1-OPiv)2(PPh3)2(ampy)] (18) is prepared from [Ru(κ2-OPiv)2(PPh3)2] (17) and ampy in CHCl3. The pincer acetate [Ru(κ1-OAc)(CNNOMe)(PPh3)2] (19) has been synthesized from [Ru(κ2-OAc)2(PPh3)2] and HCNNOMe ligand in 2-propanol with NEt3 at reflux. In addition, the dppb pincer complexes [Ru(κ1-OAc)(CNN)(dppb)] (CNN = AMTP (20), AMBQPh (21)) have been obtained from [Ru(κ2-OAc)2(PPh3)2], dppb, and HAMTP or HAMBQPh with NEt3, respectively. The acetate NN and pincer complexes are active in transfer hydrogenation with 2-propanol and hydrogenation with H2 of carbonyl compounds at S/C values of up to 10000 and with TOF values of up to 160000 h-1.

Heterogeneous Hydroxyl-Directed Hydrogenation: Control of Diastereoselectivity through Bimetallic Surface Composition

Shumski, Alexander J.,Swann, William A.,Escorcia, Nicole J.,Li, Christina W.

, p. 6128 - 6134 (2021/05/29)

Directed hydrogenation, in which product selectivity is dictated by the binding of an ancillary directing group on the substrate to the catalyst, is typically catalyzed by homogeneous Rh and Ir complexes. No heterogeneous catalyst has been able to achieve equivalently high directivity due to a lack of control over substrate binding orientation at the catalyst surface. In this work, we demonstrate that Pd-Cu bimetallic nanoparticles with both Pd and Cu atoms distributed across the surface are capable of high conversion and diastereoselectivity in the hydroxyl-directed hydrogenation reaction of terpinen-4-ol. We postulate that the OH directing group adsorbs to the more oxophilic Cu atom while the olefin and hydrogen bind to adjacent Pd atoms, thus enabling selective delivery of hydrogen to the olefin from the same face as the directing group with a 16:1 diastereomeric ratio.

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