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14645-24-0

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14645-24-0 Usage

Description

(-)-TROGER'S BASE, also known as Tr?ger's base, is a chiral heterocyclic amine characterized by the presence of two stereogenic nitrogen atoms, which imparts its chirality. This unique structure makes it a valuable compound in various applications, particularly in the field of chemistry and pharmaceuticals.

Uses

Used in Chiral Stationary Phase Column Testing:
(-)-TROGER'S BASE is used as a standard analyte for testing the enantioseparation capability of the chiral stationary phase column. Its chiral nature allows for the evaluation of the column's ability to separate enantiomers, which is crucial in the development of enantioselective processes and the synthesis of chiral compounds.
Used in Analytical Chemistry:
In a study, (-)-TROGER'S BASE was utilized to understand the covalently bonded cellulose tris(3,5-dimethylphenylcarbamate) on a silica monolithic capillary column. This application highlights its role in advancing the understanding of column chromatography and the separation of complex mixtures, which is essential in various industries, including pharmaceuticals and environmental science.
Used in Pharmaceutical Industry:
(-)-TROGER'S BASE is used as an intermediate in the synthesis of various pharmaceutical compounds. Its chiral properties make it a valuable building block for the development of new drugs with improved efficacy and selectivity.
Used in Research and Development:
(-)-TROGER'S BASE is employed in research and development for the exploration of novel chiral compounds and their potential applications in various fields, such as materials science, agrochemicals, and biotechnology.

Check Digit Verification of cas no

The CAS Registry Mumber 14645-24-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,4,6,4 and 5 respectively; the second part has 2 digits, 2 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 14645-24:
(7*1)+(6*4)+(5*6)+(4*4)+(3*5)+(2*2)+(1*4)=100
100 % 10 = 0
So 14645-24-0 is a valid CAS Registry Number.
InChI:InChI=1/C17H18N2/c1-12-3-5-14-9-19-11-18(16(14)7-12)10-15-6-4-13(2)8-17(15)19/h3-8H,9-11H2,1-2H3

14645-24-0 Well-known Company Product Price

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  • Sigma-Aldrich

  • (40765)  (-)-Tr?ger's base  for chiral derivatization, ≥99.0%

  • 14645-24-0

  • 40765-100MG

  • 1,278.81CNY

  • Detail

14645-24-0Relevant articles and documents

A convenient method for the synthesis and resolution of Troeger base

Satishkumar, Sakilam,Periasamy, Mariappan

, p. 1116 - 1119 (2006)

Racemic Troeger base 1 can be readily obtained by the condensation of 4-toluidine and paraformaldehyde in the presence of Lewis acids and easily resolved via the preparation of diastereomeric aggregates using chiral dibenzoyl-l-tartaric acid 2.

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Prelog,Wieland

, p. 1127,1133 (1944)

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Preparation and evaluation of regioselectively substituted amylose derivatives for chiral separations

Tang, Shouwan,Jin, Zhaolei,Sun, Baishen,Wang, Fang,Tang, Wenyuan

, p. 512 - 521 (2017/08/26)

Six novel regioselectively substituted amylose derivatives with a benzoate at 2-position and two different phenylcarbamates at 3- and 6-positions were synthesized and their structures were characterized by 1H nuclear magnetic resonance (NMR) spectroscopy. Their enantioseparation abilities were then examined as chiral stationary phases (CSPs) for high-performance liquid chromatography (HPLC) after they were coated on 3-aminopropyl silica gels. Investigations indicated that the substituents at the 3- and 6-positions played an important role in chiral recognition of these amylose 2-benzoate serial derivatives. The derivatives demonstrated characteristic enantioseparation and some racemates were better resolved on these derivatives than on Chiralpak AD, which is one of the most efficient CSPs, utilizing coated amylose tris(3,5-dimethylphenylcarbamate) as the chiral selector. Among the derivatives prepared, amylose 2-benzoate-3-(phenylcarbamate/4-methylphenylcarbamate)-6-(3,5-dimethylphenylcarbamate) exhibited chiral recognition abilities comparable to that of Chiralpak AD and may be useful CSPs in the future. The effect of mobile phase on chiral recognition was also studied. In general, with the decreased concentration of 2-propanol, better resolutions were obtained with longer retention times. Moreover, when ethanol was used instead of 2-propanol, poorer resolutions were often achieved. However, in some cases, improved enantioselectivity was achieved with ethanol rather than 2-propanol as the mobile phase modifier.

Temperature-triggered switchable helix-helix inversion of poly(phenylacetylene) bearing L-valine ethyl ester pendants and its chiral recognition ability

Zhou, Yanli,Zhang, Chunhong,Qiu, Yuan,Liu, Lijia,Yang, Taotao,Dong, Hongxing,Satoh, Toshifumi,Okamoto, Yoshio

, (2016/12/03)

A phenylacetylene containing the L-valine ethyl ester pendant (PAA-Val) was synthesized and polymerized by an organorhodium catalyst (Rh(nbd)BPh4) to produce the corresponding one-handed helical cis-poly(phenylacetylene) (PPAA-Val). PPAA-Val showed a unique temperature-triggered switchable helix-sense in chloroform, while it was not observed in highly polar solvents, such as N,N′-dimethylformamide (DMF). By heating the solution of PPAA-Val in chloroform, the sign of the CD absorption became reversed, but recovered after cooling the solution to room temperature. Even after six cycles of the heating-cooling treatment, the helix sense of the PPAA-Val's backbone was still switchable without loss of the CD intensity. The PPAA-Val was then coated on silica gel particles to produce novel chiral stationary phases (CSPs) for high-performance liquid chromatography (HPLC). These novel PPAA-Val based CSPs showed a high chiral recognition ability for racemic mandelonitrile (α = 2.18) and racemic trans-N,N′-diphenylcyclohexane-1,2-dicarboxamide (α = 2.60). Additionally, the one-handed helical cis-polyene backbone of PPAA-Val was irreversibly destroyed to afford PPAA-Val-H by heating in dimethyl sulfoxide (DMSO) accompanied by the complete disappearance of the Cotton effect. Although PPAA-Val-H had the same L-valine ethyl ester pendants as its cis-isomer PPAA-Val, it showed no chiral recognition. It was concluded that the one-handed helical cis-polyene backbone of PPAA-Val plays an important role in the chiral recognition ability.

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