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1-Octadecanone, 1-(4-hydroxyphenyl)-, also known as 4-Hydroxyphenyl stearone, is an organic compound with the chemical formula C24H40O2. It is a derivative of octadecanone, featuring a 4-hydroxyphenyl group attached to the first carbon atom of the octadecanone chain. 1-Octadecanone, 1-(4-hydroxyphenyl)- is characterized by its long aliphatic chain and a hydroxyphenyl moiety, which can participate in various chemical reactions and interactions. It is used in the synthesis of various pharmaceuticals, agrochemicals, and other specialty chemicals due to its unique structural properties.

2589-77-7

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2589-77-7 Usage

Usage

Commonly used in the production of cosmetics and personal care products

Purpose

Used as a fragrance ingredient with a sweet, floral scent

Applications

Perfumes, fragrances, skincare and haircare products

Benefits

Provides a pleasant scent and potentially other desirable properties

Check Digit Verification of cas no

The CAS Registry Mumber 2589-77-7 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 2,5,8 and 9 respectively; the second part has 2 digits, 7 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 2589-77:
(6*2)+(5*5)+(4*8)+(3*9)+(2*7)+(1*7)=117
117 % 10 = 7
So 2589-77-7 is a valid CAS Registry Number.

2589-77-7Relevant academic research and scientific papers

Tilt Angle Variation as a Function of Chain Length and Temperature in the Smectic C Phases of p,Alkoxyphenyl-p,Alkoxybenzoates

Heinrich, B.,Guillon, D.

, p. 21 - 44 (2007/10/02)

The variation of the tilt angle with temperature in the smectic C phase has generally been shown to be non-existent or very slow for compounds or mixtures with the nematic-smectic C transition, while in the case of systems with the smectic A-smectic C transition, a relation between the steepness of this variation, near the transition, and the width of the smectic A domain has been observed.In this work, the variation of tilt angle in the smectic C phase is described for p-alkoxyphenyl-p-alkoxybenzoate homologous series, for which the evolution of polymorphism can be controlled systematically, by varying stepwise the length of the aliphatic chains, and for which large domains can be obtained for each type of phase sequence, nematic-, smectic A- and isotropic-smectic C.After completing the discussion made previously on the incidence of chain length on polymorphism, we confirm that the variation of tilt angle with temperature is slowest for compounds with intermediate chain lengths corresponding to the largest smectic A temperature range; this variation becomes continuously steeper when the smectic A domain becomes narrow.In addition, we show that the same description can be extended to the other types of phase sequences, by using the hypothesis of a virtual smectic A-smectic C transition above the observed nematic- or isotropic-smectic C transition.In fact, short chain lengths for homologues with a nematic/smectic C transition, or long chain lengths for homologues with an isotropic/smectic C transition, lead to an increase of the tilt angle at the phase transition and to a decrease of the amplitude of its variation with temperature; in our description, this behaviour corresponds to an increase of the temperature range between the real and virtual transitions.As a consequence, the homologues with very short and very long chain lengths show a quasi temperature-independent tilt angle, while the other homologues present a tilt angle variation similar to that observed for compounds exhibiting a smectic C/smectic A transition.This feature indicates that there is no need to distinguish between different types of smectic C phase.

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