Institut de Chimie de Nice, Université Côte d'Azur, UMR 7272 CNRS, Parc Valrose, 06108 Nice Cedex 2, France.
Robertet S.A., 37 avenue Sidi Brahim, BP 52100, 06130 Grasse, France.
J Chromatogr A. 2018 Oct 26;1573:125-150. doi: 10.1016/j.chroma.2018.08.050. Epub 2018 Aug 24.
Vetiveryl acetate is a common ingredient of the perfume industry highly prized by perfumers for its crisp vetiver note and thus often used in high-end perfume compositions. Vetiveryl acetate is currently manufactured from vetiver oil by means of various industrial processes that result in the conversion of the main vetiver alcohols into their corresponding acetates. Despite being used for decades as perfume ingredient, vetiveryl acetate has barely been studied in the past, therefore its chemical composition is poorly documented. While vetiveryl acetate is currently under investigation by regulation authorities, it was crucial to fill this gap of knowledge. We report here the first detailed investigation of different types of vetiveryl acetates, covering analytical, regulatory, and olfactory aspects. This study is based upon an integrated analytical methodology involving a full array of gas chromatographic techniques and spectroscopic/spectrometric methods. The principal objective was the identification of the main ester constituents contained in different samples of vetiveryl acetate, as well as linking their chemical composition with their manufacture process. Among the major esters detected in all samples, 23 ester constituents were either isolated by capillary preparative-gas chromatography or synthesized in order to provide their complete spectral characterization. The quantification of constituents in both commercial and laboratory-made vetiveryl acetates was carried out by internal calibration using comprehensive two-dimensional-gas chromatography and predicted relative response factors. The generated set of analytical data permitted to explore both the regulatory aspects and the olfactory properties associated with the substance. The manufacture of vetiveryl acetate modulates the initial scent of vetiver essential oil by suppressing the notes brought by the main fragrant alcohols. While the impact of undesired odorant molecules such as phenol derivatives and geosmin is lowered, the major odour-active ketones such as khusimone, ziza-6(13)-en-3-ones, and the two vetivones develop their own odor characters in vetiveryl acetate.
醋酸威蒂酯是香水行业的常用成分,因其独特的清新香根草气味而备受调香师青睐,常被用于高端香水配方中。醋酸威蒂酯目前是通过各种工业工艺从香根草油中制造的,这些工艺导致主要的香根草醇转化为相应的醋酸酯。尽管作为香水成分已经使用了几十年,但过去对醋酸威蒂酯的研究几乎没有,因此其化学组成记录甚少。虽然醋酸威蒂酯目前正在受到监管机构的调查,但填补这一知识空白至关重要。我们在这里报告了对不同类型的醋酸威蒂酯的首次详细调查,涵盖了分析、监管和嗅觉方面。这项研究基于一种综合分析方法,涉及一系列气相色谱技术和光谱/光谱方法。主要目标是鉴定不同样品中所含的主要酯类成分,并将其化学组成与其制造工艺联系起来。在所检测到的所有样品中的主要酯类中,有 23 种酯类成分通过毛细管制备气相色谱法分离或合成,以提供其完整的光谱特征。通过使用全面二维气相色谱法和预测的相对响应因子进行内部校准,对商业和实验室制造的醋酸威蒂酯中的成分进行定量。所生成的分析数据集允许探索与该物质相关的监管方面和嗅觉特性。醋酸威蒂酯的制造通过抑制主要芳香醇带来的气味来调节香根草精油的初始气味。虽然降低了诸如苯酚衍生物和土腥素等不受欢迎的气味分子的影响,但主要的气味活性酮,如 khusimone、ziza-6(13)-en-3-ones 和两种 vetivones,在醋酸威蒂酯中发展出自己的气味特征。