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Ionic Liquids as Catalysts for the Acetylation of Camphene

机译:离子液体作为Camphene的乙酰化的催化剂

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[bnmim]HS04 and [bnpy]HS04 are active and environmentally friendly catalysts for the acetylation of camphene with acetic acid. The reaction provides isobornyl acetate with 100% selectivity and 72-86% yield. The effect of temperature, molar ratio camphene/acetic acid, and catalyst loading were investigated. The catalyst can be reused four times without loss of activity.Isobornyl acetate is an important fine chemical and has been used in the field of fragrance, medicine, organic synthesis and cosmetics [1]. It is an intermediary in the synthesis of camphor [2]. Usually it is prepared by an acid-catalized reaction of camphene with acetic acid or acetic anhydride. But this process has serious drawbacks such as the corrosion of equipment, non-recyclability of the catalyst and serious environmental pollution. In the face of increasing environmental requirements, the use of such catalysts becomes unacceptable.Therefore many studies have recently focused on the development of "clean" (green) processes for the production of terpene derivatives with high selectivity. For this purpose, heteropolyacids [3, 4], zeolites [5, 6], solid acid catalysts [7, 8], ion-exchange resin [9-11] were used as catalysts for synthesizing terpene esters. However, these catalysts have drawbacks such as a large ratio of catalyst/substrate, fast deactivation and a selectivity that leaves much to be desired. In the recent years ionic liquids (IL) have been investigated by many researchers as catalysts for different reactions. Due to its low volatility, negligible vapor pressure, reasonable thermal stability, outstanding recyclability and reusability, ionic liquids may be a viable alternative to widely applicable catalysts in the processes of modern synthetic chemistry, the green chemistry [12].The improvement of the versatility of ionic liquids was achieved by creating acidic functionalized ionic liquids and combining the properties of a reagent and solvent [13]. A number of such ionic liquids were synthesized and successfully applied in the esterification reaction [14-17]. Received that the structure of the IL cation determines the direction of the rearrangement of terpene, whereas the nature of the anion affects the selectivity of the reaction [18, 19].In the present work, we report the acetylation of camphene with acetic acid catalyzed by imidazolium and pyridinium ionic liquids (Scheme 1). The influence of various reaction parameters, such as the temperature, the molar ratio of camphene/acetic acid and catalyst loading, on the activity of the most active catalyst is also studied.
机译:[Bnmim] HS04和[BNPY] HS04是用于醋酸乙酸的乙酰化的活性和环保的催化剂。该反应提供100%选择性的异叶酸,产率为72-86%。研究了温度,摩尔比樟烯/乙酸和催化剂负载的影响。催化剂可以重复使用4倍而不丧失活性。乙酸甲磺酸盐是一种重要的精细化学品,并已用于香味,药物,有机合成和化妆品领域[1]。它是樟脑合成中的中间体[2]。通常它是通过糖酸催化的糖烯烃与乙酸或乙酸酐的反应制备。但该过程具有严重的缺点,如设备的腐蚀,催化剂的不可再循环性和严重的环境污染。面对环境要求的增加,这种催化剂的使用变得不可接受。因此,许多研究最近专注于开发“清洁”(绿色)工艺,用于生产具有高选择性的萜烯衍生物。为此目的,杂多酸[3,4],沸石[5,6],固体酸催化剂[7,8],离子交换树脂[9-11]用作合成萜烯酯的催化剂。然而,这些催化剂具有缺点,例如催化剂/衬底的大比率,快速停用和留下太多需要的选择性。在近年来,许多研究人员被研究了离子液体(IL)作为不同反应的催化剂。由于其低挥发性,可忽略不计的蒸气压,合理的热稳定性,出色的可回收性和可重用性,离子液体可能是在现代合成化学过程中广泛适用的催化剂的可行替代品,绿色化学[12]。多功能性的改善通过产生酸性官能化离子液体并结合试剂和溶剂的性质来实现离子液体[13]。合成许多这样的离子液体并成功地应用于酯化反应[14-17]。接受IL阳离子的结构决定了萜烯重排的方向,而阴离子的性质影响反应的选择性[18,19]。我们报告催化醋酸糖果的乙酰化通过咪唑鎓和吡啶鎓离子液体(方案1)。还研究了各种反应参数的影响,例如温度,樟烯/乙酸和催化剂负载的温度,最活性催化剂的活性。

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