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Mechanism of the chemo–bio catalyzed cascade synthesis of R-1-phenylethyl acetate over Pd/Al2O3, lipase, and Ru-catalysts

机译:Pd / Al 2 O 3 ,脂肪酶和Ru催化剂化学生化催化级联R-1-苯基乙酸乙酯的机理

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One-pot synthesis of R-1-phenylethyl acetate was investigated starting from acetophenone hydrogenation performed over Pd/Al2O3 and PdZn/Al2O3 catalysts followed by acylation of the intermediate secondary alcohol, R-1-phenylethanol, over an immobilized lipase. Furthermore, the performance of a third type of catalyst, Ru supported on hydroxyapatite (HAP) was evaluated for racemization of S-1-phenylethanol in one pot together with the two other catalysts. The main objectives of this work were to separate the effects of different catalysts and to reveal the reaction mechanism. For this purpose not only acetophenone, but also (R,S)-1-phenylethanol, S-1-phenylethanol, R-1-phenylethyl acetate, and styrene were used as reactants in combination with Pd/Al2O3, lipase and Ru/HAP as catalysts. The results revealed that the main side product, ethylbenzene, was formed in two different ways, via dehydration of (R,S)-1-phenylethanol to styrene, followed by its rapid hydrogenation to ethylbenzene, and via debenzylation of the desired product, R-1-phenylethyl acetate to ethylbenzene. The true one-pot synthesis, however, was demonstrated over Shvo’s catalyst, but Ru/HAP was not sufficiently active in the racemization step. Ru/Al2O3 was a promising catalyst for racemization of S-1-phenylethanol and for dynamic kinetic resolution of (R,S)-1-phenylethanol, when using only small amounts of the acyl donor ethyl acetate. The challenge in racemization is that the activity of heterogeneous Ru catalysts was inhibited by esters.
机译:从Pd / Al 2 O 3 和PdZn / Al 2 对苯乙酮加氢开始,研究了R-1-苯乙酸乙酯的一锅法合成> O 3 催化剂,然后在固定化脂肪酶上酰化中间体仲醇R-1-苯基乙醇。此外,评价了第三种催化剂,负载在羟基磷灰石(HAP)上的Ru与另一种两种催化剂在一个罐中对S-1-苯基乙醇的消旋作用。这项工作的主要目的是分离不同催化剂的作用并揭示反应机理。为此,不仅苯乙酮,而且与Pd / Al 2结合使用(R,S)-1-苯基乙醇,S-1-苯基乙醇,R-1-苯基乙酸乙酯和苯乙烯作为反应物。 sub> O 3 ,脂肪酶和Ru / HAP作为催化剂。结果表明,主要副产物乙苯是通过两种不同的方式形成的:将(R,S)-1-苯基乙醇脱水为苯乙烯,然后将其快速氢化为乙苯,以及将所需产物R,脱苄基化-1-苯基乙酸乙酯为乙苯。但是,在Shvo的催化剂上证明了真正的一锅合成,但是Ru / HAP在消旋步骤中活性不足。当使用Ru / Al 2 O 3 时,它是用于S-1-苯基乙醇外消旋和(R,S)-1-苯基乙醇动态动力学拆分的有前途的催化剂仅少量的酰基供体乙酸乙酯。外消旋化的挑战在于酯对多相Ru催化剂的活性有抑制作用。

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