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    • 1. 发明授权
    • Process for synthesizing beta-lactam
    • β-内酰胺合成方法
    • US07022842B2
    • 2006-04-04
    • US10450450
    • 2001-03-07
    • Kiyotaka HatakedaOsamu SatoMitsuhiro KanakuboYutaka IkushimaKazuo Torii
    • Kiyotaka HatakedaOsamu SatoMitsuhiro KanakuboYutaka IkushimaKazuo Torii
    • C07B43/06C07D205/08
    • C07D201/08Y02P20/582
    • It is an object of the present invention to provide a method for synthesizing β-lactams and a method for manufacturing β-lactams in water of high-temperature and under high-pressure, and the present invention relates to a β-lactam synthesis method which is characterized in that β-lactams are synthesized by reacting β-amino acids in water at high-temperature and under high-pressure, this method being further characterized in that β-lactams are synthesized at a high speed by cyclizing β-amino acids in water at high-temperature and under high-pressure in which the temperature range is 200° C. or higher and the pressure range is 10 MPa or greater, and the present invention also relates to a method for manufacturing β-lactams which is characterized in that β-lactams are synthesized by reacting β-amino acids in water at high-temperature and under high-pressure, and are then separated and purified using a column separation medium.
    • 本发明的一个目的是提供一种合成β-内酰胺的方法和一种在高温和高压水中制备β-内酰胺的方法,本发明涉及一种β-内酰胺合成方法, 其特征在于β-内酰胺是通过在高温和高压下在水中使β-氨基酸反应合成的,该方法的进一步特征在于通过使β-氨基酸在高温和高压下环化β-氨基酸来高速合成β-内酰胺 在温度范围为200℃以上且压力范围为10MPa以上的高温高压下的水,本发明还涉及β-内酰胺的制造方法,其特征在于, 该β-内酰胺通过在高温和高压下在水中使β-氨基酸反应合成,然后使用柱分离介质分离和纯化。
    • 4. 发明授权
    • Process for producing lactam
    • 生产内酰胺的方法
    • US07084269B2
    • 2006-08-01
    • US10471750
    • 2002-03-05
    • Kiyotaka HatakedaOsamu SatoYutaka IkushimaKazuo Torii
    • Kiyotaka HatakedaOsamu SatoYutaka IkushimaKazuo Torii
    • C07D201/04
    • C07D201/04
    • It is an object of the present invention to provide an efficient method of continuously producing a lactam in high-temperature high-pressure water, and the present invention relates to a method of producing a lactam characterized by efficiently synthesizing the lactam while suppressing oxime hydrolysis by introducing an oxime as a reaction substrate and an acid into a reaction zone through which high-temperature high-pressure water is flowing, or introducing an oxime into flowing high-temperature high-pressure water containing an acid, thus raising the temperature of the reaction substrate to put the reaction substrate into a prescribed high-temperature high-pressure state within a short time and subjecting the reaction substrate to reaction; through the method, the lactam can be efficiently and continuously synthesized at a high rate from the oxime using an acid catalyst in water at a high temperature of at least 250° C. and a high pressure of at least 15 MPa.
    • 本发明的目的是提供一种在高温高压水中连续生产内酰胺的有效方法,本发明涉及一种制备内酰胺的方法,其特征在于在抑制肟水解的同时有效地合成内酰胺 将肟作为反应基质和酸引入高温高压水流过的反应区,或将肟引入流入含有酸的高温高压水中,从而提高反应温度 将反应基材在短时间内放入规定的高温高压状态,使反应基板反应; 通过该方法,可以使用酸催化剂在高温下在高温至少250℃,高压至少15MPa的水中,以高速从肟高效连续地合成内酰胺。
    • 8. 发明授权
    • Noncatalytic organic synthesis using supercritical water
    • 使用超临界水的非催化有机合成
    • US06300523B1
    • 2001-10-09
    • US09427761
    • 1999-10-27
    • Yutaka IkushimaOsamu Sato
    • Yutaka IkushimaOsamu Sato
    • C07C4500
    • C07C45/52B01J3/008Y02P20/544Y10S210/908
    • This invention is intended to provide a method for producing pinacoline by means of pinacol rearrangement in supercritical water, which affords an extremely high reaction rate without the addition of high concentrations of acid, and this invention is directed to a method for increasing the reaction rate during organic synthesis by utilizing the supply of protons from water under noncatalytic conditions in supercritical water, a method of pinacol rearrangement comprising the production of pinacoline by pinacol rearrangement under noncatalytic conditions without the addition of an acid catalyst in supercritical water, and a method of synthesis comprising the production of cyclic compounds from pinacol under noncatalytic conditions without the addition of an acid catalyst around the critical point (375 to 380° C., 22.5 to 25 MPa) in supercritical water.
    • 本发明旨在提供一种在超临界水中通过频哪醇重排生产pinacoline的方法,其提供极高的反应速率而不加入高浓度的酸,本发明涉及一种提高反应速率的方法 利用在超临界水中的非催化条件下从水中提供质子的有机合成,包括在非催化条件下在非催化条件下通过频哪醇重排制备频哪醇的方法,而不在超临界水中加入酸催化剂,以及合成方法,包括 在非催化条件下从频哪醇生产环状化合物,而不在超临界水中在临界点(375至380℃,22.5至25MPa)附近加入酸催化剂。