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    • 5. 发明授权
    • Method for producing allyl compound
    • 烯丙基化合物的制造方法
    • US07423168B2
    • 2008-09-09
    • US10649767
    • 2003-08-28
    • Masaki TakaiYoshiyuki Tanaka
    • Masaki TakaiYoshiyuki Tanaka
    • C07C69/76C07C41/06
    • C07C41/16C07C41/06C07C67/10C07C69/78C07C43/15C07C43/215
    • A method for producing an allyl compound having a compositional formula different from that of an allyl starting material compound, which comprises reacting the allyl starting material compound with an oxygen nucleophilic agent having a structure different from that of the allyl starting material compound in the presence of a catalyst containing at least one transition metal compound containing a transition metal selected from the group consisting of transition metals belonging to Group 8 to Group 10 of the Periodic Table and a monodentate phosphite compound having a structure of the following formula (1): P(OR1)(OR2)(OR3)  (1) wherein R1, R2 and R3 are respectively independently an alkyl group which may have a substituent, carbon chains of R1, R2 and R3 may have at least one carbon-carbon double bond or triple bond, and at least two optional groups of R1, R2 and R3 may bond to each other to form at least one cyclic structure.
    • 一种具有与烯丙基原料化合物不同的组成式的烯丙基化合物的制备方法,该方法包括使烯丙基原料化合物与具有与烯丙基原料化合物不同的结构的氧亲核剂在存在 含有至少一种含有选自属于周期表第8族至第10族的过渡金属的过渡金属的过渡金属化合物和具有下式(1)的结构的单齿亚磷酸酯化合物的催化剂: 在线公式描述=“在线公式”end =“lead”?> P(OR 2 )(OR 2 < / SUP>)(1)<?in-line-formula description =“In-line Formulas”end =“tail”?>其中R 1,R 2,和 R 3分别独立地是可以具有取代基的烷基,R 1,R 2和R 3的碳链, / SUP>可能在l 东一个碳 - 碳双键或三键,并且R 1,R 2和R 3的至少两个任选基团可以键合到 彼此形成至少一个循环结构。
    • 6. 发明授权
    • Method for producing an allyl compound
    • 烯丙基化合物的制造方法
    • US07173157B2
    • 2007-02-06
    • US10650697
    • 2003-08-29
    • Masaki TakaiYoshiyuki Tanaka
    • Masaki TakaiYoshiyuki Tanaka
    • C07C41/06C07C69/76
    • C08G63/52C07C41/16C07C67/10C07C209/66C07C2601/14C08G63/87C07C69/78C07C211/35C07C43/215C07C43/15
    • An allyl compound having a formula different from that of an allyl starting compound is prepared by a process of reacting the allyl starting compound with a nucleophilic agent in the presence of a catalyst containing at least one transition metal compound containing a transition metal selected from the group consisting of elements belonging to Group 8 to Group 10 of the Periodic Table and at least one bidentate coordinated phosphite compound selected from the group consisting of compounds having the following formulae (I) to (III): wherein A1 to A3 are respectively independently a diarylene group having a branched alkyl group at the ortho-position, R1 to R6 are respectively independently an alkyl group which may have a substituent or an aryl group which may have a substituent (including a heterocyclic compound forming an aromatic 6Π electron cloud on the upper and lower sides of the ring, hereinafter the same), and Z1 to Z3 are respectively independently an optionally substituted alkylene group, an optionally substituted arylene group, an optionally substituted alkylene-arylene group or an optionally substituted diarylene group.
    • 通过使烯丙基起始化合物与亲核剂在含有至少一种含有过渡金属的过渡金属的催化剂存在下反应的方法来制备具有与烯丙基起始化合物不同的烯丙基化合物, 由属于元素周期表第8至10族的元素和至少一种选自具有下式(I)至(III)的化合物的二齿配位的亚磷酸酯化合物组成:其中A 1〜 分别独立地为在邻位具有支链烷基的二亚芳基,R 1至R 6分别独立地为 可以具有取代基的烷基或可具有取代基的芳基(包括在环的上侧和下侧形成芳香族6Pi电子云的杂环化合物,以下相同),Z 1 到Z 3 分别独立地为任选取代的亚烷基,任选取代的亚芳基,任选取代的亚烷基 - 亚芳基或任选取代的亚芳基。
    • 9. 发明申请
    • Method for producing allyl compound, and allyl compound produced thereby
    • 制备烯丙基化合物的方法和由此制备的烯丙基化合物
    • US20050075518A1
    • 2005-04-07
    • US10650697
    • 2003-08-29
    • Masaki TakaiYoshiyuki Tanaka
    • Masaki TakaiYoshiyuki Tanaka
    • C07C41/16C07C67/10C07C209/66C07C211/35C08G63/52C08G63/87C07C41/06
    • C08G63/52C07C41/16C07C67/10C07C209/66C07C2601/14C08G63/87C07C69/78C07C211/35C07C43/215C07C43/15
    • A method for producing an allyl compound having a compositional formula different from that of an allyl starting material compound, which comprises reacting the allyl starting material compound with a nucleophilic agent in the presence of a catalyst containing at least one transitional metal compound containing a transition metal selected from the group consisting of transition metals belonging to Group 8 to Group 10 of the Periodic Table and at least one bidentate coordinated phosphite compound selected from the group consisting of compounds having structures of the following formulae (I) to (III): wherein A1 to A3 are respectively independently a diarylene group having a branched alkyl group at the ortho-position, R1 to R6 are respectively independently an alkyl group which may have a substituent or an aryl group which may have a substituent (including a heterocyclic compound forming an aromatic 6π electron cloud on the upper and lower sides of the ring, hereinafter the same), and Z1 to Z3 are respectively independently an alkylene group which may have a substituent, an arylene group which may have a substituent, an alkylene-arylene group which may have a substituent or a diarylene group which may have a substituent.
    • 一种具有与烯丙基原料化合物不同的组成式的烯丙基化合物的制备方法,该方法包括在含有至少一种含有过渡金属的过渡金属化合物的催化剂存在下使烯丙基原料化合物与亲核剂反应 选自属于元素周期表第8族至第10族的过渡金属和至少一种选自下式(I)至(III)的结构的化合物的二齿配位的亚磷酸酯化合物:其中A A 1〜A 3分别独立地为在邻位具有支链烷基的二亚芳基,R 1〜R 6分别独立地为可以具有取代基的烷基或芳基, 可以具有取代基(包括在环的上侧和下侧形成芳香族6pi电子云的杂环化合物,以下相同 )和Z 1〜Z 3分别独立地为可以具有取代基的亚烷基,可以具有取代基的亚芳基,可以具有取代基的亚芳基 - 亚芳基或可具有取代基的二亚芳基 取代基。
    • 10. 发明授权
    • Process for preparing a rhodium complex solution and process for
producing an aldehyde
    • 制备铑配合物溶液的方法和制备醛的方法
    • US5936130A
    • 1999-08-10
    • US926481
    • 1997-09-10
    • Tomoyuki MoriMasaki TakaiTomohiko InoueKazuyuki Yokoyama
    • Tomoyuki MoriMasaki TakaiTomohiko InoueKazuyuki Yokoyama
    • C01G55/00B01J31/24B01J31/40C07C45/50C07C47/055
    • B01J31/1845B01J31/2404B01J31/4046B01J31/4053C07C45/50B01J2231/321B01J2531/822B01J31/0235B01J31/04B01J31/26Y02P20/584
    • A process for producing a rhodium complex solution, which comprises contacting an aqueous solution of a water-soluble rhodium compound and an organic solvent solution of a water-insoluble tertiary organic phosphorus compound, preferably in the presence of a C.sub.2-8 carboxylic acid, in a gas atmosphere containing carbon monoxide, followed by two phase separation, and recovering an organic solvent phase containing a rhodium-tertiary organic phosphorus compound complex. As the above aqueous solution of a rhodium compound, an aqueous solution having rhodium extracted into an aqueous phase from a waste catalyst liquid separated from a hydroformylation reaction step by oxidation treatment in the presence of a recovery accelerator such as a carboxylic acid, an amine, ammonia or an inorganic acid, is used, whereby recycling of rhodium represented by hydroformylation reaction/recovery of the catalyst/regeneration of the catalyst, is made possible, and a cumbersome step of preparing a complex catalyst from an inorganic salt or the like, or a step of preparing a soluble salt from a metal or oxide by combustion in water of the recovered catalyst, can be omitted.
    • 一种制备铑络合物溶液的方法,其包括使水溶性铑化合物的水溶液与水不溶性叔有机磷化合物的有机溶剂溶液,优选在C2-8羧酸存在下,在 含有一氧化碳的气体气氛,然后进行两相分离,并回收含有铑 - 叔有机磷化合物络合物的有机溶剂相。 作为上述铑化合物的水溶液,通过在回收促进剂如羧酸,胺等存在下,通过氧化处理,从加氢甲酰化反应步骤中分离出的废催化剂液体将含有铑的水溶液萃取到水相中, 氨或无机酸,从而可以通过加氢甲酰化反应/催化剂的回收/催化剂的再生来代替的铑的回收成为可能,并且从无机盐等制备复合催化剂的繁琐步骤,或 可以省略通过在回收的催化剂的水中燃烧而从金属或氧化物制备可溶性盐的步骤。