ELECTRONICALLY TUNED LIGANDS
    1.
    发明公开
    ELECTRONICALLY TUNED LIGANDS 有权
    电子相合的配体

    公开(公告)号:EP1218388A1

    公开(公告)日:2002-07-03

    申请号:EP00959804.6

    申请日:2000-09-05

    发明人: BUSACCA, Carl

    摘要: A phosphino- or arsenoamidine of Formula (1) M is Phosphorus or Arsenic (P, As); X, Y, and Z can be independently selected from hydrogen, alkyl, aryl (pendant or fused), halogen, alkoxy (C1-C10), cyano, nitro, amino, alkylamino, dialkylamino, -CO2H, -CO(lower alkoxy), -CO(lower alkyl), -NCOH, -NCO(lower alkyl), NSO2(alkyl), - NSO2(aryl), hydroxy, alkyl, sulfonoxyalkyl, sulfonoxyaryl, or alkoxyalkyl; R1 is hydrogen, C1-C10 alkyl, branched alkyl or cycloalkyl; aryl, substituted aryl, heteroaryl or substituted heteroaryl where the heteroatoms may include atoms of nitrogen, oxygen, or sulfur, may be acyl, aroyl, substituted aroyl, heteroaroyl, or substituted heteroaroyl, or SO2R4 where R4 is chosen from the group alkyl, aryl, heteroaryl, substituted aryl or substituted heteroaryl groups in direct attachment, with the provisos that R2 and R3 can be the same or different and are hydrogen, aryl or heteroaryl as defined above, substituted aryl or heteroaryl as defined (with substituents as defined below), alkyl, branched alkyl, cycloalkyl, benzyl, subtituted benzyl, with substituents as defined for aryl, or R2 and R3 together may form a fused carbocyclic ring, Ring B is an imidazoline ring or a tetrahydropyrimidine ring.

    Verfahren zur Durchführung einer In-Situ-Quench Reaktion
    3.
    发明公开
    Verfahren zur Durchführung einer In-Situ-Quench Reaktion 有权
    Verfahren zurDurchführungeiner现场 - Quench Reaktion

    公开(公告)号:EP1500649A1

    公开(公告)日:2005-01-26

    申请号:EP04016925.2

    申请日:2004-07-18

    CPC分类号: C07D213/30 C07F7/0827

    摘要: Die Erfindung betrifft ein Verfahren zur Durchführung einer In-Situ-Quench (ISQ) Reaktion durch Erzeugung eines reaktiven Zwischenproduktes (ZP) in Gegenwart eines geeigneten Reaktionspartners mit Hilfe eines Mikroreaktors, z.B.

    摘要翻译: 在反应伴侣存在下通过产生反应性中间体进行原位淬灭(ISQ)反应的方法包括(a)将前体(PR),RP和任选的惰性稀释剂的混合物供应到微反应器中; (b)在反应器中混合将PR转化为RI的高反应性试剂(RR); 和(c)分离通过RI与RP的反应形成的最终产物(任选地在流过停留时间单位后)。 在反应伴侣(RP)的存在下通过产生反应性中间体(RI)进行原位淬灭(ISQ)反应的方法包括:(a)将前体(PR),RP和 任选地是微反应器的惰性稀释剂; (b)在反应器中混合将PR转化为RI的高反应性试剂(RR); 和(c)通过RI与RP的反应形成的最终产物(任选地在流过停留时间单位之后)分离。 通过将PR,RP和任选的惰性稀释剂的混合物供应到微反应器并与RR混合,包括使用微反应器进行ISQ反应的独立权利要求。