Multigram synthesis of N-alkyl bis-ureas for asymmetric hydrogen bonding phase-transfer catalysis

被引:0
|
作者
Anna Chiara Vicini
Gabriele Pupo
Francesco Ibba
Véronique Gouverneur
机构
[1] University of Oxford,Chemistry Research Laboratory
来源
Nature Protocols | 2021年 / 16卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Fluorine is a key element present in ~35% of agrochemicals and 25% of marketed pharmaceutical drugs. The availability of reliable synthetic protocols to prepare catalysts that allow the efficient incorporation of fluorine in organic molecules is therefore essential for broad applicability. Herein, we report a protocol for the multigram synthesis of two representative enantiopure N-alkyl bis-urea organocatalysts derived from (S)-(–)-1,1′-binaphthyl-2,2′-diamine ((S)-BINAM). These tridentate hydrogen bond donors are highly effective phase-transfer catalysts for solubilizing safe and inexpensive metal alkali fluorides (KF and CsF) in organic solvents for enantioselective nucleophilic fluorinations. The first catalyst, characterized by N-isopropyl substitution, was obtained by using a two-step sequence consisting of reductive amination followed by urea coupling from commercially available starting materials (14 g, 48% yield and 5-d total synthesis time). The second catalyst, featuring N-ethyl alkylation and meta-terphenyl substituents, was accessed via a novel, scalable, convergent route that concluded with the coupling between N-ethylated (S)-BINAM and a preformed isocyanate (52 g and 52% overall yield). On this scale, the synthesis requires ~10 d. This can be reduced to 5 d by performing some steps in parallel. Compared to the previous synthetic route, this protocol avoids the final chromatographic purification and produces the desired catalysts in very high purity and improved yield.
引用
收藏
页码:5559 / 5591
页数:32
相关论文
共 50 条
  • [31] Chiral Phase-Transfer Catalysts with Hydrogen Bond: A Powerful Tool in the Asymmetric Synthesis
    Wang, Hongyu
    CATALYSTS, 2019, 9 (03):
  • [32] Synthesis of novel chiral quaternary phosphonium salts with a multiple hydrogen-bonding site, and their application to asymmetric phase-transfer alkylation
    Manabe, K
    TETRAHEDRON, 1998, 54 (48) : 14465 - 14476
  • [33] SYNTHESIS OF OPTICALLY-ACTIVE AMINO-ACIDS DURING ASYMMETRIC PHASE-TRANSFER CATALYSIS
    BELOKON, YN
    MALEEV, VI
    SAVELEVA, TF
    GARBALINSKAYA, NS
    SAPOROVSKAYA, MB
    BAKHMUTOV, VI
    BELIKOV, VM
    BULLETIN OF THE ACADEMY OF SCIENCES OF THE USSR DIVISION OF CHEMICAL SCIENCE, 1989, 38 (03): : 557 - 561
  • [34] ORGN 459-Synthesis of 12-HETE using asymmetric phase-transfer catalysis
    Christiansen, Michael A.
    Andrus, Merritt B.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 237
  • [35] APPLICATION OF PHASE-TRANSFER CATALYSIS TO THE SYNTHESIS OF MONO-STILBENE AND BIS-STILBENE AND STYRYLS
    LOKHANDE, SB
    RANGNEKAR, DW
    INDIAN JOURNAL OF CHEMISTRY SECTION B-ORGANIC CHEMISTRY INCLUDING MEDICINAL CHEMISTRY, 1986, 25 (05): : 485 - 488
  • [36] Synthesis of alkyl hetaryl ethers from acetates using phase-transfer catalysis in the system liquid/solid
    Abele, E
    Abele, R
    Gaukhman, A
    Lukevics, E
    KHIMIYA GETEROTSIKLICHESKIKH SOEDINENII, 1998, (01): : 46 - 49
  • [37] STEREOSPECIFIC SYNTHESIS OF ARYL BETA-D-N-ACETYLGLUCOPYRANOSIDES BY PHASE-TRANSFER CATALYSIS
    ROY, R
    TROPPER, F
    SYNTHETIC COMMUNICATIONS, 1990, 20 (14) : 2097 - 2102
  • [38] Powerful chiral phase-transfer catalysts for the asymmetric synthesis of α-alkyl- and α,α,-dialkyl-α-amino acids
    Kitamra, M
    Shirakawa, S
    Maruoka, K
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2005, 44 (10) : 1549 - 1551
  • [39] SYNTHESIS OF ALPHA-N-KETOSIDES OF N-ACETYLNEURAMINIC ACID BY USING PHASE-TRANSFER CATALYSIS
    ROTHERMEL, J
    WEBER, B
    FAILLARD, H
    LIEBIGS ANNALEN DER CHEMIE, 1992, (08): : 799 - 802
  • [40] Application of asymmetric phase-transfer catalysis in the enantioselective synthesis of cis-5-substituted proline esters
    Lygo, Barry
    Beynon, Christopher
    McLeod, Michael C.
    Roy, Claude-Eric
    Wade, Charles E.
    TETRAHEDRON, 2010, 66 (46) : 8832 - 8836