Pd-catalyzed cross-coupling of arabinogalactan propargyl ethers with 5-bromosalicylic acid

被引:5
|
作者
Grishchenko, Lyudmila A. [1 ]
Parshina, Lidiya N. [1 ]
Larina, Lyudmila I. [1 ]
Kostyro, Yana A. [1 ]
Trofimov, Boris A. [1 ]
机构
[1] Russian Acad Sci, Siberian Branch, AE Favorsky Irkutsk Inst Chem, 1 Favorsky Str, Irkutsk 664033, Russia
关键词
Arabinogalactan functionalization; Salicylate derivatives; Sonogashira reaction; Hydroamination; Homocoupling; SALICYLIC-ACID; POLYSACCHARIDE ARABINOGALACTAN; INTERMOLECULAR HYDROAMINATION; REGIOSELECTIVE ACCESS; PRODRUG DESIGN; ALKYNES; ASPIRIN; DERIVATIVES; OXIDATION; AMINES;
D O I
10.1016/j.carbpol.2021.118561
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
New salicylate derivatives of arabinogalactan have been synthesized in up to 90% yield by cross-coupling of propargyl ethers of arabinogalactan with 5-bromosalicylic acid salts. The reaction proceeds in the presence of the catalytic system Pd(PPh3)(4)/PPh3 with CuBr (CuI), and piperidine or 1,8-diazabicyclo-[5.4.0]-undec-7-ene (DBU) as a base in DMSO at 70-95 degrees C. The propargyl groups of the starting arabinogalactan ethers are converted into propinylsalicylate ones with 35 and 50% conversion depending on the nature of the base used. Degree of ara-binogalactan substitution with propynyl salicylate fragments reaches 1.0 and 0.7 in the reactions with piperidine and DBU, respectively. In the case of piperidine, along with the main process, intensive unprecedented (for Sonogashira reaction) hydroamination of propargyl groups is also observed, followed by hydrolysis of unstable enamines. The products have been characterized by IR, H-1 and C-13 NMR, UV spectroscopy as well as elemental analysis and gel permeation chromatography. Salicylate derivatives of arabinogalactan show high activity in prolonging the activated partial thromboplastin time (APTT), whereas neither the arabinogalactan nor propargyl ethers of arabinogalactan nor salicylic acid salts have obvious effects.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Pd-catalyzed coupling reaction of allyl and propargyl ethers with chlorosilanes
    Naitoh, Yoshitaka
    Bando, Fumiaki
    Terao, Jun
    Otsuki, Kazutaka
    Kuniyasu, Hitoshi
    Kambe, Nobuaki
    CHEMISTRY LETTERS, 2007, 36 (02) : 236 - 237
  • [2] A genealogy of Pd-catalyzed cross-coupling
    Negishi, E
    JOURNAL OF ORGANOMETALLIC CHEMISTRY, 2002, 653 (1-2) : 34 - 40
  • [3] Pd-catalyzed cross-coupling of alkynylsilanols with iodobenzenes
    Chang, S
    Yang, SH
    Lee, PH
    TETRAHEDRON LETTERS, 2001, 42 (29) : 4833 - 4835
  • [4] Pd-catalyzed cross-coupling reactions of alkyl halides
    Kambe, Nobuaki
    Iwasaki, Takanori
    Terao, Jun
    CHEMICAL SOCIETY REVIEWS, 2011, 40 (10) : 4937 - 4947
  • [5] An agrochemical perspective on Pd-catalyzed cross-coupling chemistry
    Ford, Mark J.
    Fairlamb, Ian J. S.
    CHEM CATALYSIS, 2025, 5 (01):
  • [6] Organogermanes in PD-catalyzed cross-coupling reactions.
    Wang, ZZ
    Garcia, PI
    Gonzalez, A
    Wnuk, SF
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2005, 229 : U528 - U528
  • [7] Pd-Catalyzed Cross-Coupling of Alkylzirconocenes and Aryl Chlorides
    Jiang, Binyang
    Shi, Shi-Liang
    CHINESE JOURNAL OF CHEMISTRY, 2022, 40 (15) : 1813 - 1820
  • [8] Synthesis of Enol Ethers and Enamines by Pd-Catalyzed Tosylhydrazide-Promoted Cross-Coupling Reactions
    Barluenga, Jose
    Escribano, Maria
    Moriel, Patricia
    Aznar, Fernando
    Valdes, Carlos
    CHEMISTRY-A EUROPEAN JOURNAL, 2009, 15 (48) : 13291 - 13294
  • [9] Tetraorganoindates as nucleophilic coupling partners in Pd-catalyzed cross-coupling reactions
    Lee, PH
    Lee, SW
    Seomoon, D
    ORGANIC LETTERS, 2003, 5 (26) : 4963 - 4966
  • [10] Changing the Charge: Electrostatic Effects in Pd-Catalyzed Cross-Coupling
    Chan, Allen L.
    Estrada, Jess
    Kefalidis, Christos E.
    Lavallo, Vincent
    ORGANOMETALLICS, 2016, 35 (19) : 3257 - 3260