Role of ancillary ligands in selectivity towards acceptorless dehydrogenation versus dehydrogenative coupling of alcohols and amines catalyzed by cationic ruthenium(<sc>ii</sc>)-CNC pincer complexes

被引:3
|
作者
Singh, Rahul Kumar [1 ]
Yadav, Dibya [1 ]
Misra, Shilpi [1 ,2 ]
Singh, Amrendra K. [1 ]
机构
[1] Indian Inst Technol Indore, Dept Chem, Indore 453552, India
[2] IPS Acad, Ctr Sci & Appl Res, Indore 452012, India
关键词
RUTHENIUM COMPLEXES; SECONDARY ALCOHOLS; BOND ACTIVATION; CARBENE LIGAND; N-ALKYLATION; MECHANISM; BEARING; IMINES; WATER; MN;
D O I
10.1039/d3dt03149g
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
An unexpected reversal in catalytic activity for acceptorless dehydrogenative coupling compared to acceptorless alcohol dehydrogenation has been observed using a series of cationic Ru(ii)-CNC pincer complexes with different ancillary ligands. In continuation of our study of cationic Ru(ii)-CNC pincer complexes 1a-6a, new complexes with bulky N-wingtips [Ru(CNCiPr)(CO)(PPh3)Br]PF6 (1b), [Ru(CNCCy)(CO)(PPh3)Cl]PF6 (1c), [Ru(CNCCy)(CO)(PPh3)H]PF6 (2c), [Ru(CNCiPr)(PPh3)(2)Cl]PF6 (3b), [Ru(CNCCy)(PPh3)(2)Cl]PF6 (3c), [Ru(CNCiPr)(PPh3)(2)H]PF6 (4b), [Ru(CNCCy)(PPh3)(2)H]PF6 (4c), [Ru(CNCiPr)(DMSO)(2)Cl]PF6 (6b), and [Ru(CNCCy)(DMSO)(2)Cl]PF6 (6c) [CNC (R) = 2,6-bis(1-alkylimidazol-2-ylidene)-pyridine] have been synthesized and the catalytic activities of the new complexes have been compared with their N-methyl analogues for transfer hydrogenation of cyclohexanone and acceptorless dehydrogenation of benzyl alcohol. Furthermore, all complexes have been utilized as catalysts in the dehydrogenative coupling reaction of benzyl alcohol with amines. While the catalytic activities of the new complexes for transfer hydrogenation and acceptorless alcohol dehydrogenation were found to be in line with the previously observed trend based on the ancillary ligands (CO > COD > DMSO > PPh3), for the acceptorless dehydrogenative coupling reaction, complexes containing PPh3 and DMSO ligands performed better compared to complexes containing CO and COD ligands. Based on NMR and mass investigation of catalytic reactions, a plausible mechanism has been suggested to explain the difference in catalytic activity and its reversal during the dehydrogenative coupling reaction. Furthermore, the substrate scope for the dehydrogenative coupling reaction of benzyl alcohol with a wide range of amines has been explored, including synthesizing some pharmaceutically important imines. All new complexes have been characterized by various spectroscopic techniques, and the structures of <bold>4b</bold> and <bold>6b</bold> have been confirmed by the single-crystal X-ray diffraction technique
引用
收藏
页码:15878 / 15895
页数:18
相关论文
共 4 条
  • [1] Ancillary ligand effects and microwave-assisted enhancement on the catalytic performance of cationic ruthenium(II)-CNC pincer complexes for acceptorless alcohol dehydrogenation
    Yadav, Dibya
    Singh, Rahul Kumar
    Misra, Shilpi
    Singh, Amrendra K.
    [J]. APPLIED ORGANOMETALLIC CHEMISTRY, 2022, 38 (10)
  • [2] Efficient acceptorless dehydrogenative oxidation of alcohols catalyzed by ruthenium(II) complexes containing schiff base ligands
    Hao, Zhiqiang
    Yang, Jiaxin
    Kong, Siqi
    Ma, Zhihong
    Feng, Qi
    Lu, Guo-Liang
    Lin, Jin
    [J]. JOURNAL OF ORGANOMETALLIC CHEMISTRY, 2024, 1016
  • [3] Synthesis of imines from the coupling reaction of alcohols and amines catalyzed by phosphine-free cobalt(<sc>ii</sc>) complexes
    Mahato, Jharna
    Bera, Partha Sarathi
    Saha, Tanmoy Kumar
    [J]. ORGANIC & BIOMOLECULAR CHEMISTRY, 2024, 22 (22) : 4528 - 4535
  • [4] Formation of Tertiary Amides and Dihydrogen by Dehydrogenative Coupling of Primary Alcohols with Secondary Amines Catalyzed by Ruthenium Bipyridine-Based Pincer Complexes
    Srimani, Dipankar
    Balaraman, Ekambaram
    Hu, Peng
    Ben-David, Yehoshoa
    Milstein, David
    [J]. ADVANCED SYNTHESIS & CATALYSIS, 2013, 355 (13) : 2525 - 2530