Mechanism of Alkene, Alkane, and Alcohol Oxidation with H2O2 by an in Situ Prepared MnII/Pyridine-2-carboxylic Acid Catalyst

被引:36
|
作者
Saisaha, Pattama [1 ]
Dong, Jia Jia [1 ]
Meinds, Tim G. [1 ]
de Boer, Johannes W. [2 ]
Hage, Ronald [2 ]
Mecozzi, Francesco [1 ]
Kasper, Johann B. [1 ]
Browne, Wesley R. [1 ]
机构
[1] Univ Groningen, Fac Math & Nat Sci, Stratingh Inst Chem, Mol Inorgan Chem, Nijenborgh 4, NL-9747 AG Groningen, Netherlands
[2] Catexel Ltd, BioPartner Ctr Leiden, Galileiweg 8, NL-2333 BD Leiden, Netherlands
来源
ACS CATALYSIS | 2016年 / 6卷 / 06期
基金
欧洲研究理事会;
关键词
manganese; oxidation; catalysis; Raman spectroscopy; epoxidation; HYDROGEN-PEROXIDE; MANGANESE COMPLEXES; ASYMMETRIC EPOXIDATIONS; PERACETIC-ACID; IRON; OLEFINS; LIGAND; FE; AMINOPYRIDINE; REACTIVITY;
D O I
10.1021/acscatal.6b00320
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The oxidation of alkenes, alkanes, and alcohols with H2O2 is catalyzed efficiently using an in situ prepared catalyst comprised of a MnII salt and pyridine-2-carboxylic acid (PCA) together with a ketone in a wide range of solvents. The mechanism by which these reactions proceed is elucidated, with a particular focus on the role played by each reaction component: i.e., ketone, PCA, MnII salt, solvent, etc. It is shown that the equilibrium between the ketone cocatalysts, in particular butanedione, and H2O2 is central to the catalytic activity observed and that a gem-hydroxyl-hydroperoxy species is responsible for generating the active form of the manganese catalyst. Furthermore, the oxidation of the ketone to a carboxylic acid is shown to antecede the onset of substrate conversion. Indeed, addition of acetic acid either prior to or after addition of H2O2 eliminates a lag period observed at low catalyst loading. Carboxylic acids are shown to affect both the activity of the catalyst and the formation of the gem-hydroxyl-hydroperoxy species. The molecular nature of the catalyst itself is explored through the effect of variation of MnII and PCA concentration, with the data indicating that a MnII:PCA ratio of 1:2 is necessary for activity. A remarkable feature of the catalytic system is that the apparent order in substrate is 0, indicating that the formation of highly reactive manganese species is rate limiting.
引用
收藏
页码:3486 / 3495
页数:10
相关论文
共 50 条
  • [1] Oxidation of Alkenes with H2O2 by an in-Situ Prepared Mn(II)/Pyridine-2-carboxylic Acid Catalyst and the Role of Ketones in Activating H2O2
    Dong, Jia Jia
    Saisaha, Pattama
    Meinds, Tim G.
    Alsters, Paul L.
    Ijpeij, Edwin G.
    van Summeren, Ruben P.
    Mao, Bin
    Fananas-Mastral, Martin
    de Boer, Johannes W.
    Hage, Ronald
    Feringa, Ben L.
    Browne, Wesley R.
    ACS CATALYSIS, 2012, 2 (06): : 1087 - 1096
  • [2] KINETICS AND MECHANISM OF COMPLEXATION OF NI(II) BY PYRIDINE-2-CARBOXYLIC ACID
    MALHOTRA, HC
    PRAKASH, J
    INDIAN JOURNAL OF CHEMISTRY SECTION A-INORGANIC BIO-INORGANIC PHYSICAL THEORETICAL & ANALYTICAL CHEMISTRY, 1984, 23 (05): : 416 - 418
  • [3] Probable mechanism for alkane oxidation with H2O2 over VS-2
    Takashi Tatsumi
    Yosiaki Watanabe
    Yoshiro Hirasawa
    Junichi Tsuchiya
    Research on Chemical Intermediates, 1998, 24 : 529 - 540
  • [4] Probable mechanism for alkane oxidation with H2O2 over VS-2
    Tatsumi, Takashi
    Watanabe, Yosiaki
    Hirasawa, Yoshiro
    Tsuchiya, Junichi
    Research on Chemical Intermediates, 24 (5 pt 4): : 529 - 540
  • [5] Probable mechanism for alkane oxidation with H2O2 over VS-2
    Tatsumi, T
    Watanabe, Y
    Hirasawa, Y
    Tsuchiya, J
    RESEARCH ON CHEMICAL INTERMEDIATES, 1998, 24 (05) : 529 - 540
  • [6] Pyridine-2-carboxylic acid mediated oxidation of α-hydroxy acids with pyridinium dichromate
    Sundari, V
    Meenakshisundaram, S
    Vasuki, C
    OXIDATION COMMUNICATIONS, 1999, 22 (03): : 400 - 405
  • [7] LEAD (II) COMPLEXATION BY PYRIDINE-2-CARBOXYLIC ACID
    KHAYAT, Y
    CROMERMORIN, M
    SCHARFF, JP
    COMPTES RENDUS HEBDOMADAIRES DES SEANCES DE L ACADEMIE DES SCIENCES SERIE C, 1978, 287 (07): : 265 - 268
  • [8] Recyclable anhydride catalyst for H2O2 oxidation: N-oxidation of pyridine derivatives
    Gajeles, Ghellyn
    Kim, Se Mi
    Yoo, Jong-Cheol
    Lee, Kyung-Koo
    Lee, Sang Hee
    RSC ADVANCES, 2020, 10 (15) : 9165 - 9171
  • [9] Rapid Synthesis of Schiff Bases via Pyridine-2-Carboxylic Acid as an Effective Catalyst
    Vankar, Smitkumar D.
    Makwana, Hardi M.
    Sharma, Mayank G.
    CHEMISTRYSELECT, 2024, 9 (40):
  • [10] Esterified carboxylic pyrazolone dyes and their in situ CuII/H2O2 catalytic oxidation
    Zhao, Xiao-Lei
    Feng, Fan-Da
    Zhang, Yi
    Hu, Bin
    Huang, Wei
    DYES AND PIGMENTS, 2020, 175