首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Mechanism of Cis-Dihydroxylation and Epoxidation of Alkenes by Highly H2O2 Efficient Dinuclear Manganese Catalysts
【24h】

Mechanism of Cis-Dihydroxylation and Epoxidation of Alkenes by Highly H2O2 Efficient Dinuclear Manganese Catalysts

机译:H2O2高效双核锰催化剂对烯烃的顺二羟基化和环氧化的机理

获取原文
获取原文并翻译 | 示例
       

摘要

In the presence of carboxylic acids the complex [Mn(IV)(mu-O)3(tmtacn)2]~(2+) (1,where tmtacn = N,N',N"-trimethyl-1,4,7-triazacyclononane) is shown to be highly efficient in catalyzing the oxidation of alkenes to the corresponding cis-diol and epoxide with H2O2 as terminal oxidant.The selectivity of the catalytic system with respect to (w.r.t.) either cis-dihydroxylation or epoxidation of alkenes is shown to be dependent on the carboxylic acid employed.High turnover numbers (t.o.n.> 2000) can be achieved especially w.r.t.c/s-dihydroxylation for which the use of 2,6-dichlorobenzoic acid allows for the highest t.o.n.reported thus far for c/s-dihydroxylation of alkenes catalyzed by a first-row transition metal and high efficiency w.r.t.the terminal oxidant (H2O2).The high activity and selectivity is due to the in situ formation of bis(mu-carboxylato)-bridged dinuclear manganese(III) complexes.Tuning of the activity of the catalyst by variation in the carboxylate ligands is dependent on both the electron-withdrawing nature of the ligand and on steric effects.By contrast,the cis-diol/epoxide selectivity is dominated by steric factors.The role of solvent,catalyst oxidation state,H2O,and carboxylic acid concentration and the nature of the carboxylic acid employed on both the activity and the selectivity of the catalysis are explored together with speciation analysis and isotope labeling studies.The results confirm that the complexes of the type [Mn2(M-O)(mu-R-CO2)2(tmtacn)2]~(2+),which show remarkable redox and solvent-dependent coordination chemistry,are the resting state of the catalytic system and that they retain a dinuclear structure throughout the catalytic cycle.The mechanistic understanding obtained from these studies holds considerable implications for both homogeneous manganese oxidation catalysis and in understanding related biological systems such as dinuclear catalase and arginase enzymes.
机译:在羧酸存在下,络合物[Mn(IV)(mu-O)3(tmtacn)2]〜(2+)(1,其中tmtacn = N,N',N“-三甲基-1,4,7 -三氮杂环壬烷)在以H2O2为末端氧化剂的条件下催化烯烃氧化为相应的顺式二醇和环氧化物的效率很高。对于顺式二羟基化或烯烃的环氧化,催化体系的选择性为可以实现高周转率(吨> 2000),特别是wrtc / s-二羟基化反应,使用2,6-二氯苯甲酸可以达到迄今为止c / s最高的吨数。第一行过渡金属和末端氧化剂(H2O2)高效催化烯烃的二羟基二羟基化反应。高活性和选择性是由于原位形成双(羧基羧基)桥连的双核锰(III)配合物通过改变羧酸酯配体来调节催化剂的活性取决于bo相比之下,顺式二醇/环氧化物的选择性受空间因素支配。溶剂的作用,催化剂的氧化态,H2O和羧酸的浓度以及其性质考察了羧酸在催化活性和选择性上的应用,并进行了形态分析和同位素标记研究。结果证实了[Mn2(MO)(mu-R-CO2)2(tmtacn)2型配合物]〜(2+)表现出卓越的氧化还原和溶剂依赖性配位化学,是催化体系的静止状态,并且在整个催化循环中均保持双核结构。均相锰的氧化催化作用以及对相关生物系统的理解,例如双核过氧化氢酶和精氨酸酶。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号