Mo(0) carbonyl complexes bearing the bis(3,5-dimethylpyrazole) ligand: catalysis of the regioselective [2 + 2 + 2] cycloaddition of terminal alkynes to synthesize 1,3,5-isomers†

IF 3.3 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Dalton Transactions Pub Date : 2024-12-26 DOI:10.1039/D4DT02725F
Palash Mondal, Poulami Dutta and Ganesan Mani
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Abstract

The reaction between 1,3-bis(3,5-dimethylpyrazolylmethyl)hexahydropyrimidine L and Mo(CO)6 in CH3CN at 130 °C afforded a binuclear Mo(0) complex 1 containing a new macrocycle formed upon C–N bond cleavage in L in good yield. Conversely, a clean reaction takes place between L and [Mo(CO)4(COD)] in THF at 60 °C to give a new metalloligand complex [Mo(CO)42-N,N-L)] 2 containing a spectator pyrazole arm in 83% yield. Their structures were determined by X-ray diffraction methods, and a plausible mechanism is proposed for the C–N bond cleavage leading to complex 1. In view of a limited number of reports of catalysts for the synthesis of 1,3,5-trisubstituted benzene from the [2 + 2 + 2] cycloaddition of terminal alkynes, the catalytic application of complex 2 was explored. Interestingly, 14 terminal alkynes including those containing polar functional groups such as OH, NH2, and CHO among others were converted into their 1,3,5-isomers as the major products with a high regioselectivity ratio of >90 : 10 (1,3,5-/1,2,4-isomer) for most cases.

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含二(3,5-二甲基吡唑)配体的Mo(0)羰基配合物:末端炔在1,3,5异构体上的区域选择性[2+2+2]环加成催化剂
1,3-二(3,5-二甲基吡唑甲基)六氢嘧啶L与CH3CN中Mo(CO)6在130℃下反应生成双核Mo(0)配合物1,该配合物含有L中C- n键裂解形成的新大环,产率高。相反,L和[Mo(CO)4(COD)]在60°C的THF中发生干净反应,生成新的金属配位络合物[Mo(CO)4((2- n,N-L)] 2,含旁观者吡唑臂,产率为83%。通过x射线衍射方法确定了它们的结构,并提出了一种合理的C-N键裂解导致配合物1的机制。针对末端炔烃[2+2+2]环加成得到1,3,5-三取代苯的催化剂报道有限的情况,探讨了配合物2的催化应用。有趣的是,在大多数情况下,含有极性官能团(如OH、NH2、CHO等)的14个末端炔作为主要产物被转化为1,3,5-异构体,区域选择性比高达90:10(1,3,5-/1,2,4-异构体)。
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来源期刊
Dalton Transactions
Dalton Transactions 化学-无机化学与核化学
CiteScore
6.60
自引率
7.50%
发文量
1832
审稿时长
1.5 months
期刊介绍: Dalton Transactions is a journal for all areas of inorganic chemistry, which encompasses the organometallic, bioinorganic and materials chemistry of the elements, with applications including synthesis, catalysis, energy conversion/storage, electrical devices and medicine. Dalton Transactions welcomes high-quality, original submissions in all of these areas and more, where the advancement of knowledge in inorganic chemistry is significant.
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