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首页> 外文期刊>Chemistry: A European journal >Reaction chemistry of complexes containing Pt-H, Pt-SH, or Pt-S fragments: From their apparent simplicity to the maze of reactions underlying their interconversion
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Reaction chemistry of complexes containing Pt-H, Pt-SH, or Pt-S fragments: From their apparent simplicity to the maze of reactions underlying their interconversion

机译:包含Pt-H,Pt-SH或Pt-S片段的配合物的反应化学:从其表面简单性到相互转化背后的反应迷宫

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摘要

The relevance of platinum in the reaction of thiophene and derivatives with homogeneous transition-metal complexes as models for hydrodesulfurization has led us to the study of the reaction chemistry of complexes containing Pt-H, Pt-SH, and Pt-S fragments. Exploration of the reactions triggered by addition of controlled amounts of Na2S or NaSH to [Pt-2(H)(2)-(mu-H)(dpPP)(2)]ClO4 (1) has provided evidence of the formation of complexes [Pt-2(mu-H)(mu-S)(dppp)(2)]ClO4 (2), [Pt(H)(SH)(dppp)] (3), [Pt-2(mu-S)(2)- (dppp)(2)] (4), [Pt-2(mu-S)(dppp)(2)] (5) and [Pt(SH)2(dppp)], in which dppp denotes I.,3-bis(diphenylphosphanyl)propane. Consequently, complexes 1, 2, and 5 as well as the already reported 3, 4, and [Pt(SH)(2)(dppp)] have been obtained and fully characterized spectroscopically. Also the crystal structures of I and 2 have been solved. Complexes 1-5 constitute the main framework of the network of reactions that account for the evolution of I under various experimental conditions as shown in Scheme 1. Apparently, this network has complexes 2 and 4 as dead-ends. However, their reciprocal interconversion by means of the replacement of one bridging hydride or sulfide ligand in the respective {Pt(mu-H)(mu-S)Pt} and {Pt(mu-S)(2)Pt} cores enables the closure of the reaction cycle involving complexes 1-5. Theoretical calculations support the existence of the undetected intermediates proposed for conversion from I to 2 and from 3 to 2 and also account for the fluxional behavior of 1 in solution. The intermediates proposed are consistent with the experimental results obtained in comparable reactions carried out with labeled reagents, which have provided evidence that complex 1 is the source of the hydride ligands in complexes 2 and 3. Overall, our results show the strong dependence on the experimental conditions for the formation of complexes 15 as well as for their further conversion in solution.
机译:铂在噻吩和衍生物与均相过渡金属配合物作为加氢脱硫模型的反应中的相关性使我们对含Pt-H,Pt-SH和Pt-S片段的配合物的反应化学进行了研究。探索向[Pt-2(H)(2)-(mu-H)(dpPP)(2)] ClO4(1)中添加受控量的Na2S或NaSH引发的反应,为形成配合物提供了证据[Pt-2(mu-H)(mu-S)(dppp)(2)] ClO4(2),[Pt(H)(SH)(dppp)](3),[Pt-2(mu-S )(2)-(dppp)(2)](4),[Pt-2(mu-S)(dppp)(2)](5)和[Pt(SH)2(dppp)],其中dppp表示I,3-双(二苯基膦基)丙烷。因此,获得了配合物1、2和5以及已经报道的3、4和[Pt(SH)(2)(dppp)],并在光谱上进行了充分表征。还解决了I和2的晶体结构。如方案1所示,配合物1-5构成反应网络的主要框架,其解释I在各种实验条件下的演化。显然,该网络具有配合物2和4作为末端。但是,通过相互替换{Pt(mu-H)(mu-S)Pt}和{Pt(mu-S)(2)Pt}芯中的一种桥联氢化物或硫化物配体,它们相互交换,可以实现终止涉及配合物1-5的反应循环。理论计算支持提议从I转换为2以及从3转换为2的未发现中间体的存在,并且还考虑了溶液中1的通量行为。所提出的中间体与在用标记试剂进行的可比反应中获得的实验结果一致,这提供了证据,表明配合物1是配合物2和3中氢化物配体的来源。总的来说,我们的结果显示出对实验的强烈依赖性。配合物15的形成以及它们在溶液中的进一步转化的条件。

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