...
首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Electrochemical and theoretical study of the redox properties of transition metal complexes with {Pt_2S_2} cores
【24h】

Electrochemical and theoretical study of the redox properties of transition metal complexes with {Pt_2S_2} cores

机译:具有{Pt_2S_2}核的过渡金属配合物的氧化还原性质的电化学和理论研究

获取原文
获取原文并翻译 | 示例

摘要

The oxidation processes undergone by the {Pt_2(μ-S)_2} core in [Pt_2(P∩P)_2(μ-S)_2] (P∩P = Ph_2P(CH_2)_nPPh_2, n = 2,3) complexes have been analysed on the basis of electrochemical measurements. The experimental results are indicative of two consecutive monoelectronic oxidations after which the {Pt_2(μ-S)_2} core evolves into {Pt_2(μ-S_2)}~(2+), containing a bridging disulfide ligand. However, the instability of the monoxidised [Pt_2(P∩P)_2(μ-S)_2]~+ species formed initially, which converts into [Pt_3(P∩P)_3(μ-S)_2]~(2+), hampered the synthesis and characterisation of the mono and dioxidised species. These drawbacks have been surpassed by means of DFT calculations which have also allowed the elucidation of the structural features of the species obtained from the oxidation of [Pt_2(P∩P)_2(μ-S)_2] compounds. The calculated redox potentials corresponding to the oxidation processes are consistent with the experimental data obtained. In addition, calculations on the thermodynamics of possible processes following the degradation of [Pt_2(P∩P)_2(μ-S)_2]~+ are fully consistent with the concomitant formation of monometallic [Pt(P∩P)S_2)] and trimetallic [Pt_3(P∩P)_3(μ-S)_2]~(2+) compounds. Extension of the theoretical study on the {Pt_2Te_2} core and comparisons with the results obtained for {Pt_2S_2} have given a more general picture of the behaviour of {Pt_2X_2} (X = chalcogenide) cores subject to oxidation processes.
机译:{Pt_2(P∩P)_2(μ-S)_2](P∩P= Ph_2P(CH_2)_nPPh_2,n = 2,3)络合物中的{Pt_2(μ-S)_2}核经历的氧化过程已经基于电化学测量进行了分析。实验结果表明两个连续的单电子氧化,之后{Pt_2(μ-S)_2}核演化为{Pt_2(μ-S_2)}〜(2+),其中含有桥联的二硫键配体。然而,最初形成的单氧化的[Pt_2(P∩P)_2(μ-S)_2]〜+物种不稳定,并转化为[Pt_3(P∩P)_3(μ-S)_2]〜(2+ ),阻碍了单和双氧化物种的合成和表征。通过DFT计算已经克服了这些缺点,该方法还可以阐明由[Pt_2(P∩P)_2(μ-S)_2]化合物氧化而获得的物质的结构特征。计算出的与氧化过程相对应的氧化还原电位与获得的实验数据一致。此外,[Pt_2(P∩P)_2(μ-S)_2]〜+降解后可能过程的热力学计算与单金属[Pt(P∩P)S_2)的伴随形成完全一致。和三金属[Pt_3(P∩P)_3(μ-S)_2]〜(2+)化合物。对{Pt_2Te_2}核的理论研究的扩展以及与对{Pt_2S_2}的结果进行的比较给出了{Pt_2X_2}(X =硫族化物)核在氧化过程中的行为的更一般的描述。

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