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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Cationic gold clusters ligated with differently substituted phosphines: effect of substitution on ligand reactivity and binding
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Cationic gold clusters ligated with differently substituted phosphines: effect of substitution on ligand reactivity and binding

机译:阳离子金簇与不同取代的膦连接:取代对配体反应性和结合的影响

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We present a systematic study of the effect of the number of methyl (Me) and cyclohexyl (Cy) functional groups in monodentate phosphine ligands on the solution-phase synthesis of ligated sub-nanometer gold clusters and their gas-phase fragmentation pathways. Small mixed ligand cationic gold clusters were synthesized using reactions between pre-formed triphenylphosphine ligated (PPh3) gold clusters and monodentate Me- and Cy-substituted phosphine ligands in solution and characterized using electrospray ionization mass spectrometry (ESI-MS) and collision-induced dissociation (CID) experiments. Under the same experimental conditions, larger gold-PPh3 clusters undergo efficient exchange of unsubstituted PPh3 ligands for singly Me- and Cy-substituted PPh2Me and PPh2Cy ligands. The efficiency of reaction decreases with an increasing number of Me or Cy groups in the substituted phosphine ligands. CID experiments performed for a series of mixed-ligand gold clusters indicate that loss of a neutral Me-substituted ligand is preferred over loss of a neutral PPh3 ligand while the opposite trend is observed for Cy-substituted ligands. The branching ratio of the competing ligand loss channels is strongly correlated with the electron donating ability of the phosphorous lone pair as determined by the relative proton affinity of the ligand. The results indicate that the relative ligand binding energies increase in the order PMe3 < PPhMe2 < PPh2Me < PPh3 < PPh2Cy < PPhCy2 < PCy3. Furthermore, the difference in relative ligand binding energies increases with the number of substituted PPh3-mMem or PPh3-mCym ligands (L) on each cluster. This study provides the first experimental determination of the relative binding energies of ligated gold clusters containing differently substituted monophosphine ligands, which are important to controlling their synthesis and reactivity in solution. The results also indicate that ligand substitution is an important parameter that must be considered in theoretical modeling of these complex systems.
机译:我们目前对单齿膦配体中的甲基(Me)和环己基(Cy)官能团数量对连接的亚纳米金簇的溶液相合成及其气相裂解途径的影响进行系统的研究。使用预先形成的三苯基膦连接的(PPh3)金簇与溶液中单齿Me和Cy取代的膦配体之间的反应合成了小的混合配体阳离子金簇,并使用电喷雾电离质谱(ESI-MS)和碰撞诱导解离进行了表征(CID)实验。在相同的实验条件下,较大的金-PPh3簇将未取代的PPh3配体有效交换为单独的Me和Cy取代的PPh2Me和PPh2Cy配体。反应效率随着取代的膦配体中Me或Cy基团数目的增加而降低。对一系列混合配体金簇进行的CID实验表明,中性Me-取代的配体的损失优于中性PPh3配体的损失,而Cy-取代的配体观察到相反的趋势。竞争性配体损失通道的分支比与磷孤对的给电子能力密切相关,这取决于配体的相对质子亲和力。结果表明,相对配体结合能以PMe3 <PPhMe2 <PPh2Me <PPh3 <PPh2Cy <PPhCy2 <PCy3的顺序增加。此外,相对配体结合能的差异随每个簇上取代的PPh3-mMem或PPh3-mCym配体(L)的数量而增加。这项研究提供了第一个实验测定包含不同取代的单膦配体的连接金簇的相对结合能,这对于控制它们在溶液中的合成和反应性很重要。结果还表明,配体取代是这些复杂系统的理论建模中必须考虑的重要参数。

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