首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Influence of the Number of Metallophilic Interactions and Structures on the Optical Properties of Heterometallic Au/Ag Complexes with Mixed-Donor Macrocyclic Ligands
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Influence of the Number of Metallophilic Interactions and Structures on the Optical Properties of Heterometallic Au/Ag Complexes with Mixed-Donor Macrocyclic Ligands

机译:金属相互作用和结构数对混合供体大环配体的杂象Au / Ag复合物的光学性质的影响

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The reactivity of the polymeric gold(I)/silver(I) compound [Au2Ag2(C6F5)(4)(OEt2)(2)](n) toward the 12-membered mixed-donor macrocyclic ligands 1,7-diaza-4,10-dithiacyclododecane (L-1), 1-aza-4,7,10-trithiacyclododecane (L-2), N-quinolinylmethyl-1-aza-4,7,10-trithiacyclododecane (L-3), and N,N'-bis-(quinolinylmethyl)-1,7-diaza-4,10-dithiacyclododecane (L-4) was studied. The reactions were carried out using different molar ratios depending on the coordination properties of the ligands, which were modified by changing the donor atoms present in the macrocyclic framework (sulfur or nitrogen) or by linking one or two methylquinoline pendant-arms at the secondary nitrogen atom(s). X-ray diffraction analysis of the new complexes obtained show a nuclearity that increases on increasing the number of donor atoms in the ligands. The rich structural diversity observed determines different optical responses when the complexes are irradiated with UV-vis light in the solid state and in THE solution. The study of the optical properties reveals that in complexes for which the luminescence is due to metal-metal interactions, higher emission wavelengths are observed as the number of these metallophilic contacts increases, while the luminescence of ionic complexes has its origin in the macrocyclic ligands. TD-DFT calculations were carried out to verify the origin of these interesting structural-optical property relationships.
机译:聚合物金(I)/银(I)化合物[Au2Ag2(C6F5)(4)(4)(2)](2)(N)的反应性朝向12-元混合供体宏环配体1,7-Diaza-4 ,10-二苯二乙二烷(L-1),1-AZA-4,7,10-三乙二酸癸烷(L-2),N-喹啉基甲基-1-AZA-4,7,10-三苯基癸烷(L-3),和n ,研究了N'-BIS-(喹啉基甲基)-1,7-diaza-4,10-二苯基十二烷(L-4)。根据配体的配位性质,使用不同的摩尔比进行反应,其通过改变宏细骨架(硫或氮气)中存在的供体原子或通过在二次氮气下连接一个或两个甲基喹啉侧臂来改变原子。获得的新配合物的X射线衍射分析显示出核电性增加了增加配体中供体原子的数量。观察到的富有结构多样性决定了当络合物用固态和溶液中的UV-Vis光照射时确定不同的光学响应。对光学性质的研究表明,在发光由于金属 - 金属相互作用的复合物中,观察到较高的发光波长,因为这些金属触点的数量增加,而离子配合物的发光在大环配体中起源。进行TD-DFT计算以验证这些有趣的结构 - 光学性质关系的起源。

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