Department of Chemistry, Brooklyn College and The Graduate Center, The City University of New York, Brooklyn, NY 11210, USA.
Chemistry. 2012 Mar 19;18(12):3659-74. doi: 10.1002/chem.201103145. Epub 2012 Feb 14.
The reaction of new dinuclear gold(I) organometallic complexes containing mesityl ligands and bridging bidentate phosphanes [Au(2)(mes)(2)(μ-LL)] (LL=dppe: 1,2-bis(diphenylphosphano)ethane 1a, and water-soluble dppy: 1,2-bis(di-3-pyridylphosphano)ethane 1b) with Ag(+) and Cu(+) lead to the formation of a family of heterometallic clusters with mesityl bridging ligands of the general formula [Au(2)M(μ-mes)(2) (μ-LL)][A] (M=Ag, A=ClO(4)(-), LL=dppe 2a, dppy 2b; M=Ag, A=SO(3)CF(3)(-), LL=dppe 3a, dppy 3b; M=Cu, A=PF(6)(-), LL=dppe 4a, dppy 4b). The new compounds were characterized by different spectroscopic techniques and mass spectrometry The crystal structures of [Au(2)(mes)(2)(μ-dppy)] (1b) and [Au(2)Ag(μ-mes)(2)(μ-dppe)][SO(3)CF(3)] (3a) were determined by a single-crystal X-ray diffraction study. 3a in solid state is not a cyclic trinuclear Au(2)Ag derivative but it gives an open polymeric structure instead, with the {Au(2)(μ-dppe)} fragments "linked" by {Ag(μ-mes)(2)} units. The very short distances of 2.7559(6) Å (Au-Ag) and 2.9229(8) Å (Au-Au) are indicative of gold-silver (metallophilic) and aurophilic interactions. A systematic study of their luminescence properties revealed that all compounds are brightly luminescent in solid state, at room temperature (RT) and at 77 K, or in frozen DMSO solutions with lifetimes in the microsecond range and probably due to the self-aggregation of Au(2)M(μ-mes)(2)(μ-LL) units (M=Ag or Cu; LL=dppe or dppy) into an extended chain structure, through Au-Au and/or Au-M metallophilic interactions, as that observed for 3a. In solid state the heterometallic Au(2)M complexes with dppe (2a-4a) show a shift of emission maxima (from ca. 430 to the range of 520-540 nm) as compared to the parent dinuclear organometallic product 1a while the complexes with dppy (2b-4b) display a more moderate shift (505 for 1b to a max of 563 nm for 4b). More importantly, compound [Au(2)Ag(μ-mes)(2)(μ-dppy)]ClO(4) (2b) resulted luminescent in diluted DMSO solution at room temperature. Previously reported compound [Au(2)Cl(2)(μ-LL)] (LL dppy 5b) was also studied for comparative purposes. The antimicrobial activity of 1-5 and Ag[A] (A=ClO(4)(-), SO(3)CF(3)(-)) against gram-positive and gram-negative bacteria and yeast was evaluated. Most tested compounds displayed moderate to high antibacterial activity while heteronuclear Au(2)M derivatives with dppe (2a-4a) were the more active (minimum inhibitory concentration 10 to 1 μg mL(-1)). Compounds containing silver were ten times more active to gram-negative bacteria than the parent dinuclear compound 1a or silver salts. Au(2)Ag compounds with dppy (2b, 3b) were also potent against fungi.
新型双核金(I)有机金属配合物包含mesityl 配体和桥联双齿膦烷[Au(2)(mes)(2)(μ-LL)](LL=dppe:1,2-双(二苯基膦基)乙烷 1a 和水溶性 dppy:1,2-双(二-3-吡啶基膦基)乙烷 1b)与 Ag(+)和 Cu(+)反应生成具有mesityl 桥联配体的杂金属簇家族,其通式为[Au(2)M(μ-mes)(2)(μ-LL)][A](M=Ag,A=ClO(4)(-),LL=dppe 2a,dppy 2b;M=Ag,A=SO(3)CF(3)(-),LL=dppe 3a,dppy 3b;M=Cu,A=PF(6)(-),LL=dppe 4a,dppy 4b)。新化合物通过不同的光谱技术和质谱法进行了表征。[Au(2)(mes)(2)(μ-dppy)](1b)和[Au(2)Ag(μ-mes)(2)(μ-dppe)][SO(3)CF(3)](3a)的晶体结构通过单晶 X 射线衍射研究确定。3a 在固态中不是循环三核 Au(2)Ag 衍生物,而是给出了开放的聚合物结构,其中{Au(2)(μ-dppe)}片段通过{Ag(μ-mes)(2)}单元“连接”。非常短的 2.7559(6)Å(Au-Ag)和 2.9229(8)Å(Au-Au)距离表明存在金-银(金属亲和)和金亲合相互作用。对其发光性质的系统研究表明,所有化合物在固态、室温(RT)和 77K 下,或在冷冻 DMSO 溶液中均具有明亮的发光性,寿命在微秒范围内,可能是由于[Au(2)M(μ-mes)(2)(μ-LL)](+)单元(M=Ag 或 Cu;LL=dppe 或 dppy)通过 Au-Au 和/或 Au-M 金属亲和相互作用自组装成扩展链结构所致,如 3a 所示。在固态中,具有 dppe(2a-4a)的杂金属 Au(2)M 配合物与母体双核有机金属产物 1a 相比,发射最大值(从约 430nm 移至 520-540nm 范围)发生了位移,而具有 dppy(2b-4b)的配合物则发生了更温和的位移(1b 为 505nm,4b 最大为 563nm)。更重要的是,化合物[Au(2)Ag(μ-mes)(2)(μ-dppy)]ClO(4)(2b)在室温下在稀释的 DMSO 溶液中发光。先前报道的化合物[Au(2)Cl(2)(μ-LL)](LL dppy 5b)也进行了研究,以作比较。评估了 1-5 和 Ag[A](A=ClO(4)(-),SO(3)CF(3)(-))对革兰氏阳性和革兰氏阴性细菌和酵母的抗菌活性。大多数测试化合物显示出中等至高的抗菌活性,而具有 dppe(2a-4a)的杂核 Au(2)M 衍生物更为活跃(最低抑菌浓度为 10 至 1μgmL(-1))。含银的化合物对革兰氏阴性细菌的活性比母体双核化合物 1a 或银盐高十倍。含 Au(2)Ag 的化合物 2b、3b 对真菌也有很强的活性。