首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Formation and Transmetalation Mechanisms of Homo- and Heterometallic (Fe/Zn) Trinuclear Triple-Stranded Side-by-Side Helicates
【24h】

Formation and Transmetalation Mechanisms of Homo- and Heterometallic (Fe/Zn) Trinuclear Triple-Stranded Side-by-Side Helicates

机译:铁和杂金属(Fe / Zn)三核三链并列螺旋结构的形成和过渡金属化机理

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A novel linear hybrid tris-bidentate neutral ligand having 2,2'-bipyridine and two terminal triazolylpyridine coordination sites (L) was efficiently synthesized and explored in the synthesis of trinuclear triple-stranded homometallic side-by-side helicates L3Fe3(OTf)(6) (1) and L3Zn3(OTf)(6) (2), in which the three metal centers display alternating Lambda and Delta configurations. Selective formation of the analogous heterometallic side-by-side helicate L3Fe2Zn(OTO)(6) (3) was achieved from a mixture of L, Fe(CH3CN)(2)(OTf)(2), and Zn(OTf)(2) (1:1:1) in acetonitrile at room temperature. Various analytical techniques, i.e., single-crystal X-ray diffraction and NMR and UV/vis spectroscopy, were used to elucidate the sequence of the metal atoms within the heterometallic helicate, with the Zn2+ at the central position. The formation of 3 was also achieved starting from either L3Zn3(OTf)(2) or L3Fe3(OTf)(2) by adding Fe(CH3CN)(2)(OTf2) or Zn(OTf2, respectively. ESI-MS and 11-1 NMR studies elucidated different transmetalation mechanisms for the two cases: While a Zn2+-to-Fe2+ transmetalation occurs by the step-wise exchange of single ions on the helicate L3Zn3(OTf)(6) at room temperature, this mechanism is almost inoperative for the Fe2+ -to Zn2+ transmetalation in L3Fe3(OTf)(2), which is kinetically trapped at room temperature. In contrast, dissociation of L3Fe3(OTf)(2) at higher temperature is required, followed by reassembly to give L3Fe2Zn(OTf)(6). The reassembly follows an interesting mechanistic pathway when an excess of Zn(OTf)(2) is present in solution: First, L3Zn3(OT)(6) forms as the high-temperature thermodynamic product, which is then slowly converted into the thermodynamic heterometallic L3Fe2Zn(OTf)(6) product at room temperature. The temperature-dependent equilibrium shift is traced back to significant entropy differences resulting from an enhancement of the thermal motion of the ligands at high temperature, which destabilize the octahedral iron terminal complex and select zinc in a more stable tetrahedral geometry.
机译:高效合成了具有2,2'-联吡啶和两个末端三唑基吡啶配位点(L)的新型线性杂化三齿双中性配体,并在三核三链同金属并列螺旋L3Fe3(OTf)( 6)(1)和L3Zn3(OTf)(6)(2),其中三个金属中心显示交替的Lambda和Delta配置。从L,Fe(CH3CN)(2)(OTf)(2)和Zn(OTf)(的混合物)中选择性地形成了类似的杂金属并排螺旋结构L3Fe2Zn(OTO)(6)(3) 2)(1:1:1)在室温下于乙腈中。各种分析技术,即单晶X射线衍射,NMR和UV / Vis光谱,用于阐明Zn2 +位于中心位置的杂金属螺旋体中金属原子的顺序。通过分别添加Fe(CH3CN)(2)(OTf2)或Zn(OTf2),也可以分别从L3Zn3(OTf)(2)或L3Fe3(OTf)(2)开始形成3,ESI-MS和11- 1 NMR研究阐明了两种情况下的不同金属转移机理:虽然在室温下通过螺旋形L3Zn3(OTf)(6)上单离子的逐步交换发生了Zn2 +到Fe2 +的金属转移,但这种机理对于L3Fe3(OTf)(2)中的Fe2 +到Zn2 +的金属转移,在室温下被动态捕获,相反,需要在较高温度下将L3Fe3(OTf)(2)解离,然后重新组装以得到L3Fe2Zn(OTf) (6)。当溶液中存在过量的Zn(OTf)(2)时,重组遵循一条有趣的机理途径:首先,L3Zn3(OT)(6)作为高温热力学产物形成,然后缓慢转化在室温下进入热力学的杂金属L3Fe2Zn(OTf)(6)产物中,随温度变化的平衡位移可追溯到由于高温下配体的热运动增强而产生明显的熵差,这使八面体的铁末端络合物不稳定,并选择了更稳定的四面体几何形状的锌。

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