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费里考斯特:一种用于 Fe3+ 的大环光笼。

FerriCast: a macrocyclic photocage for Fe3+.

机构信息

Department of Chemisty, University of Connecticut, 55 North Eagleville Road U-3060, Storrs, Connecticut 06269, USA.

出版信息

Inorg Chem. 2010 Feb 1;49(3):916-23. doi: 10.1021/ic901182c.

Abstract

The non-siderophoric Fe(3+) photocage FerriCast (4,5-dimethoxy-2-nitrophenyl)-[4-(1-oxa-4,10-dithia-7-aza-cyclododec-7-yl)phenyl] methanol (2) has been prepared in high yield using an optimized two-step reaction sequence that utilizes a trimethylsilyl trifluoromethanesulfonate (TMSOTf) assisted electrophilic aromatic substitution as the key synthetic step. Spectrophotometric assessment of Fe(3+) binding to FerriCast revealed a binding stoichiometry and metal ion affinity dependent on the nature of the counterion. Exposure of FerriCast to 350 nm light initiates a photoreaction that converts FerriCast into FerriUnc (4,5-dimethoxy-2-nitrosophenyl)-[4-(1-oxa-4,10-dithia-7-aza-cyclododec-7-yl)phenyl]-methanone), which binds Fe(3+) less strongly owing to resonance delocalization of the anilino lone pair into the benzophenone pi-system. The release of Fe(3+) upon photolysis of FerriCast also was evaluated using a previously reported turn-on fluorescent sensor that utilizes the same macrocyclic ligand (4-(1-oxa-4,10-dithia-7-aza-cyclododec-7-yl)phenyl, AT(2)12C4). In contrast to the original reports on AT(2)12C4-based Fe(3+) sensors, FerriCast does not interact with ferric iron in aqueous solution. Introduction of oxygen containing solvents (MeOH, H(2)O, DMSO, MES, and phosphate buffers) to CH(3)CN solutions of metalated FerriCast lead to rapid decomplexation as measured by UV-visible spectroscopy. Further investigations contradicted the published conclusions on the aqueous coordination chemistry of AT(2)12C4, but also confirmed the unique and unexpected selectivity of the macrocycle for Fe(3+) in nonaqueous solvents. The crystallographic analysis of Cu(AT(2)12C4)Cl provides a rare example of a bifurcated hydrogen bond, and evidence for redox chemistry with the ligand. Spectrophotometric analysis of the model ligand with redox active metal ions provide evidence for AT(2)12C4(*+), a quasi-stable species the presence of which suggests caution should be taken when evaluating the interaction of aniline-containing systems with redox active metal ions.

摘要

非亚铁载体 Fe(3+)光笼 FerriCast(4,5-二甲氧基-2-硝基苯基)-[4-(1-氧杂-4,10-二硫杂-7-氮杂环十二烷-7-基)苯基]甲醇(2)已通过优化的两步反应序列以高产率制备,该序列利用三氟甲磺酸三甲硅酯(TMSOTf)辅助的亲电芳香取代作为关键合成步骤。分光光度评估表明,FerriCast 与 Fe(3+)的结合具有依赖于抗衡离子性质的配位化学计量和金属离子亲和力。FerriCast 暴露于 350nm 光会引发光反应,将 FerriCast 转化为 FerriUnc(4,5-二甲氧基-2-硝基亚苯基)-[4-(1-氧杂-4,10-二硫杂-7-氮杂环十二烷-7-基)苯基]甲酮),由于苯胺孤对进入苯甲酮 π-体系的共振离域,因此与 Fe(3+)的结合强度较弱。使用先前报道的基于相同大环配体(4-(1-氧杂-4,10-二硫杂-7-氮杂环十二烷-7-基)苯基,AT(2)12C4)的开启型荧光传感器评估 FerriCast 光解时的 Fe(3+)释放。与基于 AT(2)12C4 的 Fe(3+)传感器的原始报告相反,FerriCast 与水溶液中的三价铁不相互作用。向金属化 FerriCast 的 CH(3)CN 溶液中引入含氧溶剂(MeOH、H(2)O、DMSO、MES 和磷酸盐缓冲液)会导致快速去络合,如紫外可见光谱所示。进一步的研究反驳了关于 AT(2)12C4 的水溶液配位化学的已发表结论,但也证实了该大环在非水溶剂中对 Fe(3+)的独特和意外选择性。Cu(AT(2)12C4)Cl的晶体结构分析提供了双分叉氢键的罕见实例,并提供了与配体的氧化还原化学的证据。与氧化还原活性金属离子的模型配体的分光光度分析提供了 AT(2)12C4(*+)的证据,这是一种准稳定物种,其存在表明在评估含苯胺系统与氧化还原活性金属离子的相互作用时应谨慎。

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