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基于超声诱导金属化二肽自组装的金属阵列制造。

Metal array fabrication based on ultrasound-induced self-assembly of metalated dipeptides.

机构信息

Department of Chemistry, Graduate School of Engineering Science, Osaka University, Machikaneyama, Toyonaka, Osaka 560-8531, Japan.

出版信息

Dalton Trans. 2013 Dec 7;42(45):15953-66. doi: 10.1039/c3dt51696b. Epub 2013 Aug 21.

Abstract

Pd- and Pt-bound bis-metalated peptides were synthesised by the condensation of Pd- or Pt-aldimine-complex-bound glutamic acids to afford the four possible metal isomers of bis-Pd and bis-Pt-homometalated dipeptides and PdPt- and PtPd-heterometalated dipeptides without metal disproportionation. Ultrasound-induced self-assembly of these bis-metalated peptides proceeded effectively to afford supramolecular gels that displayed well-ordered metal arrays. The formation of parallel β-sheet type aggregates through interpeptide amide-amide hydrogen bonding was confirmed by IR, scanning electron microscopy (SEM), and synchrotron X-ray diffraction analyses (WAXS and SAXS). The mechanism of the ultrasound-induced self-assembly of the metalated dipeptides was elucidated via kinetic and association experiments by (1)H NMR, in which ultrasound-triggered dissociation of intramolecular hydrogen bonds between the chloride ligands of the Pd- and Pt-complexes and amides initially occurred. This was followed by the formation of intermolecular amide-amide hydrogen bonds, which afforded the corresponding oligomeric peptide self-assembly as the nucleus for supramolecular aggregation. The observed first-order relationship of the gelation rate versus the sonication frequency suggested that the microcavitation generated under sonication conditions acted as a crucial trigger and provided a reaction field for efficient self-assembly.

摘要

钯-和铂结合的双金属肽通过钯-或铂-亚胺-复合结合的谷氨酸的缩合合成,提供了双 Pd 和双 Pt 同金属化二肽以及 PdPt 和 PtPd 杂金属化二肽的四种可能的金属异构体,而没有金属歧化。这些双金属化肽的超声诱导自组装有效地进行,得到了显示有序金属阵列的超分子凝胶。通过 IR、扫描电子显微镜 (SEM) 和同步加速器 X 射线衍射分析 (WAXS 和 SAXS) 证实了通过肽间酰胺-酰胺氢键形成平行β-折叠型聚集体。通过 (1)H NMR 通过动力学和缔合实验阐明了金属化二肽的超声诱导自组装的机制,其中超声触发 Pd 和 Pt 配合物的氯配体与酰胺之间的分子内氢键的解离最初发生。随后形成了分子间酰胺-酰胺氢键,这提供了相应的低聚肽自组装作为超分子聚集的核。观察到凝胶速率与超声频率的一级关系表明,超声条件下产生的微泡充当了关键的触发因素,并为有效自组装提供了反应场。

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