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克服晶体形成瓶颈:使用溶液技术发现的一系列巨大无机 {Pdx }(L) (x=84, 72) 钯大环。

Overcoming the Crystallization Bottleneck: A Family of Gigantic Inorganic {Pdx }(L) (x=84, 72) Palladium Macrocycles Discovered using Solution Techniques.

机构信息

WEST Chem, School of Chemistry, University of Glasgow, University Avenue, Glasgow, G12 8QQ, UK.

出版信息

Angew Chem Int Ed Engl. 2016 Oct 4;55(41):12741-5. doi: 10.1002/anie.201606005. Epub 2016 Sep 16.

Abstract

The {Pd84 }(Ac) wheel, initially discovered serendipitously, is the only reported giant palladium macrocycle-a unique structure that spontaneously assembles from small building blocks. Analogues of this structure are elusive. A new modular route to {Pd84 }(Ac) is described, allowing incorporation of other ligands, and a new screening approach to cluster discovery. Structural assignments were made of new species from solution experiments, overcoming the need for crystallographic analysis. As a result, two new palladium macrocycles were discovered: a structural analogue of the existing {Pd84 }(Ac) wheel with glycolate ligands, {Pd84 }(Gly) , and the next in a magic number series for this cluster family-a new {Pd72 }(Prop) wheel decorated with propionate ligands. These findings confirm predictions of a magic number rule for the family of {Pdx } macrocycles. Furthermore, structures with variable fractions of functional ligands were obtained. Together these discoveries establish palladium clusters as a new class of tunable nanostructures. In facilitating the discovery of species that would not have been discovered by orthodox crystallization approaches, this work also demonstrates the value of solution-based screening and characterization in cluster chemistry, as a means to decouple cluster formation, discovery, and isolation.

摘要

{Pd84 }(Ac) 轮最初是偶然发现的,是唯一报道的巨型钯大环 - 一种由小构件自发组装而成的独特结构。这种结构的类似物很难捉摸。本文描述了一种新的模块化方法来制备 {Pd84 }(Ac),可以引入其他配体,并提供了一种新的发现团簇的筛选方法。通过溶液实验对新物种进行了结构分配,克服了对晶体学分析的需求。结果发现了两种新的钯大环:一种具有甘醇酸配体的现有 {Pd84 }(Ac) 轮的结构类似物 {Pd84 }(Gly),以及该团簇家族的下一个“幻数”系列 - 一种带有丙酸盐配体的新的 {Pd72 }(Prop) 轮。这些发现证实了家族的“幻数”规则对 {Pdx }大环的预测。此外,还获得了具有可变分数功能配体的结构。这些发现共同确立了钯团簇作为一类新的可调谐纳米结构。通过促进发现那些通过正统结晶方法无法发现的物种,这项工作还证明了基于溶液的筛选和表征在团簇化学中的价值,这是一种将团簇形成、发现和分离解耦的手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bae/5113701/07032fddfb2e/ANIE-55-12741-g005.jpg

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