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实验和计算证据表明,砹原子参与了卤键。

Experimental and computational evidence of halogen bonds involving astatine.

机构信息

SUBATECH, UMR CNRS 6457, IN2P3/IMT Atlantique/Université de Nantes, Nantes, France.

CEISAM, UMR CNRS 6230, Université de Nantes, Nantes, France.

出版信息

Nat Chem. 2018 Apr;10(4):428-434. doi: 10.1038/s41557-018-0011-1. Epub 2018 Mar 19.

Abstract

The importance of halogen bonds-highly directional interactions between an electron-deficient σ-hole moiety in a halogenated compound and an acceptor such as a Lewis base-is being increasingly recognized in a wide variety of fields from biomedicinal chemistry to materials science. The heaviest halogens are known to form stronger halogen bonds, implying that if this trend continues down the periodic table, astatine should exhibit the highest halogen-bond donating ability. This may be mitigated, however, by the relativistic effects undergone by heavy elements, as illustrated by the metallic character of astatine. Here, the occurrence of halogen-bonding interactions involving astatine is experimentally evidenced. The complexation constants of astatine monoiodide with a series of organic ligands in cyclohexane solution were derived from distribution coefficient measurements and supported by relativistic quantum mechanical calculations. Taken together, the results show that astatine indeed behaves as a halogen-bond donor-a stronger one than iodine-owing to its much more electrophilic σ-hole.

摘要

卤素键的重要性——在从生物医学化学到材料科学的各个领域中,电子缺电子的σ-hole 部分与路易斯碱等受体之间的高度定向相互作用——越来越受到重视。已知最重的卤素形成更强的卤素键,这意味着如果这种趋势沿着元素周期表继续下去,砹应该表现出最高的卤素键供体能力。然而,重元素经历的相对论效应可能会对此产生缓解,正如砹的金属性质所说明的那样。在这里,实验证明了涉及砹的卤素键相互作用的发生。通过分配系数测量得出了在环己烷溶液中,砹单碘化物与一系列有机配体的络合常数,并得到相对论量子力学计算的支持。总之,结果表明,由于其更具亲电性的σ-hole,砹确实表现为卤素键供体——比碘更强。

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