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水溶性膦可溶解金:1,3,5-三氮杂-7-磷金刚烷(PTA)和 Verkade 瞬间配体之间缺失的环节。

Water-Soluble Phosphine Capable of Dissolving Elemental Gold: The Missing Link between 1,3,5-Triaza-7-phosphaadamantane (PTA) and Verkade's Ephemeral Ligand.

机构信息

†Department of Crystallography, Saint Petersburg State University, Universitetskaya Nab. 7/9, 199034 Saint Petersburg, Russia.

‡Nanomaterials Research Center, Kola Science Center, Russian Academy of Sciences, 184200 Apatity, Murmansk Region, Russia.

出版信息

J Am Chem Soc. 2015 Apr 29;137(16):5526-35. doi: 10.1021/jacs.5b01851. Epub 2015 Apr 21.

Abstract

We herein describe a tricyclic phosphine with previously unreported tris(homoadamantane) cage architecture. That water-soluble, air- and thermally stable ligand, 1,4,7-triaza-9-phosphatricyclo[5.3.2.1(4,9)]tridecane (hereinafter referred to as CAP) exhibits unusual chemical behavior toward gold and gold compounds: it readily reduces Au(III) to Au(0), promotes oxidative dissolution of nanocrystalline gold(0) with the formation of water-soluble trigonal CAP-Au(I) complexes, and displaces cyanide from Au(CN)2 affording triangular Au(CAP)3 cation. From the stereochemical point of view, CAP can be regarded as an intermediate between 1,3,5-triaza-7-phosphaadamantane (PTA) and very unstable aminophosphine synthesized by Verkade's group: hexahydro-2a,4a,6a-triaza-6b-phosphacyclopenta[cd]pentalene. The chemical properties of CAP are likely related to its anomalous stereoelectronic profile: combination of strong electron-donating power (Tolman's electronic parameter 2056.8 cm(-1)) with the low steric demand (cone angle of 109°). CAP can be considered as macrocyclic counterpart of PTA with the electron-donating power approaching that of strongest known phosphine electron donors such as P(t-Bu)3 and PCy3. Therefore, CAP as sterically undemanding and electron-rich ligand populates the empty field on the stereoelectronic map of phosphine ligands: the niche between the classic tertiary phosphines and the sterically undemanding aminophosphines.

摘要

我们在此描述了一种具有以前未报道的三(同金刚烷)笼结构的三环膦。这种水溶性、空气稳定和热稳定的配体,1,4,7-三氮杂-9-磷杂三环[5.3.2.1(4,9)]十三烷(以下简称 CAP)对金和金化合物表现出异常的化学行为:它容易将 Au(III)还原为 Au(0),促进纳米金(0)的氧化溶解,形成水溶性三角 CAP-Au(I)配合物,并从 Au(CN)2中取代氰化物,得到三角形 Au(CAP)3阳离子。从立体化学的角度来看,CAP 可以被视为 1,3,5-三氮杂-7-磷杂金刚烷(PTA)和 Verkade 小组合成的非常不稳定的氨膦之间的中间体:六氢-2a,4a,6a-三氮杂-6b-磷杂环戊[cd]戊烯。CAP 的化学性质可能与其异常的立体电子特性有关:强给电子能力(Tolman 的电子参数 2056.8 cm(-1))与低空间需求(锥角 109°)的结合。CAP 可以被认为是 PTA 的大环对应物,其给电子能力接近最强的已知膦给电子体,如 P(t-Bu)3 和 PCy3。因此,CAP 作为一种空间要求不高且富电子的配体,填补了膦配体的立体电子图谱中的空场:介于经典的三级膦和空间要求不高的氨膦之间的空缺。

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