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首页> 外文期刊>Nature Communications >Stabilizing a metalloid {Zn 12 } unit within a polymetallide environment in [K 2 Zn 20 Bi 16 ] 6?
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Stabilizing a metalloid {Zn 12 } unit within a polymetallide environment in [K 2 Zn 20 Bi 16 ] 6?

机译:在[k 2 Zn 20 Bi 16] 6中的聚合物环境中稳定金属体{Zn 12}单元6?

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The access to molecules comprising direct Zn–Zn bonds has become very topical in recent years for various reasons. Low-valent organozinc compounds show remarkable reactivities, and larger Zn–Zn-bonded gas-phase species exhibit a very unusual coexistence of insulating and metallic properties. However, as Zn atoms do not show a high tendency to form clusters in condensed phases, synthetic approaches for generating purely inorganic metalloid Znx units under ambient conditions have been lacking so far. Here we show that the reaction of a highly reductive solid with the nominal composition K5Ga2Bi4 with ZnPh2 at room temperature yields the heterometallic cluster anion [K2Zn20Bi16]6–. A 24-atom polymetallide ring embeds a metalloid {Zn12} unit. Density functional theory calculations reveal multicenter bonding, an essentially zero-valent situation in the cluster center, and weak aromaticity. The heterometallic character, the notable electron-delocalization, and the uncommon nano-architecture points at a high potential for nano-heterocatalysis. Low-valent zinc clusters, though exceedingly rare, are appealing synthetic targets because there is evidence that they may show unconventional chemical and physical behavior. Here, the authors obtain a large heterometallic zinc-bismuth cluster anion and discover that it bears a metalloid {Zn12} core with four-center bonding and essentially zero-valent character.
机译:由于各种原因,近年来,对包含直接Zn-Zn键的分子的进入变得非常局部。低价有机锌化合物显示出显着的反应性,较大的Zn-Zn键合气相物质表现出绝缘和金属性能的非常异常的共存。然而,由于Zn原子没有显示出凝聚阶段的簇的高趋势,因此到目前为止缺乏在环境条件下产生纯无机金属ZnX单元的合成方法。在这里,我们表明,在室温下用ZnPH2与标称组合物K5Ga2Bi4的高度还原固体的反应产生杂动机簇阴离子[K2ZN20Bi16] 6-。一个24原子聚合物环嵌入了金属体{Zn12}单元。密度泛函理论计算揭示多中心粘合,集群中心的基本零价局势,弱的芳香性。纳米杂涂层的高潜力,杂常结构特征,值得注意的电子临床化和罕见的纳米建筑点。低价锌集群,虽然非常罕见,是吸引人的合成目标,因为有证据表明他们可能表现出非传统的化学和物理行为。在这里,作者获得了大型杂项锌 - 铋簇阴离子,并发现它具有四中心粘接和基本零价值的标志{Zn12}核心。

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