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水中碱驱动的氧化铌分子的拆解与重组

Alkali-Driven Disassembly and Reassembly of Molecular Niobium Oxide in Water.

作者信息

Sures Dylan, Segado Mireia, Bo Carles, Nyman May

机构信息

Department of Chemistry , Oregon State University , Corvallis , Oregon 97331-4003 , United States.

Institut Catalá dInvestigació Química (ICIQ), The Barcelona Institute of Science and Technology , Av. Paísos Catalans, 17 , Tarragona , 43007 , Spain.

出版信息

J Am Chem Soc. 2018 Aug 29;140(34):10803-10813. doi: 10.1021/jacs.8b05015. Epub 2018 Jul 17.

Abstract

Counterions are deemed "spectators" in aqueous solutions of cationic or anionic molecular metal-oxo clusters. While pH and concentration drive aqueous metal speciation as a first approximation, the important effect of counterions is usually overlooked and never considered in standard Pourbaix databases. Alkali counterions for polyoxometalate (POM) clusters control solubility with distinct periodic trends, but evidence for alkali control over speciation is ambiguous. Here we show that a simple Nb-POM, [NbO] ({Nb}), converts to oligomers of (H NbO) ({Nb}) upon adding only alkali chloride salts, even in buffered neutral solutions. Raman and X-ray scattering reveal that the rate of {Nb} to {Nb} conversion increases with alkali cation radius and cation concentration. Cation-bridged oligomers of {Nb} ( y = 2,4) are defined by comparing experimental to computed small-angle X-ray scattering spectra. Computational studies and mass spectrometry indicate that the alkalis open the compact {Nb} cluster in conjunction with protonation of a heptamer {Nb} intermediate, in which alkali-{Nb} association at key locations on the cluster initiates the reaction. Computation also explains the alkali periodic trend for {Nb} to {Nb} conversion; larger alkalis more effectively destabilize {Nb}. This periodic trend asserts the hypothesis that Nb-cluster speciation near neutral pH is driven by the alkali cations in the absence of added base or acid. The extremely high solubility of these 3.5 nm polyoxoanion assemblies-2 M Nb at near neutral pH-is both surprising and exploitable for aqueous synthesis of niobate thin films or nanomaterials used in energy and microelectronics applications.

摘要

在阳离子或阴离子分子金属氧簇的水溶液中,抗衡离子被视为“旁观者”。虽然pH值和浓度在初步近似中驱动着水相金属的形态变化,但抗衡离子的重要作用通常被忽视,并且在标准Pourbaix数据库中从未被考虑过。多金属氧酸盐(POM)簇的碱金属抗衡离子以明显的周期性趋势控制溶解度,但碱金属对形态变化的控制证据尚不明确。在这里,我们表明,一种简单的铌 - POM,[NbO] ({Nb}),即使在缓冲中性溶液中,仅加入碱金属氯化物盐后就会转化为(H NbO) ({Nb})的低聚物。拉曼光谱和X射线散射表明,{Nb}到{Nb}的转化率随着碱金属阳离子半径和阳离子浓度的增加而增加。通过将实验小角X射线散射光谱与计算光谱进行比较,确定了{Nb} ( y = 2,4)的阳离子桥连低聚物。计算研究和质谱表明,碱金属与七聚体{Nb}中间体的质子化一起打开了紧密的{Nb}簇,其中碱金属在簇上关键位置与{Nb}的缔合引发了反应。计算还解释了{Nb}到{Nb}转化的碱金属周期性趋势;较大的碱金属更有效地使{Nb}不稳定。这种周期性趋势支持了这样一种假设,即在接近中性pH值时,铌簇的形态变化是由碱金属阳离子驱动的,而无需添加碱或酸。这些3.5纳米的聚氧阴离子组装体在接近中性pH值时具有极高的溶解度(2 M铌),这对于用于能源和微电子应用的铌酸盐薄膜或纳米材料的水相合成来说既令人惊讶又具有可利用性。

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