首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Investigation of the pronounced medium effects observed in the voltammetry of the highly charged lacunary anions [alpha-SiW11O39](8-) and [alpha-PW11O39](7-)
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Investigation of the pronounced medium effects observed in the voltammetry of the highly charged lacunary anions [alpha-SiW11O39](8-) and [alpha-PW11O39](7-)

机译:伏安法测定高电荷阴阳离子[α-SiW11O39](8-)和[α-PW11O39](7-)的明显介质效应

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摘要

A detailed study is reported of the influence of protons, metal cations, and media on the redox chemistry of lacunary anions [R-SiW11O39](8-) and [R-PW11O39](7-) of high formal negative charge. Each anion displayed a single chemically reversible one-electron reduction process in carefully dried aprotic CH3CN solution. This process was detected at very negative potentials just prior to the solvent limit. Addition of 0.3 equiv of acid gave rise to a new reduction process at considerably less negative potentials, which is attributed to formation of the protonated species [SiW11O38(OH)](7-) and [PW11O38(OH)](6-). Voltammograms derived from simulations based on a double-square scheme are in excellent agreement with experiment. Previous data reported the presence of several processes in CH3CN and appear to have been influenced by the presence of protons and/or adventitious water. Not surprisingly, protonation reactions coupled to charge transfer contribute significantly to the voltammetry of these lacunary anions in buffered aqueous media over the pH range 2-6. A multi-square-scheme mechanism allowed the essential thermodynamic and kinetic features of this system to be captured and an assessment of the relative significance of possible individual pathways. The high formal anionic charges of [SiW11O39](8-) and [PW11O39](7-) appear to provide highly basic reduced forms that are able to abstract protons from water to produce protonated species which are reduced at potentials more than a volt less negative than those for the processes [SiW11O39](8-/9-) and [PW11O39](7-/8-) found in dry aprotic media.
机译:一份详细的研究报道了质子,金属阳离子和介质对高形式负电荷的阴阳离子[R-SiW11O39](8-)和[R-PW11O39](7-)的氧化还原化学的影响。在精心干燥的非质子CH3CN溶液中,每个阴离子都显示出一个化学可逆的单电子还原过程。在溶剂极限之前,以非常负的电势检测到此过程。添加0.3当量的酸在负电位明显较低的情况下产生了新的还原过程,这归因于质子化物质[SiW11O38(OH)](7-)和[PW11O38(OH)](6-)的形成。从基于双平方方案的模拟得出的伏安图与实验非常吻合。先前的数据报道了CH3CN中存在多个过程,并且似乎已受到质子和/或不定水的影响。毫不奇怪,在2-6的pH范围内,与电荷转移偶联的质子化反应显着地促进了这些水合阴离子的伏安法。多方机制可以捕获该系统的基本热力学和动力学特征,并评估可能的单个途径的相对重要性。 [SiW11O39](8-)和[PW11O39](7-)的高形式阴离子电荷似乎提供了高度碱性的还原形式,该形式能够从水中提取质子以产生质子化的物种,这些质子在电势下降低了一个伏特以下。与在干燥的非质子介质中发现的[SiW11O39](8- / 9-)和[PW11O39](7- / 8-)过程相比,结果为负数。

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