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首页> 外文期刊>Journal of Molecular Liquids >Kinetics and mechanistics of reaction between silver (I) and hexachloroiridate(IV) in aqueous acidic media: Evidences of formation of binuclear intermediate complex and Ir(0) nanoparticles with orientation on electron-transfer process
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Kinetics and mechanistics of reaction between silver (I) and hexachloroiridate(IV) in aqueous acidic media: Evidences of formation of binuclear intermediate complex and Ir(0) nanoparticles with orientation on electron-transfer process

机译:酸性介质中银(I)和六氯亚甲酸酯(IV)之间反应的动力学和机制:在电子转移过程中形成二核中间络合物和Ir(0)纳米颗粒的形成证据

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摘要

Spectrophotometric techniques has been applied for studying the kinetics and mechanistics between Ag+ and [IrCI6](2-) reaction in aqueous acidic solutions at a constant ionic strength of 1.0 moldm(-3). The naked eyes observation showed that the brownish color of [IrCI6](2-) solution was rapidly vanishing with simultaneous appearance of a new dark-blue color on mixing solution of the oxidant with Ag+ ion electrolyte in either neutral or acidic media. The new color was persisted for a few seconds or minutes depending on the reaction conditions. Then, it began to fading out with time elapsing. This result means that the reaction occurs through two distinct stages. The spectral traces indicated the formation of binuclear intermediate complex at the initial fast stage [Ag+...ClIrCI52-] (with the rate constants k(1) = 1.15 x 10(-2) dm(3) Mol(-1) S-1; k_1 = 7.35 x 10(-5) formation constant (K) = 1.56 x 10(2) dm(3) mol(-1) and pseudo first-order rate constant (k(obs)) = 1.31 x 10(-4) s(-1) at [IrCI6](2-) = 2.2 x 10(-4),[H+] = 1.0 mol dm(-3) and 30 degrees C. The initial rapid part was followed by a subsequent slow stage corresponding to the decomposition of the formed binuclear intermediate in the rate determining step to give rise to the final oxidation products. The formation of such binuclear intermediate was found to be of acid-independent; nature; whereas its decomposition was dependent on the acid concentration with inverse fractional first-order in [H+]. This means that the binuclear decomposition is of acid-inhibition nature. In case of presence of a large excess of [Ag+] over that of [IrCI6](2-), Ir(0) nanoparticles was formed as confirmed by the XRD-spectra and TEM morphology. The kinetic parameters for the formation constants and decomposition rate constants of the binuclear complex have been evaluated and a suitable reaction mechanism for the overall redox reaction is suggested and discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:分光光度技术已应用在1.0 moldm(-3)的恒定离子强度研究的Ag +和在酸性水溶液[IrCI6](2-)反应之间的动力学和mechanistics。肉眼观察表明,[IrCI6](2-)溶液快速与在中性或酸性介质中混合有Ag +离子的电解质的氧化剂的溶液中的新的深蓝色的颜色的同时出现消失的褐色颜色。新的颜色是持续了根据反应条件几秒钟或几分钟。然后,它开始随着时间流逝淡出。该结果意味着,通过发生两个不同的阶段反应。频谱迹线指示在初始阶段快速的双核配合物中间体的形成将[Ag + ... ClIrCI52-](具有速率常数K(1)= 1.15×10(-2)DM(3)分子(-1)s -1; K_1 = 7.35×10(-5)形成常数(K)= 1.56×10(2)DM(3)摩尔(-1)和假一级速率常数(k(OBS))= 1.31×10 (-4)S(-1)[IrCI6](2-)= 2.2×10(-4),[H +] = 1.0摩尔分米(-3)和30摄氏度的初始快速部分之后是对应于分解随后缓慢阶段所形成的双核中的速率确定步骤以产生最终的氧化产物例如双核中间体的形成中间被发现是酸无关;性质;而它的分解是依赖于酸的浓度以在[H +]逆分数一阶,这意味着双核分解是酸抑制性的。大量过量将[Ag +]的存在下的在壳体上的是[IrCI6](2-),铱(0)纳米粒子形成为证实b y中的XRD光谱和TEM形态。的形成常数和双核配合物的分解速率常数的动力学参数已经被评估和建议并讨论了总体氧化还原反应合适的反应机制。 (c)2019 Elsevier B.v.保留所有权利。

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