首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structural Evolution of Iridium Oxide Cluster Anions IrnOm- (n=5-8) with Sequential Oxidation: Binding Mode of O Atoms and Ir Framework
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Structural Evolution of Iridium Oxide Cluster Anions IrnOm- (n=5-8) with Sequential Oxidation: Binding Mode of O Atoms and Ir Framework

机译:顺序氧化氧化铱簇阴离子Irnom-(n = 5-8)的结构演变:O原子和红外框架的结合模式

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Geometric structures of small cluster anions of iridium oxide IrnOm (n = 5-8, m = 014) were investigated by ion mobility mass spectrometry (IMMS) and theoretical calculation to clarify the evolutional behavior of the binding modes of the O atoms and the motif of the Ir frameworks as a function of m. The collision cross sections (CCSs) for n = 5-7 determined by IMMS showed a monotonic increase with m, whereas those for n = 8 dropped abruptly by similar to 10% at m = 11, which otherwise gradually increased with m. For n = 5, detailed comparison between the experimental CCS values and those calculated for various structural isomers revealed that the O atoms in Ir5Om- are preferentially bonded to terminal sites of the Ir-5(-) cores throughout m = 1-8: the Ir-5(-) cores retained compact motifs up to m = 5 but distorted significantly for m = 6-8. The experimental CCS values for Ir6O6- and Ir7O7- were also explained by on-top binding of O atoms while retaining the motifs of the Ir frameworks. The CCS values for n = 8 suggest that the O atoms are sequentially bonded to terminal sites of the cubic Ir-8 frameworks for m = 1-6 and of the deformed Ir8 frameworks for m = 7-11. These on-top binding modes of the O atoms on small Ir clusters are in sharp contrast to the mu(2) mode of the O atoms at bridge sites on the clusters of other transition metals and are ascribed to non-face-centered cubic (fcc) Ir frameworks. The sudden drop in the CCS values of Ir8Om- at m = 11 was associated with bond breakage in the Ir framework induced by transition of the binding mode of O atoms from an on-top motif to a mu(2) bridging motif. These results suggest that the small Ir clusters exhibit novel oxidation catalysis by taking advantage of the unique chemical properties of O atoms adsorbed on the on-top sites on non-fcc Ir clusters.
机译:通过离子迁移率质谱(Immm)研究氧化铱铱(n = 5-8,m = 014)的小簇混苯的几何结构,并理解计算,以阐明O原子和基序的结合模式的进化行为IR框架作为m的函数。由Immm确定的N = 5-7的碰撞横截面(CCS)显示单调的含量,而n = 8的那些突然滴加,在M = 11处突然下降,否则用m逐渐增加。对于n = 5,实验CCS值与各种结构异构体计算的那些的详细比较显示IR5M中的O原子 - 优先键合到整个M = 1-8的IR-5( - )核的末端位点: IR-5( - )核心保留紧凑型电池,高达m = 5但是对于m = 6-8,显着扭曲。 IR6O6和IR7O7的实验CCS值也通过O原子的顶部结合来解释,同时保留IR框架的主题。 N = 8的CCS值表明O原子顺序地键合到M = 1-6的立方IR-8框架的终端位点,并且对于M = 7-11的变形的IR8框架的终端位点。小红外簇上的O原子的这些顶部结合模式与其他过渡金属的簇的桥接位点上的O原子的MU(2)模式鲜明对比,并且归因于非面对的立方( FCC)IR框架。 IR8M-在M = 11处的CCS值中的突然下降与通过将O原子的结合模式转变为MU(2)桥接基序的A原子的结合模式转变而引起的IR框架中的粘合断裂相关。这些结果表明,通过利用在非FCC IR簇上的顶部位点上吸附的O原子的独特化学性质,小红外簇表现出新的氧化催化。

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