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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Rates and mechanisms of oxygen exchanges between sites in the AlO4Al12(OH)(24)(H2O)(12)(7+)(aq) complex and water: Implications for mineral surface chemistry
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Rates and mechanisms of oxygen exchanges between sites in the AlO4Al12(OH)(24)(H2O)(12)(7+)(aq) complex and water: Implications for mineral surface chemistry

机译:AlO4Al12(OH)(24)(H2O)(12)(7 +)(aq)配合物与水之间的位置之间的氧交换速率和机理:对矿物表面化学的影响

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摘要

Rate coefficients for steady exchange of oxygens between sites in the AlO4Al12(OH)(24)(H2O)(12)(7+)(aq) (Al-13) complex and bulk solution were determined over the temperature range of 9-19 degrees C and 4.6 < pH < 5.4 using O-17-NMR. The molecule has 12 equivalent water molecules (eta(1)-OH2 sites), two structurally distinct hydroxyl bridges (mu(2)-OH sites), and four coordinated oxo groups (mu(4)-O sites). The rate coefficients for exchange of the 12 coordinated water molecules on the complex at 298 K are: k(ex)(298) = 1100 (+/- 300) s(-1), Delta H-double dagger = 53 (+/- 12) kJ mol(-1) kJ mol(-1), and Delta S-double dagger = -7 (+/- 25) J mol(-1) K-1 and fall within the range measured for dissolved aluminum monomers. The two hydroxyl bridges in the Al-13 complex differ in their positions relative to the mu(4)-O sites but have identical nearest neighbors (two aluminum, one hydrogen) and virtually identical bond lengths to aluminums. The rates of isotopic exchange, however, differ considerably and are independent of pH to within the experimental uncertainties. Rate coefficients for exchange of the less-reactive hydroxyl are k(ex)(298) = 1.6 (+/- 0.1) (.) 10(-5) s(-1), with Delta H-double dagger = 104 (+/- 20) kJ mol(-1) and Delta S-double dagger = 5 (+/- 4) J mol(-1) K-1. These rate parameters compare well with those for uncatalyzed dissociation of small hydroxy-bridged metal complexes, such as dimers. The rate parameters for the more reactive hydroxyl: k(ex)(298) = 1.6 (+/- 0.4) (.) 10(-2) s(-1), Delta H-double dagger = 202 (+/- 23) kJ mol(-1) and Delta S-double dagger = 403 (+/- 43) J mol(-1) K-1, are inconsistent with previous work and suggest that an unidentified reaction may be involved in a precursor step. No steady exchange of the mu(4)-O site was observed over several hundreds of hours of reaction. We postulate a mechanism for dissolution of the molecule that requires protonation of the mu(4)-O site and hydration of the central AlO4 unit as the rate-controlling step. Furthermore, the measured rates of exchange of eta(1)-OH2 sites also allow us to constrain solvolysis at structurally similar aluminum (hydr)oxide mineral surfaces. Copyright (C) 2000 Elsevier Science Ltd. [References: 41]
机译:在9-19的温度范围内确定AlO4Al12(OH)(24)(H2O)(12)(7 +)(aq)(Al-13)配合物和本体溶液中位点之间氧稳定交换的速率系数使用O-17-NMR测得的C值和4.6 H <5.4。该分子具有12个等效的水分子(eta(1)-OH2位置),两个结构上不同的羟基桥(mu(2)-OH位置)和四个配位的氧代基团(mu(4)-O位置)。 298 K时在复合物上交换12个配位水分子的速率系数为:k(ex)(298)= 1100(+/- 300)s(-1),Delta H-双匕首= 53(+ / -12)kJ mol(-1)kJ mol(-1)和Delta S-双匕首= -7(+/- 25)J mol(-1)K-1并在溶解铝单体的测量范围内。 Al-13配合物中的两个羟基桥相对于mu(4)-O位点的位置不同,但具有相同的最近邻点(两个铝,一个氢),并且与铝的键长基本相同。但是,同位素交换速率差异很大,并且在实验不确定性范围内与pH无关。反应性较低的羟基交换的速率系数为k(ex)(298)= 1.6(+/- 0.1)(。)10(-5)s(-1),ΔH-双匕首= 104(+ 20)kJ mol(-1)和Delta S-双匕首= 5(+/- 4)J mol(-1)K-1。这些速率参数与较小的羟基桥联金属配合物(例如二聚体)的未催化解离参数比较。更具反应性的羟基的速率参数:k(ex)(298)= 1.6(+/- 0.4)(。)10(-2)s(-1),Delta H-双匕首= 202(+/- 23 )kJ mol(-1)和Delta S-双匕首= 403(+/- 43)J mol(-1)K-1与先前的工作不一致,表明前驱物步骤中可能涉及未知的反应。在数百小时的反应中,未观察到mu(4)-O站点的稳定交换。我们提出了一种溶解分子的机制,该机制需要mu(4)-O位置的质子化和中央AlO4单元的水合作为速率控制步骤。此外,所测得的eta(1)-OH2位置的交换速率还使我们能够在结构相似的铝(氢)氧化物矿物表面上限制溶剂分解。版权所有(C)2000 Elsevier Science Ltd. [引用:41]

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