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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >EARLY STAGES OF THE HYDROLYSIS OF CHROMIUM(III) IN AQUEOUS SOLUTION .10. KINETICS OF FORMATION OF TRIMER FROM MONOMER AND DIMER
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EARLY STAGES OF THE HYDROLYSIS OF CHROMIUM(III) IN AQUEOUS SOLUTION .10. KINETICS OF FORMATION OF TRIMER FROM MONOMER AND DIMER

机译:水溶液中铬(III)水解的早期阶段.10。由单体和二聚体形成三聚体的动力学

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Conversion of chromium(III) monomer and dimer to trimer have been studied in the pH range 3.2-5.1 using a pH-stat facility which monitored the volume of base consumed during reaction at constant pH. The reaction, found to be irreversible, was followed for up to 5% conversion of reactants to ensure that trimer was a major product. The pH dependence of k(obs), after correction for dimerization of monomer and dimer to dimer and tetramer, respectively, has been fitted to an expression which accommodates the three reaction pathways: Cr(OH)(2+) + Cr-2(mu-OH)(2)(OH)(3+) --> trimer [k(11) = (3.13 +/- 0.30) x 10(-4) M(-1) s(-1)]; either Cr(OH)(2)(+) + Cr-2(mu-OH)(2)(OH)(2)(2+) --> ((k(12) less than or equal to 1.16 x 10(-1) M(-1) s(-1)) or Cr(OH)(2)(+) + Cr-2(mu-OH)(2)(OH)(3+) --> trimer (k(21) less than or equal to 2.09 x 10(-1) M(-1) s(-1)); and Cr(OH)(2)(+) + Cr-2(mu-OH)(2)(OH)(2)(2+) --> trimer [k(22) = (3.12 +/- 0.67) M(-1) s(-1)]. Reaction between one monodeprotonated and one doubly deprotonated reactant is 400 times faster than reaction between the two monodeprotonated reactants (k(11)). Double deprotonation of both reactants (k(22)) gave a 10,000-fold increase in rate compared with the monodeprotonated reactants (k(11)). These increases in reactivity on deprotonation are consistent with a common trend observed in other hydrolytic processes of chromium(III). [References: 13]
机译:使用pH调节器研究了铬(III)单体和二聚体向三聚体的转化情况,该设备可监控pH恒定条件下反应过程中消耗的碱量。发现该反应是不可逆的,随后进行至多5%的反应物转化率,以确保三聚体是主要产物。分别校正单体和二聚体分别为二聚体和四聚体的k(obs)的pH依赖性后,已拟合为一个表达式,该表达式可容纳三个反应路径:Cr(OH)(2+)+ Cr-2( mu-OH)(2)(OH)(3+)->三聚体[k(11)=(3.13 +/- 0.30)x 10(-4)M(-1)s(-1)]; Cr(OH)(2)(+)+ Cr-2(mu-OH)(2)(OH)(2)(2+)->(((k(12)小于或等于1.16 x 10 (-1)M(-1)s(-1))或Cr(OH)(2)(+)+ Cr-2(mu-OH)(2)(OH)(3+)->三聚体( k(21)小于或等于2.09 x 10(-1)M(-1)s(-1));和Cr(OH)(2)(+)+ Cr-2(mu-OH)(2 )(OH)(2)(2+)->三聚体[k(22)=(3.12 +/- 0.67)M(-1)s(-1)]。一种单去质子化反应物和一种双去质子化反应物之间的反应是比两种单质子化的反应物(k(11))的反应快400倍,两种单质子化的反应物(k(22))的双质子化比单质子化的反应物(k(11))增加了10,000倍。脱质子反应性的变化与其他铬(III)水解过程中观察到的普遍趋势一致[参考文献:13]

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