首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Binding small molecules and ions to [Fe4S4O2](2-) modulates rate of protonation of the cluster
【24h】

Binding small molecules and ions to [Fe4S4O2](2-) modulates rate of protonation of the cluster

机译:将小分子和离子与[Fe4S4O2](2-)结合可调节簇的质子化速率

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The mechanism of the acid-catalyzed substitution reaction of the terminal chloro-ligands in [Fe4S4Cl4](2-) by PhS- in the presence of NHBu(n)3(+) involves rate-limiting proton transfer from NHBu(n)3(+) to the cluster (k(o) = 490 +/- 20 dm(3) mol(-1) s(-1)). A variety of small molecules and ions (L = substrate = Cl-, Br-, I-, RNHNH2 (R = Me or Ph), Me2NNH2, HCN, NCS-, N-3(-), (BuNC)-N-t or pyridine) bind to [Fe4S4Cl4](2-) and this affects the rate of subsequent protonation of [Fe4S4Cl(L)](n-). Where the kinetics allow, the equilibrium constants for the substrates binding to [Fe5S4Cl](2-) (K-L) and the rates of proton transfer from NHBu(n)3(+) to [Fe-4 S4Cl4(L)r(k(0)(L)) have been determined. The results indicate the following general features. (i) Bound substrates increase the rate of protonation of the cluster, but the rate increase is modest (k(o)(L)/k(o) = 1.6 to >72). (ii) When K-L is small, so is k(o)(L)/k(o). (iii) Binding substrates which are good n-donors or good pi-acceptors lead to the largest k(0)(L)/k(0). This behaviour is discussed in terms of the recent proposal that protonation of [Fe4S4Cl4](2-) at a mu(3)-S, is coupled to concomitant Fe-(mu(3)-SH) bond elongation/cleavage.
机译:在NHBu(n)3(+)存在下PhS-催化[Fe4S4Cl4](2-)中末端氯配体的酸催化取代反应机制涉及从NHBu(n)3进行限速质子转移(+)到群集(k(o)= 490 +/- 20 dm(3)mol(-1)s(-1))。各种小分子和离子(L =底物= Cl-,Br-,I-,RNHNH2(R = Me或Ph),Me2NNH2,HCN,NCS-,N-3(-),(BuNC)-Nt或吡啶)与[Fe4S4Cl4](2-)结合,从而影响[Fe4S4Cl(L)](n-)的质子化速率。在动力学允许的情况下,底物与[Fe5S4Cl](2-)(KL)结合的平衡常数以及质子从NHBu(n)3(+)到[Fe-4 S4Cl4(L)r(k)的转移速率(0)(L))已确定。结果表明以下一般特征。 (i)结合的底物增加簇的质子化速率,但速率增加不大(k(o)(L)/ k(o)= 1.6至> 72)。 (ii)当K-L小时,k(o)(L)/ k(o)也是。 (iii)好的n-供体或好的pi-受体的结合底物导致最大的k(0)(L)/ k(0)。根据最近的提议讨论了此行为,该提议是[Fe4S4Cl4](2-)在mu(3)-S的质子化与伴随的Fe-(mu(3)-SH)键的延长/断裂偶联。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号