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使用甾体取代的活化剂对过氧草酸酯化学发光中化学激发步骤的研究。

Studies on the chemiexcitation step in peroxyoxalate chemiluminescence using steroid-substituted activators.

作者信息

Silva Sandra M, Wagner Kerstin, Weiss Dieter, Beckert Rainer, Stevani Cassius V, Baader Wilhelm J

机构信息

Instituto de Química, Universidade de São Paulo, São Paulo, Brazil.

出版信息

Luminescence. 2002 Nov-Dec;17(6):362-9. doi: 10.1002/bio.694.

Abstract

The peroxyoxalate reaction is utilized in a wide variety of analytical applications; however, its mechanism is still not very well understood, especially with respect to the excitation step, where the 'chemical energy' is transformed into 'excitation energy'. This base-catalysed reaction of activated oxalic phenyl esters with hydrogen peroxide in the presence of highly fluorescent aromatic hydrocarbons with low oxidation potentials is the only known chemiluminescence system for which exists experimental evidence for the occurrence of the intermolecular chemically initiated electron exchange luminescence (CIEEL) mechanism of proven high efficiency for excited state formation. We report here the singlet quantum yields and relative rate constants of the excitation step (k(CAT)/k(D)), obtained in the peroxyoxalate reaction, utilizing steroid-substituted oxazolinylidenes as activators. In agreement with the CIEEL mechanism, a linear correlation of ln(k(CAT)/k(D)) with the oxidation potential of the activators is obtained, and the singlet quantum yields can be rationalized in terms of the free energy balance of the back electron transfer, leading to the formation of the activator's excited state. Thus, these results contribute to the experimental validation of the widely employed, thus still controversial, CIEEL mechanism.

摘要

过氧草酸酯反应被广泛应用于各种分析应用中;然而,其反应机制仍未得到很好的理解,尤其是在激发步骤方面,即“化学能”转化为“激发能”的过程。在具有低氧化电位的高荧光芳烃存在下,活化的草酸苯酯与过氧化氢发生的这种碱催化反应,是唯一已知的化学发光体系,对于该体系,存在分子间化学引发电子交换发光(CIEEL)机制发生的实验证据,该机制被证明在激发态形成方面具有高效率。我们在此报告了在过氧草酸酯反应中利用甾体取代的恶唑啉亚基作为活化剂所获得的激发步骤的单线态量子产率和相对速率常数(k(CAT)/k(D))。与CIEEL机制一致,ln(k(CAT)/k(D))与活化剂的氧化电位呈线性相关,并且单线态量子产率可以根据反向电子转移的自由能平衡来合理化,从而导致活化剂激发态的形成。因此,这些结果有助于对广泛应用但仍存在争议的CIEEL机制进行实验验证。

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