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使用高价碘氧化剂对酚类化合物氧化作用的电化学研究。

Electrochemical Investigation of the Oxidation of Phenolic Compounds Using Hypervalent Iodine Oxidants.

作者信息

Bennett Jason A, Socash Timothy, Khamis N, Justik Michael W

机构信息

School of Science, Penn State Behrend, 4205 College Drive, Erie, Pennsylvania 16563, United States.

出版信息

ACS Omega. 2024 Nov 12;9(47):47361-47367. doi: 10.1021/acsomega.4c09236. eCollection 2024 Nov 26.

Abstract

The chemical oxidation of simple phenolic compounds by the hypervalent iodine reagent [hydroxy(tosyloxy)iodo]benzene (HTIB) was investigated using electrochemical and spectroscopic methods. HTIB oxidized phenol and benzenediol isomers hydroquinone (HQ), catechol, and resorcinol to form various quinone structures. HQ and catechol, two compounds that show reversible electrochemical behavior, exhibited simple oxidative chemistry to their respective quinone structures that could be electrochemically reduced at a glassy carbon electrode. An HTIB:compound ratio of 2:1 resulted in the complete chemical oxidation of these model compounds. However, phenol and resorcinol, two compounds that are known to readily foul electrode surfaces upon their electrochemical oxidation, required a 6:1 HTIB:compound ratio to achieve complete chemical oxidation. The oxidation of resorcinol resulted in a compound that could not be electrochemically reduced; however, the oxidation of phenol from HTIB resulted in an electrochemical redox couple that suggested the preferential formation of benzoquinone, with the possibility of some -quinone also being produced. This work serves as a proof-of-concept method for the possible indirect electrochemical detection of phenolic compounds.

摘要

采用电化学和光谱方法研究了高价碘试剂[羟基(对甲苯磺酰氧基)碘]苯(HTIB)对简单酚类化合物的化学氧化作用。HTIB将苯酚和苯二酚异构体对苯二酚(HQ)、邻苯二酚和间苯二酚氧化,形成各种醌结构。HQ和邻苯二酚这两种表现出可逆电化学行为的化合物,对其各自的醌结构表现出简单的氧化化学性质,这些醌结构可在玻碳电极上进行电化学还原。HTIB与化合物的比例为2:1时,这些模型化合物实现了完全化学氧化。然而,苯酚和间苯二酚这两种已知在电化学氧化时容易污染电极表面的化合物,需要HTIB与化合物的比例为6:1才能实现完全化学氧化。间苯二酚的氧化产物无法进行电化学还原;然而,HTIB对苯酚的氧化产生了一个电化学氧化还原对,表明优先形成苯醌,也可能生成一些邻醌。这项工作为酚类化合物可能的间接电化学检测提供了一种概念验证方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33ed/11603263/da916a1333b0/ao4c09236_0001.jpg

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