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Vanadium-Schiff base complexes as catalysts for the four-electron reduction of dioxygen.

机译:钒-席夫碱络合物作为双氧四电子还原的催化剂。

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摘要

The coordination chemistry and electrochemistry of complexes of vanadium(III, IV, V) with salen (H2salen = N,N-ethylenebis-(salicylideneamine)) were first examined. The origin of the puzzling results reported in previous reports in the literature was identified using microelectrode voltammetry and the modifications required are specified. VO(salen) was found to disproportionate in acidified acetonitrile. The equilibrium constant for this disproportionation reaction was measured. The stoichiometry and kinetics of the reaction between O2 and the V(III)-salen complex were examined and a possible mechanism for this four-electron reduction of O2 is suggested.; The study was then expanded to vanadium complexes with fifteen Schiff base (SB) ligands analogous to salen. Electrochemical and spectral characteristics of the complexes were evaluated and compared. With several of the ligands the V(III) complexes are much more stable in the presence of acid than is the complex with salen. Equilibrium constants for the disproportionation of the oxovanadium (IV) complexes were evaluated. The vanadium(III) complexes reduce dioxygen to form two oxo ligands. In the presence of acid some of the complexes investigated participate in a catalytic electroreduction of dioxygen.; The otherwise slow reaction between O2 and decamethylferrocene or VIII(SB)+ is significantly accelerated if these three reactants are present. In the absence of acid the reduction of O2 proceeds stoichiometrically to yield the two oxo groups in (SB)V IVO. In the presence of acid the reaction becomes catalytic and the O2 is reduced to H2O. Preliminary results on the kinetics of the O2 reduction was presented.; Electrochemical study on vanadium-naphophen (naphophen = N, N-1, 2-phenylenebis-(2-hydroxy-1-naphthylideneiminate)) complexes in acetonitrile containing excess acetic anhydride was also conducted. V IVO(naphophen) was found to undergo deoxygenation by two equivalents of acid to give VIV(naphophen)2+, which had not persisted in previous study. Several reactions proposed previously to describe the chemistry of vanadium-Schiff base complexes in acetonitrile were directly demonstrated with this species. The oxovanadium-naphophen complexes were found to spontaneously adsorb on EPG electrodes. They also exhibited remarkable stability towards acid after adsorption. Their surface electrochemical behavior was studied and characterized using cyclic voltammetry.
机译:钒(III,IV,V)与Salen(H 2 salen = N,N '-亚乙基双-(水杨基亚胺)的配合物的配位化学和电化学检查。使用微电极伏安法鉴定了先前文献中报道的令人费解的结果的来源,并指明了所需的修饰。发现VO(salen)在酸化的乙腈中不成比例。测量该歧化反应的平衡常数。研究了O 2 与V(III)-salen配合物之间反应的化学计量和动力学,并提出了O 2 四电子还原的可能机理。 。;然后,将研究扩展到具有十五个类似于Salen的席夫碱(SB)配体的钒配合物。评估并比较了配合物的电化学和光谱特性。在存在酸的情况下,具有几种配体的V(III)配合物比与salen的配合物更稳定。评估氧钒(IV)配合物歧化的平衡常数。钒(III)配合物还原双氧形成两个氧代配体。在酸的存在下,研究的某些配合物参与了双氧的催化电还原。如果存在这三种反应物,则O 2 与十甲基二茂铁或V III (SB) + 之间的缓慢反应将显着加速。在不存在酸的情况下,O 2 的还原以化学计量方式进行,从而在(SB)V IV O中产生两个氧代基团。在酸的存在下,反应变为催化反应,O 2 还原为H 2 O。给出了O 2 还原动力学的初步结果。在含过量乙酸酐的乙腈中,对钒-萘酚(萘酚= N,N ' -1,2-亚苯基双-(2-羟基-1-萘二甲酰亚胺))络合物进行了电化学研究。发现V IV O(萘酚)被两当量的酸脱氧,得到V IV (萘酚) 2 + 。坚持以前的研究。该物种直接证明了先前提出的描述钒-席夫碱络合物在乙腈中化学反应的几种反应。发现氧钒-萘酚配合物自发吸附在EPG电极上。吸附后它们还表现出对酸的显着稳定性。研究了它们的表面电化学行为并使用循环伏安法对其进行了表征。

著录项

  • 作者

    Liu, Zenghe.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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