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首页> 外文期刊>Journal of solid state electrochemistry >Current examples of practical and fundamental applications of DC polarography
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Current examples of practical and fundamental applications of DC polarography

机译:直流极谱仪实际和基本应用的当前示例

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Examples of recent applications-applied, analytical, and fundamental are given. For these types of applications, an understanding of at least the number of electrons and protons transferred and the sequences of electron transfers and chemical reactions is essential. Polarography can be used for the determination of the active component in tablets and injection solutions, where it offers speed and sensitivity of the analytical method. Electroactive species can also be determined in heterogeneous systems without pre-separation. This has been taken advantage of in the investigation of reactions of bile salts with heavy metal ions or of binding of pesticides and other toxins on lignin. Polarography can also be used in the investigation of alkaline cleavage of lignin under mild conditions. Kinetics of this cleavage was used as a tool in proving that humic acids are not natural products. Among fundamental applications belong proofs of limited delocalization in groupings > C=N-N=C <, of diprotonation of hydrazones and oximes at the electrode surface, as well as of formation of imines as intermediates in reductions of hydrazones and oximes. Simultaneous determination of benzaldehyde and its hydrazone enabled providing experimental evidence for formation of carbinolamines as reaction intermediates and interpretation of the pH dependence of the equilibrium constant of this reaction. Differences in hydration of three isomeric phthalaldehydes are discussed as well as the covalent hydration of 1,2,4- and 1,3,5-triazines and pyrimidines. The omega,omega,omega-trifluoroacetophenone oxime the C=N bond is covalently hydrated.
机译:给出了最近的应用示例,包括应用,分析和基础。对于这些类型的应用,至少要了解转移的电子和质子的数量以及电子转移和化学反应的顺序是至关重要的。极谱法可用于测定片剂和注射液中的活性成分,从而提供分析方法的速度和灵敏度。还可以在不进行预分离的情况下在异质系统中确定电活性物质。在研究胆盐与重金属离子的反应或在木质素上结合农药和其他毒素时,已经利用了这一点。极谱法也可用于在温和条件下研究木质素的碱性裂解。将该裂解的动力学用作证明腐殖酸不是天然产物的工具。在基本的应用中,有以下证明:在组中> C = N-N = C <的有限离域,在电极表面的hydr和肟的双质子化以及在of和肟的还原中形成亚胺作为中间体。同时测定苯甲醛及其,为形成甲醇胺作为反应中间体提供了实验证据,并解释了该反应平衡常数的pH依赖性。讨论了三种异构苯二醛的水合差异以及1,2,4-和1,3,5-三嗪和嘧啶的共价水合。 ω,ω,ω-三氟苯乙酮肟的C = N键是共价水合的。

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