Effects of pH on the differential absorbance spectra, d-d transition bands and structural properties of copper complexes with humic substances and model compounds.

Chenyang Zhang, Po-An Chen, Andrey M Kuznetsov, Alexey N Masliy, Mingquan Yan, Gregory V Korshin
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Abstract

Interactions between metal cations, notably Cu(II), and humic substances (HS) affect their mobility, bioavailability, and toxicity. This necessitates a molecular-level determination of the nature of HS functional groups binding Cu(II) (Cu-HS) and effects of pH on them. This study investigates the pH effects on the spectroscopic and structural properties of the complexes of Cu(II) with HS and representative model compounds using differential absorbance spectroscopy (DAS), examination of the properties of the d-d transition band characteristic for Cu(II) ions, and quantum chemical (QC) calculations. DAS of Cu-HS show distinct bands at 240, 275, 310 and 400 nm, while absorbance features located from 600 to 800 nm correspond to the d-d transitions in Cu(II). Similar features appear in copper complexes with the model compounds of salicylic acid (Cu-Sal) and poly(4-styrenesulfonic acid-co-maleic acid) (Cu-PSM). Increasing pH resulted in consistent changes of the DAS and the d-d band of Cu(II) which exhibited a hypsochromic shift and increased intensity. Deconvolution of the d-d bands into discrete Gaussian bands was indicative of transitions between dominant species at increasing pH. Cu-Sal and Cu-PSM structures that were modeled successfully by QC calculations. These results demonstrate the sensitivity of DAS spectra and d-d band to the modes of Cu(II) binding by HS and open a possibility of further elucidation of the functional groups engaged in the binding of heavy metals by HS.

pH 值对腐殖质和模型化合物铜络合物的差吸收光谱、d-d 过渡带和结构特性的影响
金属阳离子(尤其是铜(II))与腐殖质(HS)之间的相互作用会影响它们的流动性、生物利用率和毒性。这就需要在分子水平上确定结合 Cu(II)(Cu-HS)的腐殖质官能团的性质以及 pH 值对它们的影响。本研究采用差分吸光度光谱法(DAS)、Cu(II) 离子特有的 d-d 过渡带性质检测和量子化学计算,研究了 pH 值对 Cu(II) 与 HS 和代表性模型化合物复合物的光谱和结构性质的影响。Cu-HS 的 DAS 在 240、275、310 和 400 纳米波长处显示出明显的条带,而位于 600 至 800 纳米波长处的吸光特征则与 Cu(II) 的 d-d 过渡带相对应。铜与水杨酸(Cu-Sal)和聚(4-苯乙烯磺酸-共马来酸)(Cu-PSM)模型化合物的络合物也出现了类似的特征。随着 pH 值的升高,DAS 和 Cu(II) 的 d-d 波段发生了一致的变化,呈现出低色移和强度增加的现象。将 d-d 波段分解为离散的高斯波段表明,在 pH 值升高时,主要物种之间会发生转变。通过 QC 计算成功模拟了 Cu-Sal 和 Cu-PSM 结构。这些结果证明了 DAS 光谱和 d-d 带对 HS 结合 Cu(II) 模式的敏感性,并为进一步阐明参与 HS 结合重金属的官能团提供了可能。
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