Institute of Organic Chemistry and Biochemistry, Flemingovo náměstí 2, 166 10 Prague 6, Czech Republic.
Rapid Commun Mass Spectrom. 2012 Oct 15;26(19):2287-94. doi: 10.1002/rcm.6352.
Heavy metals are both a problem for the environment and an important resource for industry. Their selective extraction by means of organic ligands therefore is an attractive topic. The coordination of three thiacrown ethers to late 3d-metal ions was investigated by a combination of electrospray ionization mass spectrometry (ESI-MS) and electron paramagnetic resonance (EPR).
The mass spectrometric experiments were carried out in an ion trap mass spectrometer with an ESI source. Absolute binding constants were estimated by comparison with data for 18-crown-6/Na(+). EPR spectroscopy was used as a complementary method for investigating the Cu(I) /Cu(II) redox couple.
The study found that thiacrown ethers preferentially bind traces of copper even at an excess of other metal ions (Co(II), Ni(II), and Zn(II)). The absolute association constants of the Cu(I) complexes were about 10(8) M(-1), and about two orders of magnitude lower for the other 3d-metal cations. The EPR spectra demonstrated that the reduction from Cu(II) to Cu(I) upon formation of the (thiacrown)Cu species takes place in solution.
ESI-MS demonstrated that the three thiacrown ligands examined had high binding constants as well as good selectivities for copper(I) at low concentrations, and in the presence of other metal ions. By a combination of ESI-MS and EPR spectrometry it was shown that the reduction from Cu(II) to Cu(I) occurred in solution.
重金属既是环境问题又是工业的重要资源。因此,通过有机配体选择性地提取它们是一个有吸引力的课题。通过电喷雾电离质谱(ESI-MS)和电子顺磁共振(EPR)的组合,研究了三种硫代冠醚与后 3d 金属离子的配位。
质谱实验在带有 ESI 源的离子阱质谱仪中进行。通过与 18-冠-6/Na(+)的数据进行比较,估算了绝对结合常数。EPR 光谱被用作研究 Cu(I)/Cu(II)氧化还原对的补充方法。
研究发现,硫代冠醚即使在过量的其他金属离子(Co(II)、Ni(II)和 Zn(II))存在下,也优先结合痕量的铜。Cu(I)配合物的绝对缔合常数约为 10(8) M(-1),而其他 3d 金属阳离子的缔合常数约低两个数量级。EPR 光谱表明,在形成(thiacrown)Cu物种时,Cu(II)还原为 Cu(I)在溶液中发生。
ESI-MS 表明,在所研究的三种硫代冠醚配体中,即使在低浓度和存在其他金属离子的情况下,对铜(I)也具有高的结合常数和良好的选择性。通过 ESI-MS 和 EPR 光谱的组合,表明 Cu(II)还原为 Cu(I)在溶液中发生。