Morohashi Naoya, Kurusu Yu, Akasaka Kosuke, Hattori Tetsutaro
Department of Biomolecular Engineering, Graduate School of Engineering, Tohoku University 6-6-11 Aramaki-Aoba, Aoba-ku Sendai 980-8579 Japan
RSC Adv. 2020 Sep 28;10(58):35473-35479. doi: 10.1039/d0ra05339b. eCollection 2020 Sep 21.
The extraction ability of 1,3-diaminocalix[4]arene (2: HL) toward platinum group metals (PGMs) has been investigated, which revealed that 2 is able to extract Pd(ii) and Pt(ii) from hydrochloric acid different extraction modes. The extraction species for Pd(ii) and Pt(ii) are [PdL] and [PtCl(HL)], respectively, as evidenced by equilibrium analysis and X-ray crystallography. In [PdL], the two phenoxide oxygens and two amino nitrogens of L coordinate to the Pd ion. On the other hand, in [PtCl(HL)], two anionic trichloro complexes PtCl are sandwiched between two HL, in which one amino nitrogen directly coordinates to a PtCl species and another protonated amino group forms an ion pair with another PtCl . Utilizing the different extraction modes, switching of the extraction selectivity has been achieved in the competitive extraction between Pd(ii) and Pt(ii) by varying the concentrations of H and Cl in the aqueous phase. Finally, from the extracted organic phase, back-extraction of Pd(ii) and Pt(ii) was easily performed, respectively.
研究了1,3 - 二氨基杯[4]芳烃(2: HL)对铂族金属(PGMs)的萃取能力,结果表明2能够通过不同的萃取模式从盐酸中萃取Pd(ii)和Pt(ii)。通过平衡分析和X射线晶体学证明,Pd(ii)和Pt(ii)的萃取物种分别为[PdL]和[PtCl(HL)]。在[PdL]中,L的两个酚氧基氧原子和两个氨基氮原子与Pd离子配位。另一方面,在[PtCl(HL)]中,两个阴离子三氯配合物PtCl夹在两个HL之间,其中一个氨基氮原子直接与一个PtCl物种配位,另一个质子化氨基与另一个PtCl形成离子对。利用不同的萃取模式,通过改变水相中H和Cl的浓度,在Pd(ii)和Pt(ii)的竞争萃取中实现了萃取选择性的切换。最后,分别从萃取的有机相中轻松进行了Pd(ii)和Pt(ii)的反萃取。