Leggett C J, Parker B F, Teat S J, Zhang Z, Dau P D, Lukens W W, Peterson S M, Cardenas A J P, Warner M G, Gibson J K, Arnold J, Rao L
Chemical Sciences Division , Lawrence Berkeley National Laboratory , 1 Cyclotron Road , Berkeley , CA 94720 , USA . Email:
Department of Chemistry , University of California - Berkeley , Berkeley , CA 94720 , USA.
Chem Sci. 2016 Apr 1;7(4):2775-2786. doi: 10.1039/c5sc03958d. Epub 2016 Jan 14.
A non-oxido V(v) complex with glutaroimide-dioxime (HL), a ligand for recovering uranium from seawater, was synthesized from aqueous solution as Na[V(L)]·2HO, and the structure determined by X-ray diffraction. It is the first non-oxido V(v) complex that has been directly synthesized in and crystallized from aqueous solution. The distorted octahedral structure contains two fully deprotonated ligands (L) coordinating to V, each in a tridentate mode the imide N ( = 1.96 Å) and oxime O atoms ( = 1.87-1.90 Å). Using O-labelled vanadate as the starting material, concurrent O/V/H/C NMR, in conjunction with ESI-MS, unprecedentedly demonstrated the stepwise displacement of the oxido V[double bond, length as m-dash]O bonds by glutaroimide-dioxime and verified the existence of the "bare" V/glutaroimide-dioxime complex, [V(L)], in aqueous solution. In addition, the crystal structure of an intermediate 1 : 1 V(v)/glutaroimide-dioxime complex, [VO(HL)], in which the oxido bonds of vanadate are only partially displaced, corroborates the observations by NMR and ESI-MS. Results from this work provide important insights into the strong sorption of vanadium on poly(amidoxime) sorbents in the recovery of uranium from seawater. Also, because vanadium plays important roles in biological systems, the syntheses of the oxido and non-oxido V complexes and the unprecedented demonstration of the displacement of the oxido V[double bond, length as m-dash]O bonds help with the on-going efforts to develop new vanadium compounds that could be of importance in biological applications.
合成了一种含戊二酰亚胺二肟(HL)的非氧化态V(v)配合物,HL是一种用于从海水中回收铀的配体,该配合物以Na[V(L)]·2H₂O的形式从水溶液中合成,并通过X射线衍射确定了其结构。这是首个直接在水溶液中合成并结晶的非氧化态V(v)配合物。畸变的八面体结构包含两个以三齿模式与V配位的完全去质子化配体(L),即酰亚胺N(键长 = 1.96 Å)和肟O原子(键长 = 1.87 - 1.90 Å)。以¹⁸O标记的钒酸盐为起始原料,¹⁸O/V/H/C NMR与电喷雾电离质谱(ESI-MS)相结合,前所未有地证明了戊二酰亚胺二肟逐步取代氧化态V=O键,并证实了“裸”V/戊二酰亚胺二肟配合物[V(L)]在水溶液中的存在。此外,一种中间的1∶1 V(v)/戊二酰亚胺二肟配合物[VO(HL)]的晶体结构,其中钒酸盐的氧化态键仅被部分取代,证实了NMR和ESI-MS的观察结果。这项工作的结果为从海水中回收铀时钒在聚(偕胺肟)吸附剂上的强吸附提供了重要见解。而且,由于钒在生物系统中发挥着重要作用,氧化态和非氧化态V配合物的合成以及氧化态V=O键取代的前所未有的证明有助于正在进行的开发可能在生物应用中具有重要意义的新型钒化合物的工作。