Iida Masayasu, Baba Chihiro, Inoue Michiko, Yoshida Hibiki, Taguchi Eiji, Furusho Hirotoshi
Department of Chemistry, Nara Women's University, Kita-uoya-nishi-machi, Nara 630-8506, Japan.
Chemistry. 2008;14(16):5047-56. doi: 10.1002/chem.200701764.
We have prepared novel ionic liquids of bis(N-2-ethylhexylethylenediamine)silver(I) nitrate ([Ag(eth-hex-en)(2)]NO(3) and bis(N-hexylethylenediamine)silver(I) hexafluorophosphate ([Ag(hex-en)(2)]PF(6)), which have transition points at -54 and -6 degrees C, respectively. Below these transition temperatures, both the silver complexes assume amorphous states, in which the extent of the vitrification is larger for the eth-hex-en complex than for the hex-en complex. The diffusion coefficients of both the complex cations, measured between 30 (or 35) and 70 degrees C, are largely dependent on temperature; the dependence is particularly large in the case of the eth-hex-en complex cation below 40 degrees C. Small-angle X-ray scattering studies showed that the bilayer structure of the metal complex is formed in the liquid state for both the silver complexes. A direct observation of the yellowish [Ag(eth-hex-en)(2)]NO(3) liquid by transmission electron microscopy (TEM) indicates the presence of nanostructures, as a microemulsion, of less than 5 nm. Such structures were not clearly observed in the [Ag(hex-en)(2)]PF(6) liquid. Although the [Ag(eth-hex-en)(2)]NO(3) liquid is sparingly soluble in bulk water, it readily incorporates a small amount of water up to [water]/[metal complex] = 7:1. Homogeneous and uniformly sized silver(0) nanoparticles in water were created by the reduction of the [Ag(eth-hex-en)(2)]NO(3) liquid with aqueous NaBH(4), whereas silver(0) nanoparticles were not formed from the [Ag(hex-en)(2)]PF(6) liquid in the same way.
我们制备了新型离子液体双(N - 2 - 乙基己基乙二胺)硝酸银(I)([Ag(eth - hex - en)(2)]NO(3))和双(N - 己基乙二胺)六氟磷酸银(I)([Ag(hex - en)(2)]PF(6)),它们的转变点分别为 -54和 -6℃。在这些转变温度以下,两种银配合物均呈现非晶态,其中eth - hex - en配合物的玻璃化程度比hex - en配合物更大。在30(或35)至70℃之间测量的两种配合物阳离子的扩散系数在很大程度上取决于温度;在40℃以下,eth - hex - en配合物阳离子的这种依赖性尤为显著。小角X射线散射研究表明,两种银配合物在液态时均形成金属配合物的双层结构。通过透射电子显微镜(TEM)对淡黄色的[Ag(eth - hex - en)(2)]NO(3)液体进行直接观察,发现存在小于5nm的纳米结构,呈微乳液状。在[Ag(hex - en)(2)]PF(6)液体中未清晰观察到此类结构。尽管[Ag(eth - hex - en)(2)]NO(3)液体在大量水中的溶解度很小,但它很容易吸收少量水,直至[水]/[金属配合物] = 7:1。通过用NaBH(4)水溶液还原[Ag(eth - hex - en)(2)]NO(3)液体,在水中生成了均匀且尺寸一致的银(0)纳米颗粒,而以同样方式从[Ag(hex - en)(2)]PF(6)液体中未形成银(0)纳米颗粒。