Faculty of Physics, A. Mickiewicz University, Poznań, Poland.
J Colloid Interface Sci. 2011 Nov 15;363(2):551-6. doi: 10.1016/j.jcis.2011.07.080. Epub 2011 Aug 2.
Molecular mass of the iron-dextran complex (M(w)=1133 kDa), diameter of its particles (∼8.3 nm) and the content of iron ions in the complex core (N(Fe)=6360) were determined by static light scattering, measurements of refractive index increment and the Cotton-Mouton effect in solution. The known number of iron ions permitted the calculation of the permanent magnetic dipole moment value to be μ(Fe)=3.17×10(-18) erg Oe(-1) and the determination of anisotropy of linear magneto-optical polarizabilities components as Δχ=9.2×10(-21) cm(3). Knowing both values and the value of the mean linear optical polarizability α=7.3×10(-20) cm(3), it was possible to show that the total measured CM effect was due to the reorientation of the permanent and the induced magnetic dipole moments of the complex. Analysis of the measured magneto-optical birefringence indicated very small optical anisotropy of linear optical polarizability components, κ(α), which suggested a homogeneous structure of particles of spherical symmetry.
通过静态光散射、溶液中折光指数增量和考顿-毛顿效应的测量,确定了铁-葡聚糖复合物的分子量(Mw=1133kDa)、颗粒直径(~8.3nm)和复合物核心中铁离子的含量(N(Fe)=6360)。已知铁离子的数量,允许计算出永久磁偶极矩的值μ(Fe)=3.17×10(-18) erg Oe(-1),并确定线性磁光极化率分量的各向异性值Δχ=9.2×10(-21) cm(3)。知道这两个值和平均线性光极化率α=7.3×10(-20) cm(3)的值,就可以证明所测量的总 CM 效应是由于复合物的永久和感应磁偶极矩的重新取向引起的。对所测量的磁光双折射的分析表明,线性光学极化率分量κ(α)的光学各向异性非常小,这表明粒子具有球形对称的均匀结构。