Furman Gregory B, Goren Shaul D, Meerovich Victor M, Sokolovsky Vladimir L
Physics Department, Ben Gurion University of the Negev, Beer Sheva 84105, Israel.
Physics Department, Ben Gurion University of the Negev, Beer Sheva 84105, Israel.
J Magn Reson. 2015 Dec;261:175-80. doi: 10.1016/j.jmr.2015.10.013. Epub 2015 Nov 2.
We study the spin-lattice relaxation of the nuclear spins in a liquid or a gas entrapped in nanosized ellipsoidal cavities with paramagnetic impurities. Two cases are considered where the major axes of cavities are in orientational order and isotropically disordered. The evolution equation and analytical expression for spin lattice relaxation time are obtained which give the dependence of the relaxation time on the structural parameters of a nanocavity and the characteristics of a gas or a liquid confined in nanocavities. For the case of orientationally ordered cavities, the relaxation process is exponential. When the nanocavities are isotropically disordered, the time dependence of the magnetization is significantly non-exponential. As shown for this case, the relaxation process is characterized by two time constants. The measurements of the relaxation time, along with the information about the cavity size, allow determining the shape and orientation of the nanocavity and concentration of the paramagnetic impurities.
我们研究了捕获在含有顺磁性杂质的纳米级椭球腔中的液体或气体中核自旋的自旋 - 晶格弛豫。考虑了两种情况:腔的主轴呈取向有序和各向同性无序。得到了自旋晶格弛豫时间的演化方程和解析表达式,这些表达式给出了弛豫时间对纳米腔结构参数以及纳米腔内所限气体或液体特性的依赖性。对于取向有序腔的情况,弛豫过程是指数型的。当纳米腔各向同性无序时,磁化强度的时间依赖性显著非指数型。对于这种情况表明,弛豫过程由两个时间常数表征。弛豫时间的测量以及关于腔尺寸的信息,有助于确定纳米腔的形状、取向和顺磁性杂质的浓度。