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NMR relaxation in semiflexible Vicsek fractals

机译:在半圆形的vicsek分形的NMR放松

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摘要

We consider the role of local orientational mobility for the NMR relaxation of hyperbranched macromolecules modeled in form of Vicsek fractals. The spectral density J(omega), that is relevant for the NMR relaxation, is studied for labeled segments of flexible and semiflexible Vicsek fractals. We show that the semiflexibility leads to strong effects. For flexible Vicsek fractals the function omega J(omega) has a single maximum, whose position is determined by the local-scale modes and therefore independent of the location of the labeled segments. For the labeled segments of a semiflexible Vicsek fractal, we observe a broad spectral density. It is characterized by the overall relaxation of the branch that originates from the labeled segment and by the overall relaxation of the subbranches that build this branch. In this way, going from the periphery to the inner part of the macromolecule, the labeled segments display a broader spectral density. However, this effect saturates when the labeled segments get closer to the core of the hyperbranched macromolecule, so that they do not feel their remoteness from the periphery anymore. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们考虑局部取向流动性对以维基分形式建模的超支化大分子的NMR弛豫作用。研究了与NMR弛豫相关的光谱密度J(OMEGA),用于柔性且半柔性kfsek分形的标记段。我们展示了半曲线导致强烈的效果。对于灵活的Vicsek分数,函数Omega J(Omega)的最大值是最大的,其位置由本地尺度模式确定,因此独立于标记段的位置。对于半纤维的ViCsek分形的标记段,我们观察到广泛的光谱密度。它的特征在于分支的整体放松,该分支起源于标记的段,并通过构建该分支的子议中的总体放松。以这种方式,从外围到宏观分子的内部,标记的段显示更宽的光谱密度。然而,当标记的段更接近超支宏观分子的核心时,这种效果饱和,因此它们不再感受到它们的远程。 (c)2018年elestvier有限公司保留所有权利。

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