McElheny Dan, Frydman Veronica, Frydman Lucio
Division of Biological Sciences, University of Chicago, Chicago, IL 60637, USA.
Solid State Nucl Magn Reson. 2006 Feb;29(1-3):132-41. doi: 10.1016/j.ssnmr.2005.08.010. Epub 2005 Sep 30.
The local dynamics of aromatic cores was analyzed for a homologous series of polyamides in the solid phase incorporating phenyl, biphenyl and naphthyl groups. Preliminary wide-line and spin-relaxation variable-temperature (1)H NMR measurements revealed the presence of thermally activated molecular motions for each polymer studied. A number of (13)C NMR experiments were then implemented to further clarify the nature and extent of such motions. These included (1)H-(13)C 2D separate-local-field measurements, whose line shapes revealed that motions involved for all cases a superposition of states. These could in principle be associated with rigid and mobile populations in these semi-crystalline aramides, a model that yielded a proper description of the spectra at all temperatures. To further probe this model the relaxation behavior of the aramides'(13)C spins was monitored in the rotating frame as a function of temperature, in both the presence and absence of homonuclear (1)H-(1)H decoupling. The variations observed in these measurements evidenced a thermally activated, relatively broad distribution of motional rates in the polymers. Editing the 2D local-field data according to the (13)C relaxation also supported this heterogeneous dynamic model. The mechanism underlying this behavior and implications towards the (13)C analysis of motions in aramides in particular and complex polymers in general, is briefly discussed.
对一系列包含苯基、联苯基和萘基的聚酰胺在固相中芳香核的局部动力学进行了分析。初步的宽线和自旋弛豫变温(1)H NMR测量表明,所研究的每种聚合物都存在热激活的分子运动。随后进行了一系列(13)C NMR实验,以进一步阐明此类运动的性质和程度。这些实验包括(1)H - (13)C二维分离局部场测量,其线形表明所有情况下的运动都涉及状态的叠加。原则上,这些状态可能与这些半结晶芳族聚酰胺中的刚性和可移动群体相关,该模型在所有温度下都能对光谱进行恰当描述。为了进一步探究该模型,在存在和不存在同核(1)H - (1)H去耦的情况下,监测了芳族聚酰胺(13)C自旋在旋转坐标系中的弛豫行为随温度的变化。这些测量中观察到的变化证明了聚合物中存在热激活的、相对较宽的运动速率分布。根据(13)C弛豫对二维局部场数据进行编辑也支持了这种非均匀动力学模型。本文简要讨论了这种行为背后的机制以及对特别是芳族聚酰胺和一般复杂聚合物中(13)C运动分析的影响。