首页> 外文学位 >Spectroscopic study of amine salts and polyamine salt systems.
【24h】

Spectroscopic study of amine salts and polyamine salt systems.

机译:胺盐和多胺盐体系的光谱研究。

获取原文
获取原文并翻译 | 示例

摘要

Fundamental research is a necessary foundation for advanced technological development and application. Progress in improving application-based systems largely depends on understanding the nature of the system. A better understanding of the charge-containing species, their environment and the movement of protons through the system is necessary to improve proton-conducting membranes. This dissertation primarily focuses on investigating the moieties involved in charge transport in polymer electrolytes, in particular proton-containing species.;Vibrational spectroscopy is a particularly useful technique in interpreting the local environment present at heteroatom sites and the conformations along the backbone, and probing hydrogen bonding and coordination of salts. Connecting the vibrational spectrum of a crystal to the known structure of that crystal allows a direct correlation of the observed vibrational signatures to the structure. The power of combining crystal structures and vibrational spectra to interpret hydrogen bonding is strongly emphasized in this dissertation.;Polyamines, polyamine salts and model compounds of these polymeric systems are examined. Poly(alkylethylenimine)s are studied with respect to the effect of the sidechain length. Polymer electrolytes made from these polymers exhibited an unusual hysteresis effect with temperature cycling. Unlike PEO, these PEI-based systems show a decrease in ionic association. Cross-linked polyethylenimine hydrochloride is characterized using both vibrational and nuclear magnetic resonance spectroscopy to determine the degree of cross-linking and identify the vibrational signatures of the membrane moieties. Amine salt model compounds are studied in both the mid and near infrared regions. The band assignments of these amine model compounds are extended into a polymeric amine salt system. In the secondary amine salt systems, vibrational spectra were correlated with crystal structures and computational results to identify the vibrational modes of the protonated amine heteroatom sites. In a crystal containing several different heteroatom sites, the vibrational signatures of each type of site is identified by comparing portions of the asymmetric unit with simple model compounds.;The degree of intermolecular coupling within the unit cell of a crystal determines the nature of factor group vibrations and can have a dramatic effect on the rule of mutual exclusion. In DMEDA:HX crystals, the rule of mutual exclusion is obeyed to different degrees in various regions of the spectrum. This suggests that the degree of adherence to the rule of mutual exclusion can be correlated to the strength of the intermolecular coupling, particularly when the crystallographic inversion center does not lie on the asymmetric unit.;A significant portion of this dissertation focuses on hydrogen-bonded groups in amine salt systems. The findings reported here can be useful in interpreting the results seen in more complex polyamine and polyamine salt systems. In particular, the ability to identify heteroatom sites from their vibrations signatures is essential. These systems may have an important role as electrolytes in energy applications, specifically proton exchange membrane fuel cells.
机译:基础研究是先进技术开发和应用的必要基础。改进基于应用程序的系统的进展很大程度上取决于对系统本质的理解。必须进一步了解含电荷的物质,其环境以及质子通过系统的运动,以改善质子传导膜。本文主要研究聚合物电解质中电荷转移所涉及的部分,特别是含质子的物质。振动光谱法是一种特别有用的技术,可用于解释杂原子位点上的局部环境和沿骨架的构象,并探测氢盐的键合和配位。将晶体的振动谱连接到该晶体的已知结构,可以将观察到的振动特征与该结构直接相关。本文着重强调了将晶体结构和振动光谱结合起来以解释氢键的能力。;研究了这些聚合物体系中的多胺,多胺盐和模型化合物。就侧链长度的影响研究了聚(烷基亚乙基亚胺)。由这些聚合物制成的聚合物电解质随温度循环表现出异常的滞后效应。与PEO不同,这些基于PEI的系统显示出离子缔合的降低。交联的聚乙烯亚胺盐酸盐的特征在于使用振动和核磁共振光谱法来确定交联度并鉴定膜部分的振动特征。在中红外和近红外区域都研究了胺盐模型化合物。这些胺模型化合物的能带分配扩展到了聚合胺盐体系中。在仲胺盐体系中,振动光谱与晶体结构和计算结果相关联,以识别质子化胺杂原子位点的振动模式。在包含几个不同杂原子位点的晶体中,通过将不对称单元的部分与简单模型化合物进行比较,可以识别每种位点的振动特征。晶体的晶胞内分子间的耦合程度决定了因子组的性质。振动,并且会对相互排斥的规则产生巨大影响。在DMEDA:HX晶体中,在光谱的各个区域中不同程度地遵守互斥规则。这表明遵守互斥规则的程度可以与分子间偶联的强度相关,特别是当晶体学反演中心不位于不对称单元上时。;本论文的很大一部分集中在氢键上胺盐体系中的基团。此处报道的发现可用于解释在更复杂的多胺和多胺盐体系中看到的结果。特别地,从其振动特征识别杂原子位点的能力至关重要。这些系统在能源应用中,特别是在质子交换膜燃料电池中,可能作为电解质发挥重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号