Max Planck Institute for Solid State Research, Heisenbergstraße 1, 70569 Stuttgart (Germany).
ChemSusChem. 2015 Feb;8(3):513-23. doi: 10.1002/cssc.201403022. Epub 2014 Nov 27.
The alkaline stability of 26 different quaternary ammonium groups (QA) is investigated for temperatures up to 160 °C and NaOH concentrations up to 10 mol L(-1) with the aim to provide a basis for the selection of functional groups for hydroxide exchange membranes in alkaline fuel cells and of ionic-liquid cations stable in basic conditions. Most QAs exhibit unexpectedly high alkaline stability with the exception of aromatic cations. β-Protons are found to be far less susceptible to nucleophilic attack than previously suggested, whereas the presence of benzyl groups, nearby hetero-atoms, or other electron-withdrawing species promote degradation reactions significantly. Cyclic QAs proved to be exceptionally stable, with the piperidine-based 6-azonia-spiro[5.5]undecane featuring the highest half-life at the chosen conditions. Absolute and relative stabilities presented herein stand in contrast to literature data, the differences being ascribed to solvent effects on degradation.
研究了 26 种不同的季铵基团(QA)在高达 160°C 的温度和高达 10 mol·L(-1)的 NaOH 浓度下的碱性稳定性,目的是为碱性燃料电池中用于氢氧根交换膜的官能团选择以及在碱性条件下稳定的离子液体阳离子提供基础。大多数 QA 表现出出乎意料的高碱性稳定性,除了芳香族阳离子。β-质子被发现比以前认为的更不易受到亲核攻击,而苄基、附近的杂原子或其他吸电子基团则显著促进降解反应。环状 QA 被证明具有异常的稳定性,在所选择的条件下,基于哌啶的 6-氮杂螺[5.5]十一烷具有最长的半衰期。本文提出的绝对和相对稳定性与文献数据形成对比,差异归因于降解过程中的溶剂效应。