Department of Chemistry, University of Minnesota, 207 Pleasant Street SE, Minneapolis, Minnesota 55455, United States.
Anal Chem. 2012 Jan 17;84(2):1104-11. doi: 10.1021/ac202761x. Epub 2011 Dec 22.
It is well known that the selectivity of an ion-selective electrode (ISE) depends on the stoichiometry of the complexes between its ionophore and the target and interfering ions. It is all the more surprising that the possibility for the simultaneous occurrence of multiple target ion complexes with different complex stoichiometries was mostly ignored in the past. Here, we report on the simultaneous formation of 1:1 and 1:2 complexes of a fluorophilic crown ether in fluorous ISE membranes and how this results in what looks like super-Nernstian responses. These increased response slopes are not caused by mass transfer limitations and can be readily explained with a phase boundary model, a finding that is supported by experimentally determined complex formation constants and excellent fits of response curves. Not only Cs(+) but also the smaller ions Li(+), Na(+), K(+), and NH(4)(+) form 1:1 and 1:2 complexes with the fluorophilic crown ether, with cumulative formation constants of up to 10(15.0) and 10(21.0) for of the 1:1 and 1:2 complexes, respectively. Super-Nernstian responses of the type observed with these electrodes are probably not particularly rare but have lacked in the past an adequate discussion in the literature, remaining ignored or misinterpreted. Preliminary calculations also predict sub-Nernstian responses and potential dips of a similar origin. The proper understanding of such phenomena will facilitate the development of new ISEs based on ionophores that form complexes of higher stoichiometries.
众所周知,离子选择性电极(ISE)的选择性取决于其载体与目标离子和干扰离子之间配合物的化学计量比。更令人惊讶的是,过去大多数情况下忽略了同时存在具有不同配合物化学计量比的多个目标离子配合物的可能性。在这里,我们报告了亲氟冠醚在全氟离子选择性电极膜中同时形成 1:1 和 1:2 配合物的情况,以及这如何导致看起来像是超 Nernst 响应的现象。这些增加的响应斜率不是由传质限制引起的,可以用相界面模型很容易地解释,这一发现得到了实验确定的配合物形成常数和对响应曲线的极好拟合的支持。不仅 Cs(+),而且较小的离子 Li(+)、Na(+)、K(+)和 NH(4)(+)也与亲氟冠醚形成 1:1 和 1:2 配合物,其累积形成常数分别高达 10(15.0)和 10(21.0)。这些电极观察到的超 Nernst 响应类型可能并不特别罕见,但在过去的文献中缺乏充分的讨论,仍然被忽视或误解。初步计算还预测了类似起源的亚 Nernst 响应和潜在的下降。正确理解此类现象将有助于开发基于形成更高化学计量比配合物的载体的新型 ISE。