Department of Chemistry, Faculty of Engineering, and the Center for Nanoscale Science and Engineering, University of Georgia, Athens, Georgia 30602, USA.
Anal Chem. 2010 Apr 15;82(8):3306-14. doi: 10.1021/ac1001004.
In this article, we describe the synthesis and characterization of a series of spiropyran containing copolymers that were used as colorimetric sensors for a series of divalent metal ions. The composition of spiropyran contained in the polymer backbone was varied from 10-100 mol % to investigate the influence of free volume and sterics on the photochromic response. Fourier transform-infrared (FT-IR) spectroscopy was used to characterize the photoinduced conversion, as well as the merocyanine-metal ion (MC-M(2+)) interaction. FT-IR spectra were analyzed using chemometric methods to elucidate the chemical binding environment between MC and M(2+) and to selectively identify different metal ions bound to MC. By means of UV-vis absorption spectroscopy, we also demonstrate that each metal ion gives rise to a unique colorimetric response that is dependent on the amount of spiropyran comonomer contained in the polymer backbone and that by increasing the concentration of chromophore in the copolymer, the selectivity between different metal ions decreases. With the use of chemometric methods, UV-vis spectra can be analyzed to quantitatively identify metal ions in a concentration range from 1 microM to 100 mM.
本文描述了一系列含螺吡喃的共聚物的合成和表征,这些共聚物被用作一系列二价金属离子的比色传感器。研究了聚合物主链中螺吡喃的含量从 10-100 mol%的变化,以研究自由体积和立体位阻对光致变色响应的影响。傅里叶变换红外(FT-IR)光谱用于表征光诱导转化以及变色体-金属离子(MC-M(2+))相互作用。使用化学计量学方法分析 FT-IR 光谱,以阐明 MC 和 M(2+)之间的化学结合环境,并选择性地识别与 MC 结合的不同金属离子。通过紫外-可见吸收光谱,我们还证明每个金属离子都会产生独特的比色响应,这取决于聚合物主链中螺吡喃共聚单体的含量,并且通过增加共聚物中发色团的浓度,不同金属离子之间的选择性降低。通过使用化学计量学方法,可以分析紫外-可见光谱来定量识别浓度范围从 1 microM 到 100 mM 的金属离子。