Department of Molecular Biophysics, B. Verkin Institute for Low Temperature Physics & Engineering of NAS of Ukraine, 47 Lenin ave., 61103 Kharkov, Ukraine.
J Fluoresc. 2010 May;20(3):695-702. doi: 10.1007/s10895-010-0609-1. Epub 2010 Feb 26.
Self-assembly of tetracationic porphyrin TMPyP(4+) onto polyanionic matrix of inorganic polyphosphate (PPS) in aqueous solutions has been studied in a wide range of molar phosphate-to-dye ratios using techniques of polarized fluorescence, absorption, resonance Raman spectroscopy and static light scattering. The binding of TMPyP(4+) to PPS is characterized by the binding constant of 3 x 10(5) M(-1) and the cooperativity parameter of about 150. The fluorescence quenching of the bound TMPyP(4+) evidences the stacking of the porphyrine chromophores. Under the stoichiometric binding ratio TMPyP(4+) forms extended continuous face-to-face aggregates (so-called H-aggregates) which manifest themselves by a blue shift (12 nm) and a large hypochromisity (51%) of the Soret absorption band. Each face-to-face TMPyP(4+) stack is formed with participation of four PPS chains. Formation of such columnar aggregates is promoted by the ability of PPS chains to take a helix conformation where negative charges are arranged along two oppositely situated rows with intercharge distance of 0.36 nm which corresponds to the thickness of the porphyrin pi-electronic system. The ability of each PPS strand to be template for formation of two porphyrin stacks results in the integration of the adjacent stacks into higher-order aggregates which dimension was estimated from the fluorescence polarization data.
在磷酸盐与染料摩尔比的较宽范围内,使用偏振荧光、吸收、共振拉曼光谱和静态光散射技术研究了四阳离子卟啉 TMPyP(4+)在无机多磷酸盐 (PPS) 聚阴离子基质中的自组装。TMPyP(4+)与 PPS 的结合由结合常数 3 x 10(5) M(-1)和协同参数约 150 来表征。结合的 TMPyP(4+)的荧光猝灭证明了卟啉发色团的堆积。在化学计量结合比下,TMPyP(4+)形成扩展的连续面对面聚集体(所谓的 H-聚集体),这表现为 Soret 吸收带的蓝移(12nm)和大的减色效应(51%)。每个面对面的 TMPyP(4+)堆叠由四个 PPS 链参与形成。PPS 链能够采取螺旋构象,从而促进这种柱状聚集体的形成,其中负电荷沿两个相对的行排列,电荷间距离为 0.36nm,这与卟啉的π电子系统的厚度相对应。每个 PPS 链形成两个卟啉堆叠模板的能力导致相邻堆叠整合到更高阶的聚集体中,其尺寸是从荧光偏振数据估计的。