Factors influencing self-aggregation tendencies of cationic porphyrins in aqueous solution

Citation
K. Kano et al., Factors influencing self-aggregation tendencies of cationic porphyrins in aqueous solution, J AM CHEM S, 122(31), 2000, pp. 7494-7502
Citations number
54
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN journal
00027863 → ACNP
Volume
122
Issue
31
Year of publication
2000
Pages
7494 - 7502
Database
ISI
SICI code
0002-7863(20000809)122:31<7494:FISTOC>2.0.ZU;2-C
Abstract
The self-aggregation of cationic porphyrins in aqueous solution has been st udied by means of absorption, H-1 NMR, and resonance light scattering spect roscopy. The aim of the present study is clarification of the factors which most influence porphyrin self-aggregation in water. Cationic 5,10,15,20-te trasubstituted porphyrins [PorSub(4): PC3Py (Sub = -(CH2)(3)-Py+Cl-), PC5Py (Sub = -(CH2)(5)-Py+Cl-), PC7Py (Sub -(CH?)7-Py+Cl-), TPPOC2Py (Sub = P-C6 H4-O(CH2)(2)-Py+Br-), and TPPOC3Py (Sub = p-C6H4-O(CH2)(3)-Py+Br-), where P y+ = N-alkylpyridinium] were used. PC3Py forms a dimer in aqueous solution with or without an added inorganic salt. In the presence of KNO3, dimer for mation of PC3Py is dominated by a large and negative enthalpy change. The e ntropy change for aggregation increases with increasing concentrations of a dded KNO3, while enthalpy changes are almost constant. The thermodynamic pa rameters suggest that dimer formation of PC3Py is the result of a large ent halpic gain due to extended van der Waals interactions, in cooperation with enhanced hydrophobic interactions. Electrostatic repulsion suppresses furt her association. However, other cationic porphyrins studied show evidence o f higher self-aggregate formation. X-ray crystallographic studies of PC5Cl (Sub = -(CH2)(5)-Cl), a precursor of PC5Py, show the formation of a slipped face-to-face dimer as the basic unit for forming a crystal lattice, while that of TPP (Sub = -C6H5) indicates the absence of face-to-face stacking in teraction in the crystals. Judging from these results, it is assumed that t he slipped face-to-face dimer is the unit of the higher self-aggregates of PC5Py or PC7Py in water with or without KNO3. Elongated alkyl chains of PC5 Py and PC7Py may be responsible by enhancing hydrophobic interaction of the porphyrins studied. TPPOC2Py alone forms a J-aggregate, characterized by a sharp and red-shifted Soret band and a strongly enhanced resonance light s cattering signal. Higher self-aggregates having face-to-face arrangement ar e formed with TPPOC3Py; these provide no enhanced RLS feature. The present study reveals the dependence of aggregate formation of water-soluble porphy rins on the peripheral mesosubstituents.