D'Souza Francis, Chitta Raghu, Gadde Suresh, McCarty Amy L, Karr Paul A, Zandler Melvin E, Sandanayaka Atula S D, Araki Yasuyaki, Ito Osamu
Department of Chemistry, Wichita State University, 1845 Fairmount, Wichita, Kansas 67260-0051, USA.
J Phys Chem B. 2006 Mar 30;110(12):5905-13. doi: 10.1021/jp057547q.
Photoinduced electron-transfer processes in cis and trans functionalized bis-18-crown-6 porphyrin self-assembled with fullerene functionalized with pyridine or alkylammonium cation entities are reported. The structural integrity of the newly formed supramolecular conjugates was accomplished by optical absorption and emission, electron spray ionization mass, electrochemistry, and semiempirical PM3 calculations. A 1:2 stoichiometry of the supramolecular porphyrin:fullerene conjugates was deduced from these studies. The conjugates revealed stable "two-point"' binding involving metal-ligand coordination and alkylammonium cation-crown ether binding or only the latter type of binding depending upon the functionality of the fullerene and metal ion in the porphyrin cavity. The effect of the variation on free energy changes of charge separation and the charge recombination was achieved by varying the metal ion in the porphyrin cavity. The charge-separation rates (k(CS)) determined from the picosecond time-resolved emission studies were generally higher for the cis bis-crown functionalized porphyrins than those of the corresponding trans ones. A comparison of the k(CS) values reported earlier for 1:1 porphyrin-fullerene conjugates with a similar self-assembly mechanism suggested that employing a higher number of acceptor entities improves the electron-transfer rates. The calculated charge-recombination rates (k(CR)) were 2-3 orders of magnitude smaller than the k(CS) values, suggesting the occurrence of the charge recombination process in the Marcus inverted region. The lifetimes of the radical ion pair (tau(RIP)) ranged between 46 and 233 ns indicating charge stabilization in the studied conjugates.
报道了顺式和反式官能化双 - 18 - 冠 - 6卟啉与用吡啶或烷基铵阳离子实体官能化的富勒烯自组装中的光诱导电子转移过程。通过光吸收和发射、电喷雾电离质谱、电化学以及半经验PM3计算实现了新形成的超分子共轭物的结构完整性。从这些研究中推断出超分子卟啉:富勒烯共轭物的化学计量比为1:2。共轭物显示出稳定的“两点”结合,涉及金属 - 配体配位和烷基铵阳离子 - 冠醚结合,或者仅取决于卟啉腔内富勒烯和金属离子的官能团的后一种结合类型。通过改变卟啉腔内的金属离子实现了电荷分离和电荷复合的自由能变化的变化效应。从皮秒时间分辨发射研究确定的电荷分离速率(k(CS))对于顺式双冠官能化卟啉通常高于相应的反式卟啉。对具有类似自组装机制的1:1卟啉 - 富勒烯共轭物先前报道的k(CS)值的比较表明,使用更多数量的受体实体可提高电子转移速率。计算得到的电荷复合速率(k(CR))比k(CS)值小2 - 3个数量级,表明电荷复合过程发生在马库斯反转区域。自由基离子对的寿命(tau(RIP))在46至233纳秒之间,表明所研究的共轭物中电荷稳定。