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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Long-Lived Photoinduced Charge Separation in Inclusion Complexes Composed of a Phenothiazine-Bridged Cyclic Porphyrin Dimer and Fullerenes
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Long-Lived Photoinduced Charge Separation in Inclusion Complexes Composed of a Phenothiazine-Bridged Cyclic Porphyrin Dimer and Fullerenes

机译:吩噻嗪桥环卟啉二聚体和富勒烯组成的包合物中的长寿命光诱导电荷分离。

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摘要

C-60, [6,6]-phenyl-C-61-butyric acid methyl ester (PCBM), lithium-cation-encapsulated C-60 (Li+@C-60), and [6,6]-diphenyl-C-62-bis(butyric acid methyl ester) (bis-PCBM) were included into a phenothiazine-bridged cyclic free-base porphyrin dimer (H-4-Ptz-CPDPy(TEO)) in a polar solvent (benzonitrile) with large association constants of 1.3 x 10 (6), 6.4 x 10 (5), 3.2 x 10 (6), and 2.5 x 10 (5) M-1, respectively. Based on the electrochemical data, the lowest energy levels of the charge-separated (CS) states for the inclusion complexes of H-4-Ptz-CPDPy(TEO) with C-60, PCBM, Li+@C-60, and bis-PCBM (designated as C-60 subset of H-4-Ptz-CPDPy(TEO), PCBM subset of H-4-Ptz-CPDPy(TEO), Li+@C-60 subset of H-4-Ptz-CPDPy(TEO), and bis-PCBM subset of H-4-Ptz-CPDPy(TEO)) composed of the phenothiazine donor and fullerene acceptors were determined to be 1.30, 1.40, 0.66, and 1.51 eV, respectively. Both C-60 subset of H-4-Ptz-CPDPy(TEO) and PCBM subset of H-4-Ptz-CPDPy(TEO) underwent electron transfer upon photoexcitation of the porphyrin and fullerene chromophores, and the resultant photoinduced CS states comprised the phenothiazine cation and the fullerene anions with lifetimes of 0.71 ms determined by time-resolved transient absorption spectra. Li+@C-60 subset of H-4-Ptz-CPDPy(TEO) also afforded a similar CS state with a lifetime of 0.56 ms. These lifetimes are the longest values ever reported for the CS states of phenothiazinefullerene complexes in solution. The spin states of these long-lived CS states were assigned to be triplet by ESR spectroscopy. The remarkably long CS lifetimes are attributable mainly to the lower CS energies than the triplet energies of the phenothiazine, fullerenes, and porphyrin moieties and the spin-forbidden slow back-electron-transfer processes. On the other hand, the photoinduced CS state of bis-PCBM subset of H-4-Ptz-CPDPy(TEO) was quenched rapidly by fast back electron transfer due to the relatively high CS energy comparable to the triplet energies of the porphyrin and fullerene.
机译:C-60,[6,6]-苯基-C-61-丁酸甲酯(PCBM),锂阳离子包裹的C-60(Li + @ C-60)和[6,6]-二苯基-C -62-双(丁酸甲酯)(bis-PCBM)被包含在吩噻嗪桥联的环状游离碱卟啉二聚体(H-4-Ptz-CPDPy(TEO))中,该溶剂在缔合性大的极性溶剂中M-1的常数分别为1.3 x 10(6),6.4 x 10(5),3.2 x 10(6)和2.5 x 10(5)。根据电化学数据,H-4-Ptz-CPDPy(TEO)与C-60,PCBM,Li + @ C-60和bis-的夹杂物的电荷分离(CS)态的最低能级PCBM(指定为H-4-Ptz-CPDPy(TEO)的C-60子集,H-4-Ptz-CPDPy(TEO)的PCBM子集,H-4-Ptz-CPDPy(TEO的Li + @ C-60子集),由吩噻嗪供体和富勒烯受体组成的H-4-Ptz-CPDPy(TEO)的bis-PCBM子集分别确定为1.30、1.40、0.66和1.51 eV。卟啉和富勒烯生色团被光激发后,H-4-Ptz-CPDPy(TEO)的C-60子集和H-4-Ptz-CPDPy(TEO)的PCBM子集都经历了电子转移,所得的光诱导CS态包括时间分辨的瞬态吸收光谱确定了吩噻嗪阳离子和富勒烯阴离子的寿命为0.71 ms。 H-4-Ptz-CPDPy(TEO)的Li + @ C-60子集也提供了类似的CS状态,寿命为0.56 ms。这些寿命是溶液中吩噻嗪富勒烯配合物的CS态报道的最长值。这些长期存在的CS状态的自旋态通过ESR光谱确定为三重态。 CS寿命非常长的主要原因是CS能量低于吩噻嗪,富勒烯和卟啉部分的三重态能量,以及自旋禁止的缓慢的反向电子转移过程。另一方面,H-4-Ptz-CPDPy(TEO)的bis-PCBM子集的光诱导CS态由于与卟啉和富勒烯的三重态能量相当的相对高的CS能量而被快速的反向电子转移迅速淬灭。 。

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