Department of Chemistry, University of North Texas, 1155 Union Circle, 305070, Denton, TX 76203-5017, USA.
Chemistry. 2012 Sep 3;18(36):11388-98. doi: 10.1002/chem.201200970. Epub 2012 Jul 17.
Covalent functionalization of diameter sorted SWCNTs with porphyrins (MP), and photochemistry to establish nanotube diameter-dependent charge separation efficiencies are reported. The MP-SWCNT(n,m) [M=2H or Zn, and (n,m)=(7,6) or (6,5)] nanohybrids are characterized by a variety of spectroscopic, thermogravimetric, TEM imaging techniques, and also by DFT MO calculations. The thermogravimetric, Raman and fluorescence studies reveal the presence of a moderate number of porphyrins on the SWCNT surface. The MO results suggest charge separation (CS) via the excited state of MP. Time-resolved fluorescence studies reveal quenching of the singlet excited state of the MP with SWCNT(n,m), giving the rate constants of charge separation (k(CS)) in the range of (4-5)×10(9) s(-1). Nanosecond transient absorption measurements confirm the charge-separated radical cation and the radical anion as [MP(.+)-SWCNT(.-)] with their characteristic absorption bands in the visible and near-IR regions. The charge separated states persist for about 70-100 ns thus giving an opportunity to utilize them to build photoelectrochemical cells, which allowed us to derive the structure-reactivity relationship between the nature of porphyrin and diameter of the employed nanotubes.
报道了通过卟啉(MP)对直径分级的单壁碳纳米管(SWCNT)进行共价功能化,以及通过光化学建立与纳米管直径相关的电荷分离效率。MP-SWCNT(n,m)[M=2H 或 Zn,(n,m)=(7,6)或(6,5)]纳米杂化物通过各种光谱、热重分析、TEM 成像技术以及 DFT MO 计算进行了表征。热重分析、拉曼和荧光研究表明 SWCNT 表面存在中等数量的卟啉。MO 结果表明通过 MP 的激发态发生电荷分离(CS)。时间分辨荧光研究表明 MP 与 SWCNT(n,m)的单重激发态猝灭,电荷分离(kCS)的速率常数在(4-5)×109 s-1范围内。纳秒瞬态吸收测量证实了电荷分离的自由基阳离子和自由基阴离子为[MP(.+)-SWCNT(.-)],它们在可见光和近红外区域具有特征吸收带。电荷分离态持续约 70-100 ns,从而为构建光电化学电池提供了机会,这使我们能够得出卟啉的性质和所采用的纳米管的直径之间的结构-反应性关系。