Institute for Materials Chemistry and Engineering, Kyushu University, 6-10-1 Hakozaki, Higashi-ku, Fukuoka 812-8581, Japan.
Chemistry. 2010 Oct 11;16(38):11611-23. doi: 10.1002/chem.201001815. Epub 2010 Aug 30.
A cyclic free-base porphyrin dimer H4-CPD(Py) (CPD = cyclic porphyrin dimer) linked by butadiyne moieties bearing 4-pyridyl groups self-assembles to form a novel porphyrin nanotube in the crystalline state. The cyclic molecules link together through nonclassical C-H⋅⋅⋅N hydrogen bonds and π–π interactions of the pyridyl groups along the crystallographic a axis. H4-CPD(Py) includes a C60 molecule in its cavity in solution. In the crystal structure of the inclusion complex (C60⊂H4-CPD(Py)), the dimer “bites” a C60 molecule by tilting the porphyrin rings with respect to each other, and there are strong π–π interactions between the porphyrin rings and C60. The included C60 molecules form a zigzag chain along the crystallographic b axis through van der Waals contacts with each other. Femtosecond laser flash photolysis of C60⊂H4-CPD(Py) in the solid state with photoexcitation at 420 nm shows the formation of a completely charge-separated state {H4-CPD(Py)·+ + C60·−}, which decays with a lifetime of 470 ps to the ground state. The charge-carrier mobility of the single crystal of C60⊂H4-CPD(Py) was determined by flash photolysis time-resolved microwave conductivity (FP-TRMC) measurements. C60⊂H4-CPD(Py) has an anisotropic charge mobility (Σμ = 0.16 and 0.13 cm2 V(−1) s(−1)) along the zigzag chain of C60 (which runs at 45° and parallel to the crystallographic b axis). To construct a photoelectrochemical cell, C60⊂H4-CPD(Py) was deposited onto nanostructured SnO2 films on a transparent electrode. The solar cell exhibited photovoltaic activity with an incident photon to current conversion efficiency of 17%.
通过连接带有 4-吡啶基的丁二炔部分,一个由环状自由碱基卟啉二聚体 H4-CPD(Py)(CPD = 环状卟啉二聚体)组成的新型卟啉纳米管在结晶状态下自组装而成。这些环状分子通过非经典的 C-H···N 氢键和吡啶基沿结晶 a 轴的 π-π 相互作用连接在一起。在溶液中,H4-CPD(Py) 包含一个 C60 分子在其空腔内。在包含物复合物(C60⊂H4-CPD(Py))的晶体结构中,二聚体通过相对彼此倾斜卟啉环“咬住”C60 分子,并且卟啉环和 C60 之间存在强烈的 π-π 相互作用。包含的 C60 分子通过彼此之间的范德华接触沿结晶 b 轴形成锯齿状链。在固态下,用 420nm 的光激发对 C60⊂H4-CPD(Py) 进行飞秒激光闪光光解,显示出完全电荷分离态 {H4-CPD(Py)·+ + C60·−} 的形成,其衰减至基态的寿命为 470ps。通过闪光光解时间分辨微波电导率(FP-TRMC)测量确定了 C60⊂H4-CPD(Py) 单晶的载流子迁移率。C60⊂H4-CPD(Py) 沿 C60 的锯齿链(以 45°角平行于结晶 b 轴运行)具有各向异性的电荷迁移率(Σμ = 0.16 和 0.13 cm2 V(−1) s(−1))。为了构建光电化学池,将 C60⊂H4-CPD(Py) 沉积在透明电极上的纳米结构 SnO2 薄膜上。太阳能电池表现出光伏活性,入射光子到电流的转换效率为 17%。