Furube Akihiro, Katoh Ryuzi, Hara Kohjiro, Sato Tadatake, Murata Shigeo, Arakawa Hironori, Tachiya M
National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba, Ibaraki 305-8565, Japan.
J Phys Chem B. 2005 Sep 1;109(34):16406-14. doi: 10.1021/jp0513263.
The dynamics of ultrafast electron injection from a coumarin derivative (NKX-2311), which is an efficient photosensitizer for dye-sensitized solar cells, into the conduction band of TiO(2) nanocrystalline films have been investigated by means of femtosecond transient absorption spectroscopy in a wide wavelength range from 600 nm to 10 mum. In the absence of Li(+) ions, electron injection into the TiO(2) conduction band occurred in about 300 fs. In the presence of Li(+) ions, however, electron injection occurred within approximately 100 fs, and the oxidized dye generated was found to interact with nearby Li(+) ions. Possible positions of Li(+) ion attachment to the dye molecule were examined by means of semiempirical molecular orbital calculations. The electron injection efficiency was found to increase by a factor of 1.37 in the presence of Li(+) ions. The effects of Li(+) ions on the energy of the TiO(2) conduction band and the electronic interaction between the dye molecule and Li(+) ions are discussed, and the major cause for the acceleration of electron injection was suggested to be a conduction-band shift of TiO(2).
通过飞秒瞬态吸收光谱法,在600纳米至10微米的宽波长范围内,研究了一种用于染料敏化太阳能电池的高效光敏剂香豆素衍生物(NKX - 2311)向TiO₂纳米晶薄膜导带中超快电子注入的动力学过程。在没有Li⁺离子的情况下,电子注入TiO₂导带大约在300飞秒内发生。然而,在有Li⁺离子的情况下,电子注入在大约100飞秒内发生,并且发现生成的氧化染料与附近的Li⁺离子相互作用。通过半经验分子轨道计算研究了Li⁺离子附着在染料分子上的可能位置。发现在有Li⁺离子的情况下,电子注入效率提高了1.37倍。讨论了Li⁺离子对TiO₂导带能量以及染料分子与Li⁺离子之间电子相互作用的影响,并提出电子注入加速的主要原因是TiO₂的导带位移。