Liu Hongwen, Nishitani Ryusuke, Ie Yutaka, Sudoh Koichi, Nowicki Marek, Yoshinobu Tatsuo, Aso Yoshio, Iwasaki Hiroshi
The Institute of Scientific and Industrial Research, Osaka University, Osaka 567-0047, Japan.
Ultramicroscopy. 2006 Jun-Jul;106(8-9):785-8. doi: 10.1016/j.ultramic.2006.01.011. Epub 2006 Apr 18.
Molecular fluorescence from H(2)TBP porphyrin (H(2)TBPP) films on Ag substrate is excited by a scanning tunneling microscope (STM) at ambient conditions. The molecular films are prepared by spin-casting method. The thickness of films can be controlled by the times of dropping H(2)TBPP solution. Molecular fluorescence of as-above prepared H(2)TBPP films with 4-14nm thickness at both polarities of applied bias voltage are well defined in good matching with its photoluminescence spectrum, which suggests the same decay channel associated with the HOMO-LUMO radiative transitions similar to H(2)TBPP/Au. The thickness dependence of light emission intensity of molecular fluorescence has been studied. The results show that for thicker film, molecular fluoresceence tends to be much stronger due to the effective decoupling of the emitter from the metal substrate.
在环境条件下,通过扫描隧道显微镜(STM)激发银基底上H(2)TBP卟啉(H(2)TBPP)薄膜的分子荧光。分子薄膜采用旋涂法制备。薄膜厚度可通过滴加H(2)TBPP溶液的次数来控制。上述制备的厚度为4 - 14nm的H(2)TBPP薄膜在施加偏置电压的两个极性下的分子荧光都清晰可辨,与其光致发光光谱良好匹配,这表明与H(2)TBPP/Au类似,存在与HOMO - LUMO辐射跃迁相关的相同衰减通道。研究了分子荧光发射强度的厚度依赖性。结果表明,对于较厚的薄膜,由于发射体与金属基底的有效解耦,分子荧光往往更强。