论文标题
通过电荷调制光谱法探测半导体碳纳米管网络中的移动电荷载体
Probing Mobile Charge Carriers in Semiconducting Carbon Nanotube Networks by Charge Modulation Spectroscopy
论文作者
论文摘要
溶液处理的半导体,单壁碳纳米管(SWCNT)的网络吸引了相当大的关注,作为下一代电子设备和电路的材料。但是,SWCNT网络组成对电荷传输对微观水平的影响仍然是一个开放而复杂的问题。在这里,我们使用电荷调节的吸收和光致发光光谱,仅探测单芯(6,5)(6,5)和混合SWCNT网络现场效应晶体管中的移动电荷载体。根据应用的电压和调制频率观察到基态漂白和电荷诱导的TRION吸收特征以及激子淬火。通过调制的移动载体密度和纳米管的光学响应的相关性,我们发现混合SWCNT网络中的电荷传输在很大程度上取决于直径,从而取决于单个物种的带隙。小型带隙SWCNT优先运输移动电荷,尤其是在低门电压下,而大型带隙物种仅开始以较高的载体浓度参与。我们的结果表明,调制光谱术在研究纳米管网络晶体管中的电荷传输方面非常适合,并强调了SWCNT网络组成对其性能的重要性。
Solution-processed networks of semiconducting, single-walled carbon nanotubes (SWCNTs) have attracted considerable attention as materials for next-generation electronic devices and circuits. However, the impact of the SWCNT network composition on charge transport on a microscopic level remains an open and complex question. Here, we use charge-modulated absorption and photoluminescence spectroscopy to probe exclusively the mobile charge carriers in monochiral (6,5) and mixed SWCNT network field-effect transistors. Ground state bleaching and charge-induced trion absorption features, as well as exciton quenching are observed depending on applied voltage and modulation frequency. Through correlation of the modulated mobile carrier density and the optical response of the nanotubes, we find that charge transport in mixed SWCNT networks depends strongly on the diameter and thus bandgap of the individual species. Mobile charges are preferentially transported by small bandgap SWCNTs especially at low gate voltages, whereas large bandgap species only start to participate at higher carrier concentrations. Our results demonstrate the excellent suitability of modulation spectroscopy to investigate charge transport in nanotube network transistors and highlight the importance of SWCNT network composition for their performance.