论文标题
单层过渡金属二硫化物的化学处理的机械洞察力,以增强光致发光
Mechanistic Insight to the Chemical Treatments of Monolayer Transition Metal Disulfides for Photoluminescence Enhancement
论文作者
论文摘要
对于获得光电设备应用的高质量单层过渡金属二硫化物(TMDSS),人们对获得高质量的单层过渡金属二硫化物(TMDSS)的兴趣越来越大。证明使用一系列化学物质在单层TMDS上进行的表面化学处理已被证明有效提高其光致发光(PL)的产量。但是,这些治疗方法的基本机制尚不清楚,这阻止了钝化策略的理性设计。在这项工作中,通过使用阳离子供体系列来证明一种简单有效的方法来显着增强TMDS的PL,我们证明,该供体比通过电子传输实现PL增强的常用P型辅助剂更有效。我们为这些阳离子供体的作用开发了一幅详细的机械图,并证明其中一个是Li-TFSI(Bistriflimide),将MOS2和WS2的PL提高到了与广泛讨论且目前最佳性能的超级酸H-TFSI治疗相比的两倍。此外,化学处理中使用的离子盐与一系列绿色溶剂兼容,并且比超酸更容易处理,后者提供了在设备制造过程中直接处理TMDS的可能性。这项工作为离子化学物质钝化了TMDS并增加了TMDS在实用的光电应用中的潜力。
There is a growing interest in obtaining high quality monolayer transition metal disulfides (TMDSs) for optoelectronic device applications. Surface chemical treatments using a range of chemicals on monolayer TMDSs have proven effective to improve their photoluminescence (PL) yield. However, the underlying mechanism for PL enhancement by these treatments is not clear, which prevents a rational design of passivation strategies. In this work, a simple and effective approach to significantly enhance PL of TMDSs is demonstrated by using a family of cation donors, which we show to be much more effective than commonly used p-dopants which achieve PL enhancement through electron transfer. We develop a detailed mechanistic picture for the action of these cation donors and demonstrate that one of them, Li-TFSI (bistriflimide), enhances the PL of both MoS2 and WS2 to a level double that compared to the widely discussed and currently best performing super acid H-TFSI treatment. In addition, the ionic salts used in chemical treatments are compatible with a range of greener solvents and are easier to handle than super-acids, which provides the possibility of directly treating TMDSs during device fabrication. This work sets up rational selection rules for ionic chemicals to passivate TMDSs and increases the potential of TMDSs in practical optoelectronic applications.