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Convection‐Flow‐Assisted Preparation of a Strong Electron Dopant Benzyl Viologen for Surface‐Charge Transfer Doping of Molybdenum Disulfide

机译:对流辅助制备强电子掺杂剂苄基紫精用于二硫化钼的表面电荷转移掺杂

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摘要

Transition metal dichalcogenides (TMDCs) have received attention as atomically thin post‐silicon semiconducting materials. Tuning the carrier concentrations of the TMDCs is important, but their thin structure requires a non‐destructive modulation method. Recently, a surface‐charge transfer doping method was developed based on contacting molecules on TMDCs, and the method succeeded in achieving a large modulation of the electronic structures. The successful dopant is a neutral benzyl viologen (BV0); however, the problem remains of how to effectively prepare the BV0 molecules. A reduction process with NaBH4 in water has been proposed as a preparation method, but the NaBH4 simultaneously reacts vigorously with the water. Here, a simple method is developed, in which the reaction vial is placed on a hotplate and a fragment of air‐stable metal is used instead of NaBH4 to prepare the BV0 dopant molecules. The prepared BV0 molecules show a strong doping ability in terms of achieving a degenerate situation of a TMDC, MoS2. A key finding in this preparation method is that a convection flow in the vial effectively transports the produced BV0 to a collection solvent. This method is simple and safe and facilitates the tuning of the optoelectronic properties of nanomaterials by the easily‐handled dopant molecules.
机译:过渡金属二硫化碳(TMDC)作为原子薄的硅后半导体材料已受到关注。调节TMDC的载流子浓度很重要,但是它们的薄结构需要一种非破坏性的调制方法。近年来,基于分子与TMDC接触的表面电荷转移掺杂方法得到了发展,该方法成功实现了电子结构的大调制。成功的掺杂剂是中性苄基紫精(BV 0 );然而,如何有效制备BV 0 分子仍然是问题。已经提出了用NaBH4在水中还原的方法作为制备方法,但是NaBH4同时与水剧烈反应。在这里,开发了一种简单的方法,其中将反应瓶放在电炉上,使用空气稳定的金属碎片代替NaBH4制备BV 0 掺杂剂分子。制备的BV 0 分子在实现TMDC MoS2的简并情况方面显示出强大的掺杂能力。该制备方法的关键发现是小瓶中的对流有效地将产生的BV 0 输送到收集溶剂中。这种方法既简单又安全,并且易于通过易于处理的掺杂剂分子调节纳米材料的光电特性。

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