Department of Molecular Chemistry and Materials Science, Weizmann Institute of Science, Rehovot 7610001, Israel.
Laboratorio de Microscopias Avanzadas, Universidad de Zaragoza, 50018 Zaragoza, Spain.
Proc Natl Acad Sci U S A. 2021 Aug 31;118(35). doi: 10.1073/pnas.2109945118.
Asymmetric two-dimensional (2D) structures (often named Janus), like SeMoS and their nanotubes, have tremendous scope in material chemistry, nanophotonics, and nanoelectronics due to a lack of inversion symmetry and time-reversal symmetry. The synthesis of these structures is fundamentally difficult owing to the entropy-driven randomized distribution of chalcogens. Indeed, no Janus nanotubes were experimentally prepared, so far. Serendipitously, a family of asymmetric misfit layer superstructures (tubes and flakes), including LaX-TaX (where X = S/Se), were synthesized by high-temperature chemical vapor transport reaction in which the Se binds exclusively to the Ta atoms and La binds to S atoms rather than the anticipated random distribution. With increasing Se concentration, the LaS-TaX misfit structure gradually transformed into a new LaS-TaSe-TaSe superstructure. No misfit structures were found for x = 1. These counterintuitive results shed light on the chemical selectivity and stability of misfit compounds and 2D alloys, in general. The lack of inversion symmetry in these asymmetric compounds induces very large local electrical dipoles. The loss of inversion and time-reversal symmetries in the chiral nanotubes offers intriguing physical observations and applications.
由于缺乏反演和时间反转对称性,不对称二维(2D)结构(通常称为 Janus),如 SeMoS 及其纳米管,在材料化学、纳米光子学和纳米电子学领域具有巨大的应用前景。由于硫属元素的熵驱动随机分布,这些结构的合成从根本上就具有挑战性。事实上,到目前为止,还没有实验制备出 Janus 纳米管。出人意料的是,通过高温化学气相输运反应,合成了一系列不对称失配位超结构(管和薄片),包括 LaX-TaX(其中 X = S/Se),在该反应中,Se 仅与 Ta 原子结合,La 与 S 原子结合,而不是预期的随机分布。随着 Se 浓度的增加,LaS-TaX 失配位结构逐渐转变为新的 LaS-TaSe-TaSe 超结构。对于 x = 1,没有发现失配位结构。这些违反直觉的结果揭示了失配位化合物和二维合金的化学选择性和稳定性。这些不对称化合物中缺乏反演对称性会导致非常大的局部电偶极子。手性纳米管中反演和时间反转对称性的丧失提供了有趣的物理观察和应用。