论文标题
通过自组装分子adlayers在大面积单层NBSE2中调整超导性
Tailoring Superconductivity in Large-Area Single-Layer NbSe2 via Self-Assembled Molecular Adlayers
论文作者
论文摘要
二维过渡金属二核苷(TMDS)代表了通过设计搜索材料的理想测试台,因为可以通过表面工程和分子功能化来操纵其光电特性。但是,分子对TMD的内在物理特性(例如超导性)的影响仍然很大程度上没有探索。在这项工作中,采用超薄分子adlayers的大区域NBSE2单层的临界温度(TC)被操纵。光谱证据表明,自组装层中的分子偶极子充当固定的栅极末端,在NBSE2上统一生成了宏观静电场。这会导致\ SIM 55 \%增加,根据电场极性的不同,TC的TC降低了70 \%,这是通过分子选择控制的。报告的功能化提高了NBSE2的空气稳定性,是有效的,实用的,可观的,可用于使大区域TMD的功能化。我们的结果表明,混合2D材料作为可调超导性的新平台的潜力。
Two-dimensional transition metal dichalcogenides (TMDs) represent an ideal testbench for the search of materials by design, because their optoelectronic properties can be manipulated through surface engineering and molecular functionalization. However, the impact of molecules on intrinsic physical properties of TMDs, such as superconductivity, remains largely unexplored. In this work, the critical temperature (TC) of large-area NbSe2 monolayers is manipulated, employing ultrathin molecular adlayers. Spectroscopic evidence indicates that aligned molecular dipoles within the self-assembled layers act as a fixed gate terminal, collectively generating a macroscopic electrostatic field on NbSe2. This results in an \sim 55\% increase and a 70\% decrease in TC depending on the electric field polarity, which is controlled via molecular selection. The reported functionalization, which improves the air stability of NbSe2, is efficient, practical, up-scalable, and suited to functionalize large-area TMDs. Our results indicate the potential of hybrid 2D materials as a novel platform for tunable superconductivity.