二硒醚
铌
二硒化钨
超导电性
钨
材料科学
结晶学
纳米技术
无机化学
凝聚态物理
冶金
过渡金属
化学
硒
物理
催化作用
有机化学
作者
Jin Wang,Jia Han,Shu Chen,Jie Li,Yangzhou Wang,Chuanyi Wu,Qianshuo Wang,Zihan Wang,Fei Chen,Wen Wan
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-09-29
卷期号:18 (40): 27665-27671
被引量:4
标识
DOI:10.1021/acsnano.4c09443
摘要
van der Waals-layered niobium diselenide (NbSe 2 ) intercalated by d -electron transition metals is an ideal test bed for the exploration of their diversiform evolution of ground states. These intercalations are mostly viewed as ordered structures aligned with periodicities of their host materials that enable control of the electronic phases via gradually changing of intercalation ratios. Here, we present the structure and superconductivity in tungsten (W)-intercalated 2H-NbSe 2 crystals, which reveals an order to disorder distribution of W atoms with increasing confined intercalating amounts, leading to an approximate V -shape suppression of superconductivity. Aided by density functional theory calculations, we demonstrate that the local magnetic moment around W intercalants induced by the charge redistribution gives rise to the quick superconductivity suppression in 2H-NbSe 2 below a certain dilute amount (W% = 0.06). Simultaneously, W intercalants also induce structural aberration due to aggregation effects and inhibit the generation of an ordered structure in 2H-NbSe 2, resulting in a recovery of its superconductivity. The alteration of structure and electronic phases in 2H-NbSe 2 via intercalation of nonmagnetic transition metals in the van der Waals gap enables the exploration of combined magnetic quantum criticality, superconductivity, and other related electronic correlations.
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