Weak Superconducting Anisotropy in 4 H b ‐Nb 0.95 Ti 0.05 Se 2 With 1 T /1 H Heterostructure

ABSTRACT Heterostructures of layered transition metal dichalcogenide (TMD) exhibit rich physical properties by the combination of strong electronic correlation effects in 1 T layer and superconductivity in 1 H layer. But the limited number of bulk TMD materials with such heterostructures impedes the in‐depth understanding of the physical mechanisms behind these properties, as well as research on tuning of these properties. Here, we report a systematic study on the physical properties of the 4 H b ‐Nb 0.95 Ti 0.05 Se 2 single crystals with 1 T /1 H heterostructure. It exhibits a superconducting transition at a temperature below 3.3 K. Further analysis indicates that 4 H b ‐Nb 0.95 Ti 0.05 Se 2 is an intermediately coupled type‐II superconductor, and it may possess multiband nodeless superconductivity. Moreover, 4 H b ‐Nb 0.95 Ti 0.05 Se 2 shows a rather weak superconducting anisotropy (∼ 2), distinctly different from other known TMD superconductors with 4 H b heterostructure.

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Publication Details

Journal
Advanced Functional Materials
Published
2026-10-09
DOI
https://doi.org/10.1002/adfm.78830
Primary Topic
2D Materials and Applications
Type
article
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article

Weak Superconducting Anisotropy in 4 H b ‐Nb 0.95 Ti 0.05 Se 2 With 1 T /1 H Heterostructure

王善才, Hechang Lei, Yu Song, Hanru Wang et al.
Advanced Functional Materials
2D Materials and Applications
article

Weak Superconducting Anisotropy in 4 H b ‐Nb 0.95 Ti 0.05 Se 2 With 1 T /1 H Heterostructure

王善才, Hechang Lei, Yu Song, Hanru Wang, Saizheng Cao, Peng Dong Gao, Shiyan Li, Fanyu Meng, Zhixiao He, Lan Song
article en

Abstract

ABSTRACT Heterostructures of layered transition metal dichalcogenide (TMD) exhibit rich physical properties by the combination of strong electronic correlation effects in 1 T layer and superconductivity in 1 H layer. But the limited number of bulk TMD materials with such heterostructures impedes the in‐depth understanding of the physical mechanisms behind these properties, as well as research on tuning of these properties. Here, we report a systematic study on the physical properties of the 4 H b ‐Nb 0.95 Ti 0.05 Se 2 single crystals with 1 T /1 H heterostructure. It exhibits a superconducting transition at a temperature below 3.3 K. Further analysis indicates that 4 H b ‐Nb 0.95 Ti 0.05 Se 2 is an intermediately coupled type‐II superconductor, and it may possess multiband nodeless superconductivity. Moreover, 4 H b ‐Nb 0.95 Ti 0.05 Se 2 shows a rather weak superconducting anisotropy (∼ 2), distinctly different from other known TMD superconductors with 4 H b heterostructure.

Advanced Functional Materials
Peking University (CN), Fudan University (CN), Peking University International Hospital (CN), State Key Laboratory of Surface Physics, Xuhai College, China University of Mining and Technology (CN), Renmin University of China (CN)
Openalex Percentile: Top 28%
2D Materials and Applications
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Weak Superconducting Anisotropy in 4 H b ‐Nb 0.95 Ti 0.05 Se 2 With 1 T /1 H Heterostructure — 王善才, Hechang Lei, et al. · Advanced Functional Materials (2026) | TGRS Research Map | TGRS