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Resistance hysteresis in paramagnetic tungsten nitride (W5N6)

  • Wei Chen Lin
  • , Sheng Zong Chen
  • , Yong Cheng Lai
  • , Hao Chen Yeh
  • , Hao Ting Chin
  • , Deng Chi Wang
  • , Mu Chen Shih
  • , Feng Chuan Chuang*
  • , Mario Hofmann
  • , Chiashain Chuang
  • , Pei Hsun Jiang
  • , Ya Ping Hsieh*
  • , Chi Te Liang*
  • *此作品的通信作者

研究成果: 雜誌貢獻期刊論文同行評審

2   連結會在新分頁中打開 引文 斯高帕斯(Scopus)

摘要

Two-dimensional (2D) transition metal nitrides (TMNs), which are members of the family of 2D materials, may find practical applications in electronics and optoelectronics because of their superior physical properties. Recently, wafer-scale, single-unit-cell height P62m W5N6, which was difficult to be synthesized in the past, has been grown using a restricted vapor-liquid-solid method. Here, we report experimental evidence for hysteretic magnetoresistance (MR) mediated by temperature in paramagnetic W5N6. Surprisingly, hysteretic MR is weak or even non-existent at millikelvin temperatures where hysteresis is expected to be most pronounced. With increasing temperature, hysteretic behavior becomes the strongest at around 9 K. With further increase in temperature, hysteresis becomes weaker and undetectable at around 26 K. The observed paramagnetism in the Efros-Shklovskii variable range hopping (E-S VRH) regime, where Coulomb interactions are important, provides a paradigm for probing magnetism in 2D TMNs. Importantly, such paramagnetism in TMNs in the E-S VRH regime, which is supported by density functional theory calculations, may find applications in medical imaging, magnetic refrigeration, and magnetic sensing.

原文英語
文章編號053103
期刊Applied Physics Letters
127
發行號5
DOIs
出版狀態已發佈 - 2025 8月 4

ASJC Scopus subject areas

  • 物理與天文學(雜項)

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