超短脉冲
材料科学
吸收(声学)
铌
放松(心理学)
饱和吸收
氮化铌
光电子学
光子学
图层(电子)
吸收光谱法
超快激光光谱学
化学物理
纳米技术
复合材料
波长
氮化物
光学
化学
冶金
激光器
物理
光纤激光器
社会心理学
心理学
作者
Lingfeng Gao,Hualong Chen,Feng Zhang,Shan Mei,Ye Zhang,Wenli Bao,Chunyang Ma,Peng Yin,Jia Guo,Xiantao Jiang,Shixiang Xu,Weichun Huang,Xiaobo Feng,Fuming Xu,Songrui Wei,Han Zhang
标识
DOI:10.1002/smtd.202000250
摘要
Abstract As one of the rising 2D materials, niobium‐carbide (Nb 2 C, well‐known as a member of MXene family) has attracted considerable attention owing to its unique physical and chemical properties. In this work, few‐layer Nb 2 C nanosheets (NSs) with large (≈255 nm) and small (≈48 nm) lateral dimensions are obtained via a combination of selective etching and liquid cascade centrifugation. Their relaxation time and photophysics process are systematically investigated by transient absorption spectroscopy, and the size effect is demonstrated by phonon‐bottleneck mechanism. Ultrafast fast relaxation time (37.43 fs) and slow relaxation time (0.5733 ps) are observed due to the symmetric structure and metallicity of Nb 2 C NSs. The nonlinear optical properties of Nb 2 C NSs are studied by Z‐scan technique, and both saturable absorption and reverse‐saturable absorption are observed. According to first principle calculations, these phenomena can be attributed to the special band structure of Nb 2 C near the Fermi level, where two‐photon absorption or multiphoton absorption may occur under the irradiation of long wavelength light. These intriguing results suggest that few‐layer Nb 2 C NSs can be used as building blocks for broadband ultrafast photonics and optoelectronic devices and also hold the potential for breakthrough developments in these fields.
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