Yiyu Gan
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View article: 2D Semi‐Metallic Hafnium Ditelluride: A Novel Nonlinear Optical Material for Ultrafast and Ultranarrow Photonics Applications (Small Methods 2/2024)
2D Semi‐Metallic Hafnium Ditelluride: A Novel Nonlinear Optical Material for Ultrafast and Ultranarrow Photonics Applications (Small Methods 2/2024) Open
Front Cover In article number 2300239, Wen, Tsang, and co-workers demonstrate the potential application of 2D-HfTe2 nanosheets in nonlinear optics and ultrafast photonics. By utilizing side-polished fiber-based HfTe2-saturable absorbers, a…
View article: Metallic Transition Metal Dichalcogenide-Based Single-Frequency Fiber Lasers with Sub-Khz Linewidths
Metallic Transition Metal Dichalcogenide-Based Single-Frequency Fiber Lasers with Sub-Khz Linewidths Open
View article: MXene Core-Shell Nanosheets: Facile Synthesis, Optical Properties, and Versatile Photonics Applications
MXene Core-Shell Nanosheets: Facile Synthesis, Optical Properties, and Versatile Photonics Applications Open
In recent years, the transition metal carbonitrides(MXenes) have been widely applied to photoelectric field, and better performance of these applications was achieved via MXene complex structures. In our work, we proposed a MXene core-shel…
View article: Zero‐Dimensional MXene: Zero‐Dimensional MXene‐Based Optical Devices for Ultrafast and Ultranarrow Photonics Applications (Adv. Sci. 22/2020)
Zero‐Dimensional MXene: Zero‐Dimensional MXene‐Based Optical Devices for Ultrafast and Ultranarrow Photonics Applications (Adv. Sci. 22/2020) Open
In article number 2002209, Qiao Wen, Han Zhang, and co‐workers use a liquid exfoliation method to synthesize zero‐dimensional MXene for use as a saturable absorber and to develop optical devices for ultrafast and ultranarrow photonics. [Im…
View article: Zero‐Dimensional MXene‐Based Optical Devices for Ultrafast and Ultranarrow Photonics Applications
Zero‐Dimensional MXene‐Based Optical Devices for Ultrafast and Ultranarrow Photonics Applications Open
In recent years, MXene has become a hotspot because of its good conductivity, strong broadband absorption, and tunable band gap. In this contribution, 0D MXene Ti 3 C 2 T x quantum dots are synthesized by a liquid exfoliation method and a …