Enhanced strong coupling of TMDC monolayers by bound state in the continuum
Transition‐metal dichalcogenides (TMDCs) monolayers have been considered a perfect
platform for realizing exciton‐polariton at room temperature due to their direct bandgap and …
platform for realizing exciton‐polariton at room temperature due to their direct bandgap and …
Fast-response X-ray detector based on nanocrystalline Ga2O3 thin film prepared at room temperature
M Chen, Z Zhang, R Zhan, J She, S Deng, N Xu… - Applied Surface …, 2021 - Elsevier
X-ray detectors have broad applications in the fields of medical imaging, security checks,
industrial inspections, and scientific research. However, it is still challenging to develop X …
industrial inspections, and scientific research. However, it is still challenging to develop X …
Needle-Shaped Single-Crystalline Molybdenum Micro-Nano Structure with High Conductivity and Excellent Field Emission Properties: Implications for Large-Current …
A Cheng, Y Shen, T Cui, W Feng, R Zhan… - ACS Applied Nano …, 2023 - ACS Publications
High-melting point metallic micro-nano structural materials are well recognized as good
conductors and electron emitters, particularly in the field of cold-cathode electron source and …
conductors and electron emitters, particularly in the field of cold-cathode electron source and …
Bio-electron transfer modulated localized surface plasmon resonance biosensing with charge density monitoring
The analysis of reactant at different regions of the bioreaction interface is significant for the
study on the influence of interface condition on bioreaction. In this study, we proposed a …
study on the influence of interface condition on bioreaction. In this study, we proposed a …
Dependence of Ultrafast Electron Emission Characteristics of Graphene Cold Cathode on Femtosecond Photoexcitation Polarization Angle
Z Song, Y Shen, N Xu, T Hong, H Zhu… - … Applied Materials & …, 2024 - ACS Publications
Ultrafast electron pulses, generated through femtosecond photoexcitation in nanocathode
materials, introduce high-frequency characteristics and ultrahigh temporal-spatial resolution …
materials, introduce high-frequency characteristics and ultrahigh temporal-spatial resolution …
Signatures of atomic structure in subfemtosecond laser-driven electron dynamics in nanogaps
Coupled Maxwell and quantum-mechanical equations are used to simulate the electron
dynamics in nanogaps in systems containing thousands of atoms. It will be shown that …
dynamics in nanogaps in systems containing thousands of atoms. It will be shown that …
Nano-Cold-Cathode Electron Source Based on Plasmon-Mediated Emission
Y Shen, Y Ding, Y Chen, Z Song, T Cui, A Cheng… - ACS …, 2024 - ACS Publications
To address the developmental requisites of the emerging generation of vacuum micro-and
nanoelectronic devices, cathode electron sources are evolving toward enhanced efficiency …
nanoelectronic devices, cathode electron sources are evolving toward enhanced efficiency …
A planar plasmonic nano-gap and its array for enhancing light-matter interactions at the nanoscale
Gap surface plasmon (GSP) modes, the localized electromagnetic modes existing between
two metal structures separated by a nano-gap, are able to support subwavelength …
two metal structures separated by a nano-gap, are able to support subwavelength …
Tunable Broadband Photoresponse Electron‐Emission Nanostructure: Metasurface‐Extended Spectrum‐Selecting and Plasmon‐Enhanced Emitting
Y Shen, Y Han, H Chen, N Xu… - Advanced Photonics …, 2022 - Wiley Online Library
Exploring novel nanotechnology schemes for tunable broadband vacuum photodetection
devices is of great significance. Herein, a strategy to combine a field‐emission cold cathode …
devices is of great significance. Herein, a strategy to combine a field‐emission cold cathode …
Rapid growth of single-crystal graphene by acetonitrile and its nitrogen do**
S He, Z Zhang, S Wu, W Wu, K Jiang, J Liu, Y Song - Vacuum, 2021 - Elsevier
In this work, we used acetonitrile a liquid carbon source as precursors to grow nitrogen
doped single-crystal graphene by chemical vapor deposition. Faster growth of graphene …
doped single-crystal graphene by chemical vapor deposition. Faster growth of graphene …