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A review on metasurface: from principle to smart metadevices
Metamaterials are composed of periodic subwavelength metallic/dielectric structures that
resonantly couple to the electric and magnetic fields of the incident electromagnetic waves …
resonantly couple to the electric and magnetic fields of the incident electromagnetic waves …
A review on recent advances in the applications of surface-enhanced Raman scattering in analytical chemistry
This review is focused on recent developments of surface-enhanced Raman scattering
(SERS) applications in Analytical Chemistry. The work covers advances in the fabrication …
(SERS) applications in Analytical Chemistry. The work covers advances in the fabrication …
Metallic plasmonic array structures: principles, fabrications, properties, and applications
The vast development of nanofabrication has spurred recent progress for the manipulation
of light down to a region much smaller than the wavelength. Metallic plasmonic array …
of light down to a region much smaller than the wavelength. Metallic plasmonic array …
Nanosphere lithography: A versatile approach to develop transparent conductive films for optoelectronic applications
Transparent conductive films (TCFs) are irreplaceable components in most optoelectronic
applications such as solar cells, organic light‐emitting diodes, sensors, smart windows, and …
applications such as solar cells, organic light‐emitting diodes, sensors, smart windows, and …
Multifunctional integration on optical fiber tips: challenges and opportunities
The flat endface of an optical fiber tip is an emerging light-coupled microscopic platform that
combines fiber optics with planar micro-and nanotechnologies. Since different materials and …
combines fiber optics with planar micro-and nanotechnologies. Since different materials and …
Advances in information processing and biological imaging using flat optics
X Wang, H Hao, X He, P **e, J Liu, J Tan, H Li… - Nature Reviews …, 2024 - nature.com
Flat optical components (metasurfaces) made from artificial electromagnetic materials
(metamaterials) have opened new possibilities for the manipulation of electromagnetic …
(metamaterials) have opened new possibilities for the manipulation of electromagnetic …
Recent development of fiber-optic chemical sensors and biosensors: Mechanisms, materials, micro/nano-fabrications and applications
Abstract The Internet-of-Things (IoT) has witnessed exponential growth over the past decade
and will significantly reshape human life from every aspect, eg, defense, environmental …
and will significantly reshape human life from every aspect, eg, defense, environmental …
Marangoni effect-driven transfer and compression at three-phase interfaces for highly reproducible nanoparticle monolayers
X Lin, G Fang, Y Liu, Y He, L Wang… - The Journal of Physical …, 2020 - ACS Publications
Interfacial self-assembly is a powerful technology for preparing large scale nanoparticle
monolayers, but fabrication of highly repeatable large scale nanoparticle monolayers …
monolayers, but fabrication of highly repeatable large scale nanoparticle monolayers …
Arrays of nanoscale-thick ITO hemispherical shells as saturable absorbers for Q-switched all-fiber lasers
P Gu, D Li, H Zhu, J Chen, Z Zhang, E Hu… - ACS Applied Nano …, 2024 - ACS Publications
We report on the preparation of robust indium tin oxide (ITO) hemispherical-shell arrays
(HSAs) with nanoscale thickness of∼ 100 nm and their applications for passively Q …
(HSAs) with nanoscale thickness of∼ 100 nm and their applications for passively Q …
Femtosecond laser-based processing methods and their applications in optical device manufacturing: A review
X Wang, H Yu, P Li, Y Zhang, Y Wen, Y Qiu, Z Liu… - Optics & Laser …, 2021 - Elsevier
The unique advantages of surface and volume processing enabled by femtosecond laser
fabrication makes it one of the most powerful tools for manufacturing optical and photonic …
fabrication makes it one of the most powerful tools for manufacturing optical and photonic …