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Recent advances on high‐speed and holographic two‐photon direct laser writing
A Balena, M Bianco, F Pisanello… - Advanced Functional …, 2023 - Wiley Online Library
Abstract Two‐Photon Lithography, thanks to its very high sub‐diffraction resolution, has
become the lithographic technique par excellence in applications requiring small feature …
become the lithographic technique par excellence in applications requiring small feature …
Two-photon lithography for three-dimensional fabrication in micro/nanoscale regime: A comprehensive review
V Harinarayana, YC Shin - Optics & Laser Technology, 2021 - Elsevier
With the advent of femtosecond lasers in the early 1990s, ultrafast laser processing has
proven to be an imperative tool for micro/nano machining. Two-photon lithography (TPL) is …
proven to be an imperative tool for micro/nano machining. Two-photon lithography (TPL) is …
Two decades of two-photon lithography: Materials science perspective for additive manufacturing of 2D/3D nano-microstructures
A Jaiswal, CK Rastogi, S Rani, GP Singh, S Saxena… - Iscience, 2023 - cell.com
Two-photon lithography (TPL) is a versatile technology for additive manufacturing of 2D and
3D micro/nanostructures with sub-wavelength resolved features. Recent advancement in …
3D micro/nanostructures with sub-wavelength resolved features. Recent advancement in …
Ultrafast laser nanostructuring of photopolymers: A decade of advances
M Malinauskas, M Farsari, A Piskarskas, S Juodkazis - Physics Reports, 2013 - Elsevier
Research into the three-dimensional nanostructuring of photopolymers by ultrashort laser
pulses has seen immense growth over the last decade. In this paper, we review the basic …
pulses has seen immense growth over the last decade. In this paper, we review the basic …
Multiphoton fabrication
CN LaFratta, JT Fourkas, T Baldacchini… - Angewandte Chemie …, 2007 - Wiley Online Library
Chemical and physical processes driven by multiphoton absorption make possible the
fabrication of complex, 3D structures with feature sizes as small as 100 nm. Since its …
fabrication of complex, 3D structures with feature sizes as small as 100 nm. Since its …
Recent progress in multiphoton microfabrication
S Maruo, JT Fourkas - Laser & Photonics Reviews, 2008 - Wiley Online Library
Multiphoton microfabrication enables the production of three‐dimensional microstructures
with sub‐100 nm resolution via direct laser writing using a femtosecond, pulsed laser beam …
with sub‐100 nm resolution via direct laser writing using a femtosecond, pulsed laser beam …
Femtosecond‐laser direct writing of metallic micro/nanostructures: From fabrication strategies to future applications
ZC Ma, YL Zhang, B Han, QD Chen, HB Sun - Small Methods, 2018 - Wiley Online Library
The past decade has seen growing research interest in develo** novel fabrication
methodologies for metallic micro/nanostructures toward the rational design and integration …
methodologies for metallic micro/nanostructures toward the rational design and integration …
Fabrication of optical negative-index metamaterials: Recent advances and outlook
A Boltasseva, VM Shalaev - Metamaterials, 2008 - Elsevier
A status report on optical negative-index-metamaterial fabrication is given. The advantages,
drawbacks and challenges of different fabrication techniques including electron-beam …
drawbacks and challenges of different fabrication techniques including electron-beam …
Direct electroless plating of conductive thermoplastics for selective metallization of 3D printed parts
N Lazarus, JB Tyler, JA Cardenas, B Hanrahan… - Additive …, 2022 - Elsevier
Electroless plating is a promising approach for metallizing plastic 3D printed parts, but
current approaches rely on surface activation with expensive precious metal catalysts such …
current approaches rely on surface activation with expensive precious metal catalysts such …
Two‐photon stereolithography for realizing ultraprecise three‐dimensional nano/microdevices
SH Park, DY Yang, KS Lee - Laser & Photonics Reviews, 2009 - Wiley Online Library
Two‐photon stereolithography (TPS) provides many advantages for achieving two‐
dimensional (2D) and three‐dimensional (3D) micrometer‐scale polymeric, ceramic and …
dimensional (2D) and three‐dimensional (3D) micrometer‐scale polymeric, ceramic and …