© 2017 The Author(s). The fabrication of complex three-dimensional gold-containing nanocomposite structures by simultaneous two-photon polymerisation and photoreduction is demonstrated. Increased salt delivers reduced feature sizes down to line widths as small as 78 nm, a level of structural intricacy that represents a significant advance in fabrication complexity. The development of a general methodology to efficiently mix pentaerythritol triacrylate (PETA) with gold chloride hydrate (HAuCl4-3H2O) is reported, where the gold salt concentration is adjustable on demand from zero to 20 wt%. For the first-time 7-Diethylamino-3-thenoylcoumarin (DETC) is used as the photoinitiator. Only 0.5 wt% of DETC was required to promote both polymerisation...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Multiphoton photoreduction of photosensitive metallic precursors via direct laser writing (DLW) is a...
Nanoplasmonics and metamaterials sciences are rapidly growing due to their contributions to photonic...
The fabrication of complex three-dimensional gold-containing nanocomposite structures by simultaneou...
The fabrication of complex three-dimensional gold-containing nanocomposite structures by simultaneou...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Two-photon fabrication is an attractive additive manufacturing (AM) technique that allows the produc...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Two-photon fabrication is an attractive additive manufacturing (AM) technique that allows the produc...
This study reports the successful fabrication of complex 3D metal nanoparticle–polymer nanocomposite...
This study reports the successful fabrication of complex 3D metal nanoparticle–polymer nanocomposite...
Fabrication of 3D polymer-metal nano-composites in a single step by two-photon induced polymerisati...
A series of nanocomposites containing gold nanoparticles (AuNPs) are prepared by stereolithography (...
Fabrication of 3D polymer-metal nano-composites in a single step by two-photon induced polymerisati...
Three-dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Multiphoton photoreduction of photosensitive metallic precursors via direct laser writing (DLW) is a...
Nanoplasmonics and metamaterials sciences are rapidly growing due to their contributions to photonic...
The fabrication of complex three-dimensional gold-containing nanocomposite structures by simultaneou...
The fabrication of complex three-dimensional gold-containing nanocomposite structures by simultaneou...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Two-photon fabrication is an attractive additive manufacturing (AM) technique that allows the produc...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Two-photon fabrication is an attractive additive manufacturing (AM) technique that allows the produc...
This study reports the successful fabrication of complex 3D metal nanoparticle–polymer nanocomposite...
This study reports the successful fabrication of complex 3D metal nanoparticle–polymer nanocomposite...
Fabrication of 3D polymer-metal nano-composites in a single step by two-photon induced polymerisati...
A series of nanocomposites containing gold nanoparticles (AuNPs) are prepared by stereolithography (...
Fabrication of 3D polymer-metal nano-composites in a single step by two-photon induced polymerisati...
Three-dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Three dimensional structures prepared from a gold-polymer composite formulation have been fabricated...
Multiphoton photoreduction of photosensitive metallic precursors via direct laser writing (DLW) is a...
Nanoplasmonics and metamaterials sciences are rapidly growing due to their contributions to photonic...