Recent advancements in additive manufacturing have enabled the preparation of free-shaped 3D objects with feature sizes down to and below the micrometer scale. Among the fabrication methods, focused electron beam- and focused ion beam-induced deposition (FEBID and FIBID, respectively) associate a high flexibility and unmatched accuracy in 3D writing with a wide material portfolio, thereby allowing for the growth of metallic to insulating materials. The combination of the free-shaped 3D nanowriting with established chemical vapor deposition (CVD) techniques provides attractive opportunities to synthesize complex 3D core–shell heterostructures. Hence, this hybrid approach enables the fabrication of morphologically tunable layer-based nanostru...
Area-selective atomic layer deposition (AS-ALD) is attracting increasing interest because of its abi...
Resumen del trabajo presentado a la 12th International Conference on Physics of Advanced Materials (...
\u3cp\u3eThree-dimensional magnetic nanostructures hold great potential to revolutionize information...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
The fabrication of three-dimensional (3D) nanostructures is of great interest to many areas of nanot...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
To increase the efficiency of current electronics, a specific challenge for the next generation of m...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
Focused electron and ion beam-induced deposition (FEBID/FIBID) are direct-write techniques with part...
Focused-electron-beam-induced deposition (FEBID) is the ultimate additive nanofabrica-tion technique...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
This article belongs to the Special Issue Novel Magnetic Properties in Curved Geometries.Focused-ele...
The fabrication of nanopatterned multilayers, as used in optical and magnetic applications, is usual...
High-fidelity 3D printing of nanoscale objects is an increasing relevant but challenging task. Among...
This chapter gives an overview of the current state of 3D nanofabrication techniques and perspective...
Area-selective atomic layer deposition (AS-ALD) is attracting increasing interest because of its abi...
Resumen del trabajo presentado a la 12th International Conference on Physics of Advanced Materials (...
\u3cp\u3eThree-dimensional magnetic nanostructures hold great potential to revolutionize information...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
The fabrication of three-dimensional (3D) nanostructures is of great interest to many areas of nanot...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
To increase the efficiency of current electronics, a specific challenge for the next generation of m...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
Focused electron and ion beam-induced deposition (FEBID/FIBID) are direct-write techniques with part...
Focused-electron-beam-induced deposition (FEBID) is the ultimate additive nanofabrica-tion technique...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
This article belongs to the Special Issue Novel Magnetic Properties in Curved Geometries.Focused-ele...
The fabrication of nanopatterned multilayers, as used in optical and magnetic applications, is usual...
High-fidelity 3D printing of nanoscale objects is an increasing relevant but challenging task. Among...
This chapter gives an overview of the current state of 3D nanofabrication techniques and perspective...
Area-selective atomic layer deposition (AS-ALD) is attracting increasing interest because of its abi...
Resumen del trabajo presentado a la 12th International Conference on Physics of Advanced Materials (...
\u3cp\u3eThree-dimensional magnetic nanostructures hold great potential to revolutionize information...