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Researchers Optimize 3D Printing of Optically Active Nanostr
Researchers Optimize 3D Printing of Optically Active Nanostr
Researchers Optimize 3D Printing of Optically Active Nanostructures
The shape, size and optical properties of 3-dimensional nanostructures can now be simulated in advance before they are produced directly with high precision on a wide variety of surfaces.
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David Loibner ,
Verena Reisecker ,
Georg Haberfehlner ,
Robert Winkler ,
Michele Brugger ,
David Kuhness ,
Gerald Kothleitner ,
Anna Weitzer ,
Martina Dienstleder ,
Graz Centre Of Electron Microscopy ,
Nanoanalysis Graz University Of Technology ,
Institute Of Electron Microscopy ,
Electron Microscopy ,
Graz University ,
Graz Centre ,
Harald Plank ,
Plasmonic Activity ,
Precision Nano ,
Advanced Functional Materials ,
Nanostructures ,
3d Printing ,
Optical Tweezers ,
Anoprobes ,