While the number of techniques for patterning materials at the nanoscale exponentially increases, only a handful of methods approach the conformal patterning of strongly non-planar surfaces. Here, using the direct surface self-assembly of colloids by electrostatics, we produce highly conformal bottom-up nanopatterns with a short-range order. We illustrate the potential of this approach by devising functional nanopatterns on highly non-planar substrates such as pyramid-textured silicon substrates and inherently rough polycrystalline films. We further produce functionalized polycrystalline thin-film silicon solar cells with enhanced optical performance. The perspective presented here to pattern essentially any surface at the nanoscale, in par...
We present methods for nanostructuring organic thin films for organic photovoltaic (OPV) devices. Us...
Surface-patterning colloidal matter in the sub-10 nm regime generates exceptional functionality in b...
We report on the fabrication of disordered nanostructures by combining colloidal lithography and sil...
While the number of techniques for patterning materials at the nanoscale exponentially increases, on...
We demonstrate a method for seamless transfer from a parent flat substrate of basically any lithogra...
We demonstrate a method for seamless transfer from a parent flat substrate of basically any lithogra...
Nanomaterials and nanostructures provide new opportunities to achieve high-performance optical and o...
Herein, we describe a novel colloidal lithographic strategy for the stepwise patterning of planar su...
Fabrication of one-dimensional nanostructures is a key issue for optical devices, fluidic devices, a...
Highly efficient anti‐reflection textures for solar cells that allow a fabrication using a two‐step ...
Fabrication of one-dimensional nanostructures is a key issue for optical devices, fluidic devices, a...
Nanostructured forms of crystalline silicon represent an attractive materials building block for pho...
A versatile method to produce sub-50 nm patterned monolayers on silicon substrates is demonstrated, ...
Background: In the last decades, the enormous interest in 2/3D nanocrystal (NC) architectures booste...
Nanopatterning is the fabrication of topologically and chemically patterned surfaces, with structur...
We present methods for nanostructuring organic thin films for organic photovoltaic (OPV) devices. Us...
Surface-patterning colloidal matter in the sub-10 nm regime generates exceptional functionality in b...
We report on the fabrication of disordered nanostructures by combining colloidal lithography and sil...
While the number of techniques for patterning materials at the nanoscale exponentially increases, on...
We demonstrate a method for seamless transfer from a parent flat substrate of basically any lithogra...
We demonstrate a method for seamless transfer from a parent flat substrate of basically any lithogra...
Nanomaterials and nanostructures provide new opportunities to achieve high-performance optical and o...
Herein, we describe a novel colloidal lithographic strategy for the stepwise patterning of planar su...
Fabrication of one-dimensional nanostructures is a key issue for optical devices, fluidic devices, a...
Highly efficient anti‐reflection textures for solar cells that allow a fabrication using a two‐step ...
Fabrication of one-dimensional nanostructures is a key issue for optical devices, fluidic devices, a...
Nanostructured forms of crystalline silicon represent an attractive materials building block for pho...
A versatile method to produce sub-50 nm patterned monolayers on silicon substrates is demonstrated, ...
Background: In the last decades, the enormous interest in 2/3D nanocrystal (NC) architectures booste...
Nanopatterning is the fabrication of topologically and chemically patterned surfaces, with structur...
We present methods for nanostructuring organic thin films for organic photovoltaic (OPV) devices. Us...
Surface-patterning colloidal matter in the sub-10 nm regime generates exceptional functionality in b...
We report on the fabrication of disordered nanostructures by combining colloidal lithography and sil...