A straightforward approach for the precise multifunctional surface modification of particles with three-dimensional patches using microcontact printing is presented. By comparison to previous works it was possible to not only control the diameter, but also to finely tune the thickness of the deposited layer, opening up the way for three-dimensional structures and orthogonal multifunctionality. The use of PEI as polymeric ink, PDMS stamps for microcontact printing on silica particles and the influence of different solvents during particle release on the creation of functional particles with three-dimensional patches are described. Finally, by introducing fluorescent properties by incorporation of quantum dots into patches and by particle sel...
Trivalent patchy colloidal particles are synthesized using a two-step mu-contact printing method. Fi...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Herein, we report a modified microcontact printing (μCP) routine suitable to introduce particle patc...
This publication demonstrates the abilities of a precise and straightforward microcontact printing a...
iv Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Three-dimensional printing at the micro-/nanoscale represents a new challenge in research and develo...
A general method for patterning various functional inorganic nanomaterials on SiO(x)/Si substrates b...
Microcontact printing (µCP) offers a simple and low-cost surface patterning methodology with high ve...
Microcontact printing (µCP) offers a simple and low-cost surface patterning methodology with high ve...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Micro / nanoscale manufacturing requires unique approaches to accommodate the immensely different ch...
Soft lithography offers great potential for the fabrication of 2D and 3D patterned structures using ...
Soft lithography offers great potential for the fabrication of 2D and 3D patterned structures using ...
In the last decades, additive manufacturing (AM), also called three-dimensional (3D) printing, has a...
Trivalent patchy colloidal particles are synthesized using a two-step mu-contact printing method. Fi...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Herein, we report a modified microcontact printing (μCP) routine suitable to introduce particle patc...
This publication demonstrates the abilities of a precise and straightforward microcontact printing a...
iv Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Three-dimensional printing at the micro-/nanoscale represents a new challenge in research and develo...
A general method for patterning various functional inorganic nanomaterials on SiO(x)/Si substrates b...
Microcontact printing (µCP) offers a simple and low-cost surface patterning methodology with high ve...
Microcontact printing (µCP) offers a simple and low-cost surface patterning methodology with high ve...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Micro / nanoscale manufacturing requires unique approaches to accommodate the immensely different ch...
Soft lithography offers great potential for the fabrication of 2D and 3D patterned structures using ...
Soft lithography offers great potential for the fabrication of 2D and 3D patterned structures using ...
In the last decades, additive manufacturing (AM), also called three-dimensional (3D) printing, has a...
Trivalent patchy colloidal particles are synthesized using a two-step mu-contact printing method. Fi...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...