Six degrees of nuclear separation
Argonne scientists look to 3-D printing to ease separation anxiety, which paves the way to recycle more nuclear material.
Argonne scientists look to 3-D printing to ease separation anxiety, which paves the way to recycle more nuclear material.
Today's resource-intensive production processes for printing on textiles can soon be history. With a new method, developed within a doctoral project at the University of Borås, Sweden, several stages of the process can be ...
Researchers from AMOLF's 3-D-Photovoltaics group have used an atomic force microscope to electrochemically print at the nanoscale. This technique can print structures for a new generation of solar cells on chips. The researchers ...
A team led by scientists at the University of Washington has designed and tested a 3-D-printed metamaterial that can manipulate light with nanoscale precision. As they report in a paper published Oct. 4 in the journal Science ...
Using a new time-based method to control light from an ultrafast laser, researchers have developed a nanoscale 3-D printing technique that can fabricate tiny structures 1000 times faster than conventional two-photon lithography ...
Electrical engineers at Duke University have devised a fully print-in-place technique for electronics that is gentle enough to work on delicate surfaces including paper and human skin. The advance could enable technologies ...
In a report recently published in Nature Communications, a research group led by Associate Professor Joel Yang from the Singapore University of Technology and Design (SUTD) printed probably the smallest colorful 3-D model ...
A new way of 3-D printing soft materials such as gels and collagens offers a major step forward in the manufacture of artificial medical implants.
The strength of 3-D-printed products could be improved through a new technique developed by scientists at UT and Oak Ridge National Laboratory.
Fantastic shapes can be made using 3-D printing, but for many applications the material used needs to be much stronger than what is currently available. This is something that chemists in Eindhoven are working on: "The material ...