TEM DualBeam systems enable analysis and fabrication of nanoscale devices

FEI Co., Hillsboro, Ore., introduces two DualBeam systems that feature high-quality imaging and fast analysis over the broadest range of samples. The Helios NanoLab 660 DualBeam adds capabilities for specialized applications, such as the fabrication of prototypes for nanometer-scale devices. As shown in the photo, EasyLift’s low-drift, high-precision movements allow simple and consistent creation of traditional TEM lamellae or ultra-thin lamellae via the inverted thinning technique.

Airbrushed carbon nanofibers

Researchers from North Carolina State University, Raleigh, used airbrushing techniques to grow vertically aligned carbon nanofibers on several different metal substrates, opening the door for incorporating these nanofibers into gene delivery devices, sensors, batteries and other technologies.

AFM/SEM/FIB system receives Innovation Award

Nanonics Imaging Ltd. (Jerusalem, Israel) announced that its triple beam integrated AFM/SEM/FIB system, the Nanonics 3TB4000, was judged one of the ten best microscopy innovations in 2013 and is the recipient of the prestigious 2013 Microscopy Today Innovation Award.

Evraz to expand heat treat capacity at Calgary tubular plant by 150%

Evraz North America, Chicago, announces Board approval of its plan to expand heat treat and threading capacity at its tubular facility in Calgary, Alberta. The multimillion dollar project, which will commence next month, includes expanding heat treat capacity by over 150% and threading capacity by about 40%. Work is expected to be completed in the fourth quarter of 2014.

Researchers explore the microworld using haptic optical tweezers

What if you could reach through a microscope to touch and feel the microscopic structures under the lens? In a breakthrough that may usher in a new era in the exploration of the worlds that are a million times smaller than human beings, researchers at Université Pierre et Marie Curie in France have unveiled a new technique that allows microscope users to manipulate samples using a technology known as “haptic optical tweezers.