Tiny Diamonds Could Enable Huge Advances in Nanotechnology

University of Maryland researchers developed a method to build diamond-based hybrid nanoparticles in large quantities from the ground up

Written byUniversity of Maryland
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COLLEGE PARK, Md. – Nanomaterials have the potential to improve many next-generation technologies. They promise to speed up computer chips, increase the resolution of medical imaging devices and make electronics more energy efficient. But imbuing nanomaterials with the right properties can be time consuming and costly. A new, quick, and inexpensive method for constructing diamond-based hybrid nanomaterials in bulk could launch the field from research to applications.

University of Maryland researchers developed a method to build diamond-based hybrid nanoparticles in large quantities from the ground up, thereby circumventing many of the problems with current methods. The technique is described in the June 8 issue of the journal Nature Communications.

Related Article: Intense Lasers Cook Up Complex, Self-Assembled Nanomaterials

The process begins with tiny, nanoscale diamonds that contain a specific type of impurity: a single nitrogen atom where a carbon atom should be, with an empty space right next to it, resulting from a second missing carbon atom. This “nitrogen vacancy” impurity gives each diamond special optical and electromagnetic properties. 

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