Nanotechnology Researcher Wins Prize for Early Excellence in Physical Organic Chemistry

This award is given annually to recognize the accomplishments of an individual working in the field of physical organic chemistry or applying the principles of this field to other areas. At the time of nomination, the recipient must be no more than six years from the beginning of the first independent appointment.

The award was presented at the 32nd Reaction Mechanisms Conference held at the University of North Carolina, Chapel Hill. Dr. DiLabio gave an award presentation entitled “Linear Organic Nanostructures on Silicon Surfaces: A Platform for Studying Single Molecule Physics and Chemistry.” on June 27, 2008.

A member on NINT’s Molecular Scale Devices Group, DiLabio’s work focuses on the modeling of chemical processes leading to nanostructure formation on silicon surfaces. Dr. DiLabio also conducts research in the area of molecular electronics, including efforts to gain an understanding of the mechanism by which localized charged states on silicon surfaces can act as gates in models for molecular transistors.

Originally from Ottawa, DiLabio received his doctorate from Clarkson University, Potsdam, New York. He joined NRC in 2001 as a Research Officer at the Steacie Institute and moved to NINT in 2004. He has authored more than 70 papers and holds two patents. He is also an Adjunct Professor at of the Chemistry Department of Carleton University.

Media Contact

Shannon Jones Newswise Science News

More Information:

http://www.nrc.gc.ca

All latest news from the category: Awards Funding

Back to home

Comments (0)

Write a comment

Newest articles

A universal framework for spatial biology

SpatialData is a freely accessible tool to unify and integrate data from different omics technologies accounting for spatial information, which can provide holistic insights into health and disease. Biological processes…

How complex biological processes arise

A $20 million grant from the U.S. National Science Foundation (NSF) will support the establishment and operation of the National Synthesis Center for Emergence in the Molecular and Cellular Sciences (NCEMS) at…

Airborne single-photon lidar system achieves high-resolution 3D imaging

Compact, low-power system opens doors for photon-efficient drone and satellite-based environmental monitoring and mapping. Researchers have developed a compact and lightweight single-photon airborne lidar system that can acquire high-resolution 3D…

Partners & Sponsors