Author: Jim
Professor McGrath holds a BS degree in Mechanical Engineering from Arizona State and a MS degree in Mechanical Engineering from MIT. He earned a PhD in Biological Engineering from Harvard/MIT's Division of Health Sciences and Technology. He then trained as a Distinguished Post-doctoral Fellow in the Department of Biomedical Engineering at the Johns Hopkins University. Professor McGrath has been on the Biomedical Engineering faculty at the University of Rochester since 2001 where he also served as the director of the graduate program in BME for more than a decade and currently serves as Associate Director of the URNano microfab and metrology core. Professor McGrath also has faculty affiliations with many other programs at UR including the Material Research Program, the Environmental Health and Sciences Center, the Biochemistry and Biophysics program, and the Musculoskeletal Research Center. McGrath's graduate, post-doctoral, and early faculty research was focused on quantitative experiments and mathematical modeling of cell migration covering molecular, cellular, and multi-cellular phenomena. This was true until 2007 when he, along with Professor Philippe Fauchet (now Dean at Vanderbilt) and PhD students Tom Gaborski (RIT) and Chris Streimer (Adarza), discovered a means to self-assembled nanopores in 15 nm thick free-standing silicon and demonstrated the remarkable transport properties of the new material in a Nature paper. This seminal discovery led to the creation of the multidisciplinary Nanomembrane Research Group (NRG) and the founding of SiMPore Inc. in the same year. The NRG and SiMPore have been dedicated to the advancement of ultrathin membrane technologies and exploring all of their potential applications ever since. This blog also dates back to 2007 and has had contributions from more than 100 students, faculty, scientists, engineers, and entrepreneurs. It contains over 2,500 pages and posts logging progress large and small over all these years. Yet somehow it feels like we are just getting started.

Cytochrome C polymerization

We have often encountered cytochome C dimers as part of our work. For example in this figure from Jess that we often refer to in our hemodialysis work. It turns out that Cyto C polymerization is a well known phenomenon.

Posted in NRG

Where to Change the Slide Show

Posted in NRG

LPS Pipettor Repair On-Site Reminder

WHERE:  URMC ** Room # 4-7545 ** WHEN:    Tuesday April 16th & Wednesday the 17th. TIME:    9:00-4:00 P.M. Please drop off your pipettors early as we expect a good turnout. Pipettors will be done on a first come, first served

Posted in NRG

Porous TEM windows fabrication using CsCl self-assembly

The competition keeps coming at us  … Liu(Cui)JVSTB12

Posted in NRG

MEMs and membranes: a Liver Assist Device

Maria Lynch will review this article by Jeffrey Borenstein and colleagues … Borenstein – 2010 – Liver Assist Device

Posted in NRG

Quote from Micropen

              130327 Quote for McGrath Lab – U of R

Posted in NRG

SONY backing organ-on-a-chip development

  http://www.medgadget.com/2013/03/sony-backing-organ-on-chip-technology.html

Posted in NRG

Web Dev 2.0

Cloud based storage and calendaring functions are up and running. Log-in and password When you reset your password using this link, you will be reseting your password for all aspects of the web site: authoring, cloud, calendar, and wikis. If you have

Posted in NRG

war

Kim(Haynes)AnalChem12.pdf

Posted in NRG

How water sticks to surfaces

Tejas found this…  A cool article and video on water ‘sticking’ the surface. Notice the difference in advancing and receding angles. http://web.mit.edu/newsoffice/2013/droplet-surface-adhesion-0219.html

Posted in NRG
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