Stochastic electrotransport selectively enhances the transport of highly electromobile molecules
Nondestructive chemical processing of porous samples such as fixed biological tissues typically relies on molecular diffusion. Diffusion into a porous structure is a slow process that significantly delays completion of chemical processing. Here, we present a novel electrokinetic method termed stocha...
Main Authors: | Keller, Philipp J. (Author), Kim, Sung-Yon (Contributor), Cho, Jae Hun (Contributor), Murray, Evan (Contributor), Bakh, Naveed Ali (Contributor), Choi, Heejin (Contributor), Ohn, Kimberly (Contributor), Ruelas, Luzdary T. (Contributor), Hubbert, Austin W. (Contributor), McCue, Margaret Grace (Contributor), Ling, Sara Lynn (Contributor), Chung, Kwanghun (Contributor) |
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Other Authors: | Institute for Medical Engineering and Science (Contributor), Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences (Contributor), Massachusetts Institute of Technology. Department of Chemical Engineering (Contributor), Picower Institute for Learning and Memory (Contributor) |
Format: | Article |
Language: | English |
Published: |
National Academy of Sciences (U.S.),
2017-05-05T19:06:28Z.
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Subjects: | |
Online Access: | Get fulltext |
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